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Analysis of the Internal Flow Structure of Torque Converter Using Proper Orthogonal Decomposition under Transient Driving Conditions

机译:在瞬态驾驶条件下使用适当的正交分解的转矩转换器内部流动结构分析

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The characteristic structure of the flow field in a torque converter is quantitatively evaluated using proper orthogonal decomposition (POD) under transient driving conditions assuming start-up acceleration and deceleration of a vehicle. The time-series velocity data inside the torque converter to be input to POD is measured using a particle image velocimetry (PIV) technique. At first, in the case of changing the rotational speed of the impeller or turbine, dynamic cascades with changing rotational speed were observed to induce fluid motion. The flow field structure was gradually reformed according to the speed ratio after transition. In addition, the region of structural changes of the flow field was found to be larger for the decelerating driving condition compared to the case of start-up acceleration.
机译:假设车辆的启动加速度和减速度,在瞬态驱动条件下使用适当的正交分解(POD)来定量地评估变矩器中的流场的特征结构。使用粒子图像VELOCIMETRY(PIV)技术测量要输入的待输入到POD的变矩器内部的时序速度数据。首先,在改变叶轮或涡轮机的旋转速度的情况下,观察到具有改变旋转速度的动态级联以诱导流体运动。流场结构根据转变后的速度比逐渐重整。另外,与启动加速度的情况相比,发现流场的结构变化区域对于减速的驾驶条件较大。

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