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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Periodic Velocity Measurements in a Wide and Large Radius Ratio Automotive Torque Converter at the Pump/Turbine Interface
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Periodic Velocity Measurements in a Wide and Large Radius Ratio Automotive Torque Converter at the Pump/Turbine Interface

机译:宽/大半径比汽车液力变矩器在泵/涡轮界面处的周期性速度测量

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The unsteady flow field due to blade passing at the pump/turbine interface of a torque converter was studied. The current geometry is wide and has a large outer to inner radius ratio. A laser velocimeter was used to measure the periodic velocity components at four operating conditions determined by the speed ratios between the turbine and pump of 0.065 (near stall), 0.600, 0.800, and 0.875 (coupling point). The flow fields at the pump exit and turbine inlet planes were visualized and are presented. Using instantaneous pump and turbine blade positions with the velocity data, animations ("slow-motion movies") are generated to effectively visualize and understand the unsteady behavior The turbine inlet flow was markedly periodic due to the exiting jet/wake from the upstream pump passage; however the pump exit flow field showed little dependence on the turbine blade positions. The highest unsteadiness was seen for the highest speed ratios. Four "shots" from the sequences of one cycle for all speed ratios and each plane are presented herein. The results are also compared to unsteady results for a previously examined torque converter with a small radius ratio to determine the effect of parametric geometric changes on the flow field. Generally, the unsteady velocity fields show no significant difference for the two geometries--the trends are the same.
机译:研究了由于叶片在变矩器的泵/涡轮界面处通过而引起的非稳态流场。当前的几何形状较宽,并且具有较大的内外半径比。激光测速仪用于测量四种工况下的周期性速度分量,该工况由涡轮和泵之间的速比0.065(接近失速),0.600、0.800和0.875(耦合点)确定。可视化并显示了泵出口和涡轮机入口平面的流场。通过使用瞬时泵和涡轮叶片位置以及速度数据,可以生成动画(“慢动作电影”)以有效地可视化和理解不稳定现象。由于上游泵通道的射流/尾流,涡轮机进口流量明显呈周期性;但是,泵出口流场几乎不依赖于涡轮叶片位置。最高的速比是最大的不稳定。本文介绍了所有速比和每个平面的一个周期序列的四个“发射”。还将结果与先前检查的半径比较小的变矩器的不稳定结果进行比较,以确定参数几何变化对流场的影响。通常,非恒定速度场对于两种几何形状没有显着差异-趋势是相同的。

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