Simcenter FLOEFD 是一款独立CFD 软件,不需要预先安装CAx系统,具有多物理场功能,适用于设计师和分析师。该软件通过在开发设计早期进行流体流动仿真和热分析,并使用原生 CAD 几何体,可将开发时间比普通 CFD 方法缩短多达 65-75%。
前期 CFD 仿真可缩短开发周期
Simcenter FLOEFD 使设计工程师能够在设计流程的前期进行仿真,此时识别和修复问题或探索改进更具成本效益。它集成在 CAD 中,可将生产率提高 2 到 40 倍。
运用对设计师友好的直观 CFD 界面
通过 Simcenter FLOEFD 嵌入的 CAD 界面、引导式仿真设置和执行、智能自动化技术以及直观的结果查看方式,方便设计工程师进行仿真。他们能够尽早探索设计性能,无需克服传统障碍即可做出明智决策。
直接对原生 CAD 几何体执行 CFD,并消除 CFD 开销
消除工具之间几何体转换的延迟,并克服为 CFD 分析准备 CAD 几何体的复杂性。Simcenter FLOEFD 直接使用原生几何体:因此,当您探索性能或评估对模型做出的更改时,CAD 模型会同步更改。
它在强大的自动网格划分和独特的 SmartCell 技术方面具有明显优势,可以处理任何质量的 CAD 几何体。这些优势有助于处理装配体中的窄小间隙和表面不一致性,而传统的 CFD 工具通常会导致修复延迟过长。此外还有智能自动化预处理,如 CAD 几何体的自动密封和渗漏识别。
使用仿真驱动型设计 – 探索、比较和优化
利用参数化研究和设计探索功能,在可用时间内评估更多设计方案。评估“假设”场景,确保产品在不同条件下的性能和可靠性。
使用该软件,只需点击几下,即可轻松通过 CFD 可视化结果图、绘图和表格结果对设计进行并排比较,并生成报告。通过仿真优化设计后,您可以直接将 CAD 模型传递给其他工程设计部门。
File Size: 6.3 GB
FloEFD Standalone version does not require pre-installed CAD systems, is based on advanced Computational Fluid Dynamics (CFD) technology and allows you to analyze a wide range of complex problems, including:
• Analysis of hydro-aerodynamics and heat transfer of two- and three-dimensional models
• Analysis of external and internal flows
• Analysis of steady and unsteady flow
• Flow of incompressible liquid and compressible gas, including a combustible mixture, in subsonic, transonic, supersonic and hypersonic flow regimes
• Condensation of water vapor
• Calculation of relative air humidity in gas flows
• Flow of Non-Newtonian liquids (laminar flow only)
• Flow in a compressible fluid (fluid density depends on pressure)
• Flow in real gases
• Analysis of Laminar, turbulent and unsteady flows
• Analysis of vortex flows and fans
• Analysis of flows with solids
• Analysis of heat transfer within and between liquids and solids
• Analysis of thermal transfer within solids in the absence of surrounding flow
• Calculation of thermal contact resistance
• Calculation of electrical contact resistance
• Thermoelectric coolers
• Radiative heat transfer
• Joule heating
• Flows with gravitational effects (also known as the buoyancy effect)
• Porous media
• Thermal pipes
• Heat transfer in printed circuit boards
• Heat transfer in perforated plates
• Flow of aerosol flows
• Taking into account the roughness of bodies when flowing around
• Taking into account the tangential movement of walls (displacement and rotation)
• Flow in rotating devices
• Cavitation in liquid flows
• Combustion in gas mixtures
System requirements
– Microsoft Windows 10 Pro or Enterprise 64-bit (tested with v1909), Microsoft Windows 11 Pro 64 -bit (tested with v21H2)
– For solver: Microsoft Windows Server 2012, Microsoft Windows Server 2012 R2, Microsoft Windows Server 2016, Microsoft Windows Server 2019,
Microsoft Windows Server 2016 with HPC Pack 2016, Microsoft Windows Server 2019 with HPC Pack 2019
– Microsoft Office 365, Microsoft Office 2019, Microsoft Office 2016, Microsoft Office 2013
– Ethernet network adapter
– Mouse or other pointing device
– 8 GB RAM minimum, more recommended
– 2 GB of free hard disk space, more required for simulation models
– Localized languages : French, German, Japanese, Korean, Simplified Chinese, Russian
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