MxSim.CFD fluid simulation analysis software
MxSim.CFD fluid simulation analysis software
Focusing on fluid heat transfer and aerodynamic analysis, it deeply integrates the self-developed GPU parallel underlying equation set iterative solution algorithm, which is more than 10 times faster than traditional CPU parallel computing. Focus on supporting aerospace engineering fluid-solid coupling, electronic and electrical heat dissipation, advanced weapons and equipment aerodynamic characteristics and rotating machinery performance evaluation.
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Compressible Fluid Module Incompressible Fluid Module
Core functions
Compressible fluid module: conventional aerodynamic analysis, aerodynamic thermal analysis, unsteady simulation analysis, turbulence analysis, dynamic network analysis, high-temperature chemical reaction analysis, aerodynamic noise analysis, LES analysis, and jet analysis.
Incompressible fluid module: incompressible flow analysis, turbulence analysis, multiphase flow analysis, fluid heat transfer analysis, moving mesh analysis, aerodynamic noise analysis, porous media analysis, solidification and melting analysis.
Product advantages
1. CPU/GPU multi-level parallel strategy and GPU parallel acceleration technology significantly shorten the simulation time.
2. Large-scale parallel solution of complex problems with low power efficiency and high efficiency can easily solve hundreds of millions of grids of complex engineering shapes. The computing efficiency exceeds traditional HPC by more than 10 times, achieves desktop-level supercomputing and reduces energy consumption by more than 5 times.
3. Rich and reliable fluid solution functions, covering the main functions of international mainstream soft aerodynamics and heat flow analysis, and can provide high-precision analysis for the aerospace and military industries.
Application areas
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Rocket separation simulation |
Electronic component thermal simulation |
Car external flow field simulation |
Centrifugal fan flow field simulation |
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Aircraft Aerodynamic Simulation |
Return capsule aerodynamic thermal simulation |
Radiation heat transfer analysis |
Porous media analysis |