首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >FUNDAMENTAL ANALYSIS OF THE SECONDARY FLOWS AND JET-WAKE IN A TORQUE CONVERTER PUMP - PART 2: FLOW IN A CURVED STATIONARY PASSAGE AND COMBINED FLOWS
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FUNDAMENTAL ANALYSIS OF THE SECONDARY FLOWS AND JET-WAKE IN A TORQUE CONVERTER PUMP - PART 2: FLOW IN A CURVED STATIONARY PASSAGE AND COMBINED FLOWS

机译:次级转换器泵中的二次流动和喷射尾部的基本分析 - 第2部分:弯曲固定通道和组合流动的流动

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Previously, experimental results for the velocity field in a torque converter pump showed strong jet/wake characteristics including backflovvs and circulatory secondary flows. Navier-Stokes flow models were developed herein to independently analyze the pump pressure-to-suction side jet/wake flow, the core-to-shell side jet/wake flow, and the secondary flows. Two relatively simple models were employed: (ⅰ) a rotating 2-D straight-walled duct and (ⅱ) a 180°flow bend. Parametric studies were undertaken to evaluate the effect that operating conditions and geometry had on the characteristics. Using the modified equations for the generation of stream wise vorticity and the results from the two-dimensional jet/wake model for the normal and binomial vorticity components, trends for the secondary flows in the torque converter purnp were predicted. Predicted secondary flows in the torque converter pump circulated in the counterclockwise direction (positive streamwise vorticity) in the pump mid-plane and in the clockwise direction (negative streamwise vorticity) in the pump exit plane. These trends agreed with experimental observations. Both the Reynolds number and the modified Rossby number were seen to have a significant influence on the streamwise vorticity and, thus, on the magnitude of the secondary flow velocities. The pump mid-plane counter-clockwise secondary flow circulation was primarily caused by the interaction of the pressure-to-suction side jet/wake non-uniform flow (and the associated normal vorticity component) with the high radial/axial flow turning angle the flow underwent while passing through blade passage. Similarly, the pump exit plane clockwise secondary flow circulation was caused by the core-to-shell side jet/wake non-uniform flow (and the associated binomial vorticity component) being rotated about a fixed centerline (pump shaft). Thus, the pump streamwise vorticity, which was responsible for the generation circulatory secondary flows, was directly related to the pump jet/wake phenomena.
机译:以前,变矩器泵中的速度场的实验结果显示出强烈的喷射/唤醒特性,包括反向流和循环二次流动。在本文中开发了Navier-Stokes流模型,以独立地分析泵压力侧射流/唤醒流动,芯 - 壳侧射流/唤醒流程和二次流动。两个相对简单的模型,使用:(ⅰ)一个旋转2- d直壁管和(ⅱ)180°弯曲流动。参数化研究进行了评估操作条件和几何结构对特征的影响。使用用于生成流明智性的修改方程以及来自正常和二项式涡度分量的二维喷射/唤醒模型的结果,预测了转矩转换器Purnp中的次级流动的趋势。在泵中间平面中的逆时针方向(正流涡度)和泵出口平面中的顺时针方向(负流动涡度)沿逆时针方向(正流涡度)循环的转矩转换器泵中的预测二次流动。这些趋势同意了实验观察。雷诺数和修改的Rossby数量都被视为对流动涡度产生重大影响,因此在二次流速速度的大小上具有显着影响。泵中平面逆时针二次流动循环主要由压力 - 吸入侧喷射/唤醒非均匀流(和相关的正常涡度分量)的相互作用引起的高径向/轴向流量转动角度通过刀片通道的流动接受。类似地,泵出口平面顺时针次级流动循环是由芯到壳侧射流/唤醒不均匀的流动(以及相关的二项式涡度组分)绕固定中心线(泵轴)旋转。因此,对产生循环二次流动负责的泵流动涡度与泵射流/尾页现象直接相关。

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