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On comparisons between CFD methods and wind tunnel tests on a bluff body

机译:浅谈Bluff身体CFD方法与风洞试验的比较

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The numerical and modeling errors in computational aerodynamics consist of several components. The errors have been shown to be large at the front in the stagnation region, and in the rear in the base region, see Ramnefors et al., (1996). This paper presents results from numerical simulations of the flow around a simplified Volvo FH truck. Experimental data have been created for comparison in the Volvo Wind-tunnel Simulation of the flow around the truck using several turbulence models and numerical schemes are compared to experimental measurements of drag, surface pressure distribution and total pressure distribution in the wake. It was found that the numerical scheme is very important for the base pressure. Several turbulence models have been tested. The models range from simple linear eddy viscosity models, EVMs, to more complex models such as nonlinear EVMs and Reynolds stress transport models. The errors are shown to be surprisingly large along the roof of the truck.
机译:计算空气动力学中的数值和建模误差由几个组件组成。 在停滞区域的前部显示出误差,并且在基地的后部,参见Ramnefors等,(1996)。 本文介绍了简化沃尔沃FH卡车周围流动的数值模拟的结果。 已经创建了实验数据,以便在使用几种湍流模型周围的卡车周围的流动的沃尔沃风隧道模拟中进行了比较,并且将数值方案与尾术中的阻力,表面压力分布和总压力分布的实验测量进行了比较。 发现数值方案对于基础压力非常重要。 已经测试了几种湍流模型。 模型范围从简单的线性涡流模型,EVMS,更复杂的型号,如非线性EVM和Reynolds应力运输模型。 误差被认为是沿着卡车屋顶的令人惊讶的大。

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