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Global Computational Fluid Dynamics Market by Function (Dynamic Modeling, Failure Analysis, Structural Analysis), Deployment (On-Cloud, On-Premise), End Use - Forecast 2024-2030

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  • 189 Pages
  • May 2024
  • Region: Global
  • 360iResearch™
  • ID: 4896508
UP TO OFF until Dec 31st 2024
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The Computational Fluid Dynamics Market size was estimated at USD 2.85 billion in 2023, USD 3.06 billion in 2024, and is expected to grow at a CAGR of 8.32% to reach USD 4.99 billion by 2030 .

Computational fluid dynamics (CFD) refers to using numerical methods and algorithms to solve and analyze fluid flow problems. CFD is applied in various fields such as aerospace, automotive, energy, and electronics to simulate fluid interactions with surfaces and within systems under different conditions. The market encompasses software tools and services that enable this computational analysis. Determinants for market growth include technological advancements that increase CFD software capabilities, higher computing power at lower costs, and the growing emphasis on product optimization and eco-friendly designs. Improvements in user interface and user experience of CFD software are also aiding market expansion by making these tools more accessible to engineers and designers without specialized CFD knowledge. Limitations in the CFD market stem from the high cost of CFD software and the need for specialized knowledge to operate it effectively. It is also challenging to adequately model complex physics and chemical reactions, sometimes resulting in a gap between simulation and real-world outcomes. However, integrating artificial intelligence (AI) and machine learning improves simulation accuracy and speed, which presents a substantial opportunity. Additionally, there is growing demand in emerging markets such as India and China due to rapid industrialization and the expansion of research and development activities.

Regional Insights

In the Americas, the United States and Canada are significant players in the CFD market with advanced research capabilities and high adoption rates in various industries such as aerospace, defense, and automotive. Europe has a strong engineering base, with CFD used across automotive, aerospace, and energy industries. Germany, the UK, and France are the key contributors with significant investments in CFD research and applications. CFD usage in EMEA is also characterized by its integration with environmental initiatives, such as wind and tidal energy projects. APAC is the fastest-growing region in the CFD market, driven by industrial growth in countries like China, Japan, South Korea, and India. The demand is primarily fueled by the automotive, electronics, and aerospace industries, with local companies collaborating with global CFD providers to improve their competencies.

Function: Advancement in dynamic modeling across industrial setting to manage temporal changes

Dynamic modeling in the context of computational fluid dynamics (CFD) involves fluid flow simulation with time-dependent behavior. This is essential for analyzing systems where conditions change over time, such as in pulsatile blood flow or variable load conditions in aerodynamics. This modeling technique is crucial for automotive, aerospace, and biomedical engineering industries, where understanding the transient behavior can lead to improved design and performance enhancement. In the failure analysis domain, CFD predicts and analyzes conditions that can lead to system or component failure. It helps in identifying potential weak points in the design phase, thereby reducing risks and preventing costly recalls or safety incidents. Structural analysis using CFD involves the examination of the effects of fluid flows on physical structures. This analysis is necessary for designing buildings that withstand wind loads, bridges that endure varying water currents, and machinery that operates in fluid environments. The construction and maritime industries, among others, highly prioritize this function in their design process. Thermal-fluids analysis is a subset of CFD that evaluates the interaction between temperature and fluids. This is critical for the design of heat exchangers, air conditioning systems, and engine cooling systems, among others. It enables engineers to optimize for heat transfer and efficiency. The automotive and HVAC industries, in particular, rely heavily on this type of analysis. Thermal-structural analysis combines the heat transfer aspect of thermal-fluid analysis with the deformation and stresses of structural analysis. This interdisciplinary approach is important when analyzing components subjected to high temperatures that could affect their mechanical integrity. Highly relevant to the aerospace and manufacturing industries, this analysis helps design components that endure thermal and mechanical loads, such as jet engine turbine blades.

Deployment: Growing preferences for on-cloud CFD for scalability, flexibility, and reduced capital expenses

On-premise CFD refers to the traditional model where simulations are run on physical hardware located within the organization's premises. This setup controls computational resources, data security, and software customization. However, organizations need to make substantial upfront investments in infrastructure and ongoing maintenance. High performance computing (HPC) clusters are typically required for complex simulations, demanding skilled IT staff to manage these systems. On-cloud CFD leverages cloud computing platforms to run simulations, offering a flexible, scalable alternative with often lower upfront costs. Cloud-based models enable seamless access to vast computational resources on demand. This reduces the need for physical infrastructure and shifts expenditures from CapEx to OpEx. With the growing adoption of cloud services in various sectors, on-cloud CFD solutions are becoming increasingly popular, especially for small to medium enterprises and startups.

End-use: Deployment of CFD across aerospace & defense sector to manage complex aerodynamic structures

In aerospace and defense, CFD is critical for designing and optimizing components such as aircraft wings, engine parts, and missile bodies. CFD simulations address fluid flow and heat transfer issues, improving aerodynamic performance, fuel efficiency, and safety. Several applications include analyzing air flows over the aircraft, cabin environment simulations, and cooling systems for advanced electronics. The automotive industry uses CFD to design enhanced performance, reduced drag, and improved fuel efficiency. Applications range from optimizing internal combustion engines to ensuring effective cabin comfort. The analysis of aerodynamic forces and thermal management is also crucial for developing electric and hybrid vehicles to maximize battery performance and the longevity of electronic components. CFD is instrumental in data centers for optimizing cooling strategies and preventing hotspots that can lead to hardware failure. It assists in planning server layouts and designing HVAC systems to ensure efficient air distribution, which is pivotal for maintaining the reliability of large-scale computing systems, especially as data centers grow in size and complexity. In electronics, CFD helps in the thermal management of devices such as smartphones, laptops, and servers by predicting heat flow and distribution, allowing engineers to devise cooling strategies. In the energy sector, CFD supports the development of renewable energy systems like wind turbines and solar panels and the safe operation and efficiency optimization of traditional power generation facilities, such as nuclear reactors and gas turbines. CFD applications in the food and beverage industry involve simulating heating, cooling, and mixing processes to optimize production and ensure product quality. These simulations help comply with safety and sanitation standards while enhancing the flavor and consistency of products. In the pharmaceuticals and Medical Devices segments, CFD is utilized to simulate blood flow in medical devices, aiding in designing cardiovascular devices and assessing their performance. In drug development, CFD simulations contribute to understanding mixing processes, which is essential in the quality and efficacy of pharmaceutical products.

Market Dynamics

The market dynamics represent an ever-changing landscape of the Computational Fluid Dynamics Market by providing actionable insights into factors, including supply and demand levels. Accounting for these factors helps design strategies, make investments, and formulate developments to capitalize on future opportunities. In addition, these factors assist in avoiding potential pitfalls related to political, geographical, technical, social, and economic conditions, highlighting consumer behaviors and influencing manufacturing costs and purchasing decisions.

Market Disruption Analysis

The market disruption analysis delves into the core elements associated with market-influencing changes, including breakthrough technological advancements that introduce novel features, integration capabilities, regulatory shifts that could drive or restrain market growth, and the emergence of innovative market players challenging traditional paradigms. This analysis facilitates a competitive advantage by preparing players in the Computational Fluid Dynamics Market to pre-emptively adapt to these market-influencing changes, enhances risk management by early identification of threats, informs calculated investment decisions, and drives innovation toward areas with the highest demand in the Computational Fluid Dynamics Market.

Porter’s Five Forces Analysis

The porter's five forces analysis offers a simple and powerful tool for understanding, identifying, and analyzing the position, situation, and power of the businesses in the Computational Fluid Dynamics Market. This model is helpful for companies to understand the strength of their current competitive position and the position they are considering repositioning into. With a clear understanding of where power lies, businesses can take advantage of a situation of strength, improve weaknesses, and avoid taking wrong steps. The tool identifies whether new products, services, or companies have the potential to be profitable. In addition, it can be very informative when used to understand the balance of power in exceptional use cases.

Value Chain & Critical Path Analysis

The value chain of the Computational Fluid Dynamics Market encompasses all intermediate value addition activities, including raw materials used, product inception, and final delivery, aiding in identifying competitive advantages and improvement areas. Critical path analysis of the <> market identifies task sequences crucial for timely project completion, aiding resource allocation and bottleneck identification. Value chain and critical path analysis methods optimize efficiency, improve quality, enhance competitiveness, and increase profitability. Value chain analysis targets production inefficiencies, and critical path analysis ensures project timeliness. These analyses facilitate businesses in making informed decisions, responding to market demands swiftly, and achieving sustainable growth by optimizing operations and maximizing resource utilization.

Pricing Analysis

The pricing analysis comprehensively evaluates how a product or service is priced within the Computational Fluid Dynamics Market. This evaluation encompasses various factors that impact the price of a product, including production costs, competition, demand, customer value perception, and changing margins. An essential aspect of this analysis is understanding price elasticity, which measures how sensitive the market for a product is to its price change. It provides insight into competitive pricing strategies, enabling businesses to position their products advantageously in the Computational Fluid Dynamics Market.

Technology Analysis

The technology analysis involves evaluating the current and emerging technologies relevant to a specific industry or market. This analysis includes breakthrough trends across the value chain that directly define the future course of long-term profitability and overall advancement in the Computational Fluid Dynamics Market.

Patent Analysis

The patent analysis involves evaluating patent filing trends, assessing patent ownership, analyzing the legal status and compliance, and collecting competitive intelligence from patents within the Computational Fluid Dynamics Market and its parent industry. Analyzing the ownership of patents, assessing their legal status, and interpreting the patents to gather insights into competitors' technology strategies assist businesses in strategizing and optimizing product positioning and investment decisions.

Trade Analysis

The trade analysis of the Computational Fluid Dynamics Market explores the complex interplay of import and export activities, emphasizing the critical role played by key trading nations. This analysis identifies geographical discrepancies in trade flows, offering a deep insight into regional disparities to identify geographic areas suitable for market expansion. A detailed analysis of the regulatory landscape focuses on tariffs, taxes, and customs procedures that significantly determine international trade flows. This analysis is crucial for understanding the overarching legal framework that businesses must navigate.

Regulatory Framework Analysis

The regulatory framework analysis for the Computational Fluid Dynamics Market is essential for ensuring legal compliance, managing risks, shaping business strategies, fostering innovation, protecting consumers, accessing markets, maintaining reputation, and managing stakeholder relations. Regulatory frameworks shape business strategies and expansion initiatives, guiding informed decision-making processes. Furthermore, this analysis uncovers avenues for innovation within existing regulations or by advocating for regulatory changes to foster innovation.

FPNV Positioning Matrix

The FPNV positioning matrix is essential in evaluating the market positioning of the vendors in the Computational Fluid Dynamics Market. This matrix offers a comprehensive assessment of vendors, examining critical metrics related to business strategy and product satisfaction. This in-depth assessment empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success, namely Forefront (F), Pathfinder (P), Niche (N), or Vital (V).

Market Share Analysis

The market share analysis is a comprehensive tool that provides an insightful and in-depth assessment of the current state of vendors in the Computational Fluid Dynamics Market. By meticulously comparing and analyzing vendor contributions, companies are offered a greater understanding of their performance and the challenges they face when competing for market share. These contributions include overall revenue, customer base, and other vital metrics. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With these illustrative details, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.

Recent Developments

Dotmatics Acquires M-Star to Expand Presence in Bioprocessing and Chemicals & Materials Markets

Dotmatics, a frontrunner in scientific research and development software, acquired M-Star, a premier provider of computational fluid dynamics (CFD) software solutions. This significant move marks a consolidation of expertise, setting the stage for groundbreaking advancements in the bioprocessing sector, which is critical to the manufacturing processes of cell and gene therapies in life sciences research and development. Integrating M-Star's prowess into Dotmatics's portfolio is set to accelerate innovation, drive efficiencies, and enhance decision-making in life sciences R&D markets.

HPE Unveils Advanced Computational Fluid Dynamics Solutions for Sauber Motorsport

Hewlett Packard Enterprise (HPE) partnered with Sauber Motorsport AG to enhance the aerodynamic capabilities of their Formula One racers through a state-of-the-art high-performance computing (HPC) solution. The collaborative effort birthed an innovative system whose computational fluid dynamics (CFD) prowess eclipses its predecessor, providing superior computing power to expedite aerodynamic simulations.

Ansys' Global Partnership with F1 in Schools Empowers and Inspires New Generation of Engineers

Ansys collaborated with F1 in Schools, enhancing the program's contribution to global STEM education. As part of this collaboration, Ansys will provide cutting-edge Computational Fluid Dynamics (CFD) simulation tools to student teams, elevating the educational experience by offering practical, hands-on applications of professional engineering software. This support helps bridge the gap between theoretical concepts and real-world engineering challenges.

Strategy Analysis & Recommendation

The strategic analysis is essential for organizations seeking a solid foothold in the global marketplace. Companies are better positioned to make informed decisions that align with their long-term aspirations by thoroughly evaluating their current standing in the Computational Fluid Dynamics Market. This critical assessment involves a thorough analysis of the organization’s resources, capabilities, and overall performance to identify its core strengths and areas for improvement.

Key Company Profiles

The report delves into recent significant developments in the Computational Fluid Dynamics Market, highlighting leading vendors and their innovative profiles. These include Airflow Sciences Corporation, Altair Engineering Inc., ANSYS, Inc., Autodesk, Inc., Azore Software, LLC, byteLAKE, Cadence Design Systems, Inc., Cape CFD, COMSOL, Inc., Convergent Science, Inc., Dassault Systèmes SE, Desanco, Dive Solutions GmbH, ESI Group, FEXILON TECHNOLOGIES, Graphler Technology Solutions, Hexagon AB, Hitech Digital Solutions LLP, Mr CFD Company, LLC, PD Solutions, PTC Inc., Resolved Analytics, PLLC, Siemens AG, Simerics Inc., Streamwise GmbH, Symscape, Tridiagonal Solutions Pvt. Ltd., and VirtusAero, LLC.

Market Segmentation & Coverage

This research report categorizes the Computational Fluid Dynamics Market to forecast the revenues and analyze trends in each of the following sub-markets:
  • Function
    • Dynamic Modeling
    • Failure Analysis
    • Structural Analysis
    • Thermal-Fluids
    • Thermal-Structural
  • Deployment
    • On-Cloud
    • On-Premise
  • End Use
    • Aerospace & Defense
    • Automotive
    • Data Centers
    • Electronics & Energy
    • Food & Beverage
    • Pharmaceuticals & Medical Devices
  • Region
    • Americas
      • Argentina
      • Brazil
      • Canada
      • Mexico
      • United States
        • California
        • Florida
        • Illinois
        • New York
        • Ohio
        • Pennsylvania
        • Texas
    • Asia-Pacific
      • Australia
      • China
      • India
      • Indonesia
      • Japan
      • Malaysia
      • Philippines
      • Singapore
      • South Korea
      • Taiwan
      • Thailand
      • Vietnam
    • Europe, Middle East & Africa
      • Denmark
      • Egypt
      • Finland
      • France
      • Germany
      • Israel
      • Italy
      • Netherlands
      • Nigeria
      • Norway
      • Poland
      • Qatar
      • Russia
      • Saudi Arabia
      • South Africa
      • Spain
      • Sweden
      • Switzerland
      • Turkey
      • United Arab Emirates
      • United Kingdom

This research report offers invaluable insights into various crucial aspects of the Computational Fluid Dynamics Market:

  1. Market Penetration: This section thoroughly overviews the current market landscape, incorporating detailed data from key industry players.
  2. Market Development: The report examines potential growth prospects in emerging markets and assesses expansion opportunities in mature segments.
  3. Market Diversification: This includes detailed information on recent product launches, untapped geographic regions, recent industry developments, and strategic investments.
  4. Competitive Assessment & Intelligence: An in-depth analysis of the competitive landscape is conducted, covering market share, strategic approaches, product range, certifications, regulatory approvals, patent analysis, technology developments, and advancements in the manufacturing capabilities of leading market players.
  5. Product Development & Innovation: This section offers insights into upcoming technologies, research and development efforts, and notable advancements in product innovation.

Additionally, the report addresses key questions to assist stakeholders in making informed decisions:

  1. What is the current market size and projected growth?
  2. Which products, segments, applications, and regions offer promising investment opportunities?
  3. What are the prevailing technology trends and regulatory frameworks?
  4. What is the market share and positioning of the leading vendors?
  5. What revenue sources and strategic opportunities do vendors in the market consider when deciding to enter or exit?

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Table of Contents

1. Preface
1.1. Objectives of the Study
1.2. Market Segmentation & Coverage
1.3. Years Considered for the Study
1.4. Currency & Pricing
1.5. Language
1.6. Stakeholders
2. Research Methodology
2.1. Define: Research Objective
2.2. Determine: Research Design
2.3. Prepare: Research Instrument
2.4. Collect: Data Source
2.5. Analyze: Data Interpretation
2.6. Formulate: Data Verification
2.7. Publish: Research Report
2.8. Repeat: Report Update
3. Executive Summary4. Market Overview
5. Market Insights
5.1. Market Dynamics
5.1.1. Drivers
5.1.1.1. Growing Usage of CFD in the Aerospace and Aeronautics Industries
5.1.1.2. Booming Automotive Industry Globally
5.1.1.3. Elevating Applications in the Data Centers
5.1.2. Restraints
5.1.2.1. High Cost and Certain Limitations Associated With CFD
5.1.3. Opportunities
5.1.3.1. Developments in Computational Fluid Dynamics and Adoption of Cloud Solutions
5.1.3.2. Emerging Role of CFD in Healthcare and Biomedical Engineering
5.1.4. Challenges
5.1.4.1. Validation Problems in Computational Fluid Mechanics
5.2. Market Segmentation Analysis
5.2.1. Function: Advancement in dynamic modeling across industrial setting to manage temporal changes
5.2.2. Deployment: Growing preferences for on-cloud CFD for scalability, flexibility, and reduced capital expenses
5.2.3. End-use: Deployment of CFD across aerospace & defense sector to manage complex aerodynamic structures
5.3. Market Trend Analysis
5.4. Cumulative Impact of Russia-Ukraine Conflict
5.5. Cumulative Impact of High Inflation
5.6. Porter’s Five Forces Analysis
5.6.1. Threat of New Entrants
5.6.2. Threat of Substitutes
5.6.3. Bargaining Power of Customers
5.6.4. Bargaining Power of Suppliers
5.6.5. Industry Rivalry
5.7. Value Chain & Critical Path Analysis
5.8. Regulatory Framework Analysis
5.9. Client Customization
6. Computational Fluid Dynamics Market, by Function
6.1. Introduction
6.2. Dynamic Modeling
6.3. Failure Analysis
6.4. Structural Analysis
6.5. Thermal-Fluids
6.6. Thermal-Structural
7. Computational Fluid Dynamics Market, by Deployment
7.1. Introduction
7.2. On-Cloud
7.3. On-Premise
8. Computational Fluid Dynamics Market, by End Use
8.1. Introduction
8.2. Aerospace & Defense
8.3. Automotive
8.4. Data Centers
8.5. Electronics & Energy
8.6. Food & Beverage
8.7. Pharmaceuticals & Medical Devices
9. Americas Computational Fluid Dynamics Market
9.1. Introduction
9.2. Argentina
9.3. Brazil
9.4. Canada
9.5. Mexico
9.6. United States
10. Asia-Pacific Computational Fluid Dynamics Market
10.1. Introduction
10.2. Australia
10.3. China
10.4. India
10.5. Indonesia
10.6. Japan
10.7. Malaysia
10.8. Philippines
10.9. Singapore
10.10. South Korea
10.11. Taiwan
10.12. Thailand
10.13. Vietnam
11. Europe, Middle East & Africa Computational Fluid Dynamics Market
11.1. Introduction
11.2. Denmark
11.3. Egypt
11.4. Finland
11.5. France
11.6. Germany
11.7. Israel
11.8. Italy
11.9. Netherlands
11.10. Nigeria
11.11. Norway
11.12. Poland
11.13. Qatar
11.14. Russia
11.15. Saudi Arabia
11.16. South Africa
11.17. Spain
11.18. Sweden
11.19. Switzerland
11.20. Turkey
11.21. United Arab Emirates
11.22. United Kingdom
12. Competitive Landscape
12.1. Market Share Analysis, 2023
12.2. FPNV Positioning Matrix, 2023
12.3. Competitive Scenario Analysis
12.3.1. Dotmatics Acquires M-Star to Expand Presence in Bioprocessing and Chemicals & Materials Markets
12.3.2. HPE Unveils Advanced Computational Fluid Dynamics Solutions for Sauber Motorsport
12.3.3. Ansys' Global Partnership with F1 in Schools Empowers and Inspires New Generation of Engineers
13. Competitive Portfolio
13.1. Key Company Profiles
13.2. Key Product Portfolio
List of Figures
FIGURE 1. COMPUTATIONAL FLUID DYNAMICS MARKET RESEARCH PROCESS
FIGURE 2. COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, 2023 VS 2030
FIGURE 3. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, 2018-2030 (USD MILLION)
FIGURE 4. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY REGION, 2023 VS 2030 (%)
FIGURE 5. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY REGION, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 6. COMPUTATIONAL FLUID DYNAMICS MARKET DYNAMICS
FIGURE 7. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2023 VS 2030 (%)
FIGURE 8. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 9. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2023 VS 2030 (%)
FIGURE 10. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 11. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2023 VS 2030 (%)
FIGURE 12. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 13. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
FIGURE 14. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 15. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STATE, 2023 VS 2030 (%)
FIGURE 16. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STATE, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 17. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
FIGURE 18. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 19. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2030 (%)
FIGURE 20. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2023 VS 2024 VS 2030 (USD MILLION)
FIGURE 21. COMPUTATIONAL FLUID DYNAMICS MARKET SHARE, BY KEY PLAYER, 2023
FIGURE 22. COMPUTATIONAL FLUID DYNAMICS MARKET, FPNV POSITIONING MATRIX, 2023
List of Tables
TABLE 1. COMPUTATIONAL FLUID DYNAMICS MARKET SEGMENTATION & COVERAGE
TABLE 2. UNITED STATES DOLLAR EXCHANGE RATE, 2018-2023
TABLE 3. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, 2018-2023 (USD MILLION)
TABLE 4. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, 2024-2030 (USD MILLION)
TABLE 5. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY REGION, 2018-2023 (USD MILLION)
TABLE 6. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY REGION, 2024-2030 (USD MILLION)
TABLE 7. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 8. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 9. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DYNAMIC MODELING, BY REGION, 2018-2023 (USD MILLION)
TABLE 10. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DYNAMIC MODELING, BY REGION, 2024-2030 (USD MILLION)
TABLE 11. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FAILURE ANALYSIS, BY REGION, 2018-2023 (USD MILLION)
TABLE 12. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FAILURE ANALYSIS, BY REGION, 2024-2030 (USD MILLION)
TABLE 13. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STRUCTURAL ANALYSIS, BY REGION, 2018-2023 (USD MILLION)
TABLE 14. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STRUCTURAL ANALYSIS, BY REGION, 2024-2030 (USD MILLION)
TABLE 15. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY THERMAL-FLUIDS, BY REGION, 2018-2023 (USD MILLION)
TABLE 16. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY THERMAL-FLUIDS, BY REGION, 2024-2030 (USD MILLION)
TABLE 17. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY THERMAL-STRUCTURAL, BY REGION, 2018-2023 (USD MILLION)
TABLE 18. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY THERMAL-STRUCTURAL, BY REGION, 2024-2030 (USD MILLION)
TABLE 19. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 20. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 21. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ON-CLOUD, BY REGION, 2018-2023 (USD MILLION)
TABLE 22. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ON-CLOUD, BY REGION, 2024-2030 (USD MILLION)
TABLE 23. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ON-PREMISE, BY REGION, 2018-2023 (USD MILLION)
TABLE 24. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ON-PREMISE, BY REGION, 2024-2030 (USD MILLION)
TABLE 25. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 26. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 27. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY AEROSPACE & DEFENSE, BY REGION, 2018-2023 (USD MILLION)
TABLE 28. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY AEROSPACE & DEFENSE, BY REGION, 2024-2030 (USD MILLION)
TABLE 29. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY AUTOMOTIVE, BY REGION, 2018-2023 (USD MILLION)
TABLE 30. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY AUTOMOTIVE, BY REGION, 2024-2030 (USD MILLION)
TABLE 31. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DATA CENTERS, BY REGION, 2018-2023 (USD MILLION)
TABLE 32. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DATA CENTERS, BY REGION, 2024-2030 (USD MILLION)
TABLE 33. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ELECTRONICS & ENERGY, BY REGION, 2018-2023 (USD MILLION)
TABLE 34. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY ELECTRONICS & ENERGY, BY REGION, 2024-2030 (USD MILLION)
TABLE 35. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FOOD & BEVERAGE, BY REGION, 2018-2023 (USD MILLION)
TABLE 36. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FOOD & BEVERAGE, BY REGION, 2024-2030 (USD MILLION)
TABLE 37. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY PHARMACEUTICALS & MEDICAL DEVICES, BY REGION, 2018-2023 (USD MILLION)
TABLE 38. GLOBAL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY PHARMACEUTICALS & MEDICAL DEVICES, BY REGION, 2024-2030 (USD MILLION)
TABLE 39. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 40. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 41. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 42. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 43. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 44. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 45. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2018-2023 (USD MILLION)
TABLE 46. AMERICAS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2024-2030 (USD MILLION)
TABLE 47. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 48. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 49. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 50. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 51. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 52. ARGENTINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 53. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 54. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 55. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 56. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 57. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 58. BRAZIL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 59. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 60. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 61. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 62. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 63. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 64. CANADA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 65. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 66. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 67. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 68. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 69. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 70. MEXICO COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 71. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 72. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 73. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 74. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 75. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 76. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 77. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STATE, 2018-2023 (USD MILLION)
TABLE 78. UNITED STATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY STATE, 2024-2030 (USD MILLION)
TABLE 79. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 80. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 81. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 82. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 83. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 84. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 85. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2018-2023 (USD MILLION)
TABLE 86. ASIA-PACIFIC COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2024-2030 (USD MILLION)
TABLE 87. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 88. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 89. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 90. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 91. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 92. AUSTRALIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 93. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 94. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 95. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 96. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 97. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 98. CHINA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 99. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 100. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 101. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 102. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 103. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 104. INDIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 105. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 106. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 107. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 108. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 109. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 110. INDONESIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 111. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 112. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 113. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 114. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 115. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 116. JAPAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 117. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 118. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 119. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 120. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 121. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 122. MALAYSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 123. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 124. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 125. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 126. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 127. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 128. PHILIPPINES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 129. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 130. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 131. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 132. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 133. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 134. SINGAPORE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 135. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 136. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 137. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 138. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 139. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 140. SOUTH KOREA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 141. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 142. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 143. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 144. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 145. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 146. TAIWAN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 147. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 148. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 149. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 150. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 151. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 152. THAILAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 153. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 154. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 155. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 156. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 157. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 158. VIETNAM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 159. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 160. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 161. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 162. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 163. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 164. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 165. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2018-2023 (USD MILLION)
TABLE 166. EUROPE, MIDDLE EAST & AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY COUNTRY, 2024-2030 (USD MILLION)
TABLE 167. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 168. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 169. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 170. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 171. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 172. DENMARK COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 173. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 174. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 175. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 176. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 177. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 178. EGYPT COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 179. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 180. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 181. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 182. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 183. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 184. FINLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 185. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 186. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 187. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 188. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 189. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 190. FRANCE COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 191. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 192. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 193. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 194. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 195. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 196. GERMANY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 197. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 198. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 199. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 200. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 201. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 202. ISRAEL COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 203. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 204. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 205. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 206. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 207. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 208. ITALY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 209. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 210. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 211. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 212. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 213. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 214. NETHERLANDS COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 215. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 216. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 217. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 218. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 219. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 220. NIGERIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 221. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 222. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 223. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 224. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 225. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 226. NORWAY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 227. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 228. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 229. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 230. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 231. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 232. POLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 233. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 234. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 235. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 236. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 237. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 238. QATAR COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 239. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 240. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 241. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 242. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 243. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 244. RUSSIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 245. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 246. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 247. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 248. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 249. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 250. SAUDI ARABIA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 251. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 252. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 253. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 254. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 255. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 256. SOUTH AFRICA COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 257. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 258. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 259. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 260. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 261. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 262. SPAIN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 263. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 264. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 265. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 266. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 267. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 268. SWEDEN COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 269. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 270. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 271. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 272. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 273. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 274. SWITZERLAND COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 275. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 276. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 277. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 278. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 279. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 280. TURKEY COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 281. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 282. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 283. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 284. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 285. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 286. UNITED ARAB EMIRATES COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 287. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2018-2023 (USD MILLION)
TABLE 288. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY FUNCTION, 2024-2030 (USD MILLION)
TABLE 289. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2018-2023 (USD MILLION)
TABLE 290. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY DEPLOYMENT, 2024-2030 (USD MILLION)
TABLE 291. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2018-2023 (USD MILLION)
TABLE 292. UNITED KINGDOM COMPUTATIONAL FLUID DYNAMICS MARKET SIZE, BY END USE, 2024-2030 (USD MILLION)
TABLE 293. COMPUTATIONAL FLUID DYNAMICS MARKET SHARE, BY KEY PLAYER, 2023
TABLE 294. COMPUTATIONAL FLUID DYNAMICS MARKET, FPNV POSITIONING MATRIX, 2023

Companies Mentioned

  • Airflow Sciences Corporation
  • Altair Engineering Inc.
  • ANSYS, Inc.
  • Autodesk, Inc.
  • Azore Software, LLC
  • byteLAKE
  • Cadence Design Systems, Inc.
  • Cape CFD
  • COMSOL, Inc.
  • Convergent Science, Inc.
  • Dassault Systèmes SE
  • Desanco
  • Dive Solutions GmbH
  • ESI Group
  • FEXILON TECHNOLOGIES
  • Graphler Technology Solutions
  • Hexagon AB
  • Hitech Digital Solutions LLP
  • Mr CFD Company, LLC
  • PD Solutions
  • PTC Inc.
  • Resolved Analytics, PLLC
  • Siemens AG
  • Simerics Inc.
  • Streamwise GmbH
  • Symscape
  • Tridiagonal Solutions Pvt. Ltd.
  • VirtusAero, LLC

Methodology

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Table Information