首页> 外文会议>ASME/JSME thermal engineering joint conference;AJTEC2011 >NUMERICAL AND EXPERIMENTAL INVESTIGATION OF TEMPERATURE AND FLOW FIELD IN A FULL VEHICLE
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NUMERICAL AND EXPERIMENTAL INVESTIGATION OF TEMPERATURE AND FLOW FIELD IN A FULL VEHICLE

机译:整车温度和流场的数值和实验研究

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Accurate CFD simulation of full vehicle enables vehicle development specialists to gain access to detailed flow and temperature field for the entire vehicle and for arbitrary driving conditions. Information of that nature is invaluable to vehicle development and design since it leads to detailed understanding of the problem areas and pointers to how the design and performance can be improved from the thermal management perspective. Presented are simulations of the vehicle Renault Scenic II cruising at 60 kilometers per hour using PowerFLOW. The simulations were performed using a coupling between the flow solver PowerFLOW and the thermal simulation package PowerTHERM that accounts for conduction and radiation effects. The simulation results were compared with the test data for steady state forced convection case. In order to gauge the accuracy of the simulations, extensive validations were made with thermocouple data and flow measurements. Good agreement was observed between the simulation results and the measurements.
机译:整车的精确CFD仿真使车辆开发专家可以访问整辆车以及任意驾驶条件下的详细流场和温度场。这种性质的信息对于车辆的开发和设计而言是无价的,因为它可以导致对问题区域的详细了解,并从热管理的角度指导如何改进设计和性能。展示的是使用PowerFLOW进行的雷诺Scenic II车辆以每小时60公里的速度巡航的仿真。使用流动求解器PowerFLOW和考虑传导和辐射效应的热仿真软件包PowerTHERM之间的耦合来执行仿真。将仿真结果与稳态强制对流情况下的测试数据进行了比较。为了评估模拟的准确性,对热电偶数据和流量测量进行了广泛的验证。在仿真结果和测量结果之间观察到良好的一致性。

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