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Investigation of the velocity field downstream of a benchmark vent using numerical simulation and hot-wire anemometry

机译:使用数值模拟和热线风速法研究基准通风口下游的速度场

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The velocity field in the area behind the automotive vent was measured by hot-wire anenemometry in detail and intensity of turbulence was calculated. Numerical simulation of the same flow field was performed using Computational fluid dynamics in commecial software STAR-CCM+. Several turbulence models were tested and compared with Large Eddy Simulation. The influence of turbulence model on the results of air flow from the vent was investigated. The comparison of simulations and experimental results showed that most precise prediction of flow field was provided by Spalart-Allmaras model. Large eddy simulation did not provide results in quality that would compensate for the increased computing cost.
机译:通过热线比色法详细测量了汽车排气孔后面区域的速度场,并计算了湍流强度。使用商业软件STAR-CCM +中的计算流体动力学进行了相同流场的数值模拟。测试了几种湍流模型并将其与大涡模拟进行了比较。研究了湍流模型对通风口气流结果的影响。仿真和实验结果的比较表明,Spalart-Allmaras模型提供了最精确的流场预测。大型涡流仿真无法提供质量上的结果,而该质量可以弥补增加的计算成本。

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