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Numerical Simulation of Flow Field around Amphibious Vehicle Based on CFD

机译:基于CFD的两栖车辆流域的数值模拟

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Flow field information is very important to study hydro-performance of amphibious vehicle. However, it is difficult and expensive to measure it. To overcome the problem, CFD was used to acquire the information. The Reynolds Average Navier-Stokes equation was taken as basic mathematical model to describe flow field. Flow field region was discretized by hybrid mesh and governing equations were discretized by Finite Volume Method. Second order upwind scheme was used for spatial discretization and Euler scheme was used for temporal discretization. Result indicates that simulated flow field is consistent with experimental flow field on shape and hydrodynamic characteristic. Resistance accuracy is nearly 12%. It can be concluded that the method based on CFD is feasible to simulate the flow field around amphibious vehicle.
机译:流场信息对于研究两栖车辆的水力性能非常重要。然而,测量它是困难和昂贵的。为了克服这个问题,CFD被用来获取信息。雷诺斯平均Navier-Stokes方程被视为描述流场的基本数学模型。通过混合网格分离流场区域,通过有限体积方法离散化程。二阶Upwind方案用于空间离散化,欧拉方案用于时间离散化。结果表明,模拟流场与形状和流体动力学特性的实验流场一致。电阻精度接近12%。可以得出结论,基于CFD的方法是可行的,可以模拟两栖车辆周围的流场。

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