首页> 外文会议>FPNI PH.D symposium on fluid power >A THREE-DIMENSIONAL CFD METHODOLOGY TO STUDY VANE-RING AND VANE-UNDER-VANE INTERACTIONS OF A VANE PUMP POWER SPLIT TRANSMISSION
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A THREE-DIMENSIONAL CFD METHODOLOGY TO STUDY VANE-RING AND VANE-UNDER-VANE INTERACTIONS OF A VANE PUMP POWER SPLIT TRANSMISSION

机译:三维CFD方法研究叶片泵动力分配传输中的叶片环和叶片-叶片-叶片之间的相互作用

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This paper presents a study of a novel vane pump power split transmission (VPPST). The transmission incorporates a new component, the Vane Power Split Unit (VPSU). The VPSU is a double-acting vane pump with a floating ring where the input shaft is connected to the engine and the floating ring is connected to the output shaft. The VPSU generates hydraulic oil flow at a rate proportional to the difference in angular velocities between the input and output shafts. This flow enters a hydraulic motor mounted to the output shaft. The vane pump power split transmission (VPPST) is a combination of the double-acting vane pump (VPSU) and the hydraulic motor directly connected to the pump. A CFD model of the VPSU has been created to better understand its performance. The model uses the three-dimensional CFD commercial code PumpLinx®, developed by Simerics® Inc. Thanks to collaboration with the code developers, the model is able to predict the complex fluid dynamics in the pockets in the rotor into which the vanes retract. These pockets are referred to as under-vane volumes. The rotor of the vane pump, in fact, has several internal channels that connect the pumping chambers between the vanes to the under-vane volumes. The combination of the vanes and the internal ducts and volumes of the under-vanes have been modelled as dynamic "valves" that rotate with the rotor. In this way the radial movements of the vanes are computed as a part of the simulation, based on the pressures due to the compression of the volumes on the inner diameter side of the vanes. The study is a result of collaboration between the University of Minnesota and the University of Naples "Federico II" research groups and the code developers of Simerics® Inc. The universities and Simerics® Inc. have all been involved in this project, working in close cooperation for the model building and simulations.
机译:本文介绍了一种新型叶片泵功率分配变速器(VPPST)的研究。变速箱包含一个新组件,叶片功率分配单元(VPSU)。 VPSU是带浮动环的双作用叶片泵,其中输入轴连接至发动机,而浮动环连接至输出轴。 VPSU产生的液压油流量与输入轴和输出轴之间的角速度之差成比例。该流进入安装在输出轴上的液压马达。叶片泵动力分配变速器(VPPST)是双作用叶片泵(VPSU)和直接连接到泵的液压马达的组合。已创建VPSU的CFD模型以更好地了解其性能。该模型使用由Simerics®Inc.开发的三维CFD商业代码PumpLinx®。由于与代码开发者的合作,该模型能够预测叶片缩回其中的转子腔中的复杂流体动力学。这些袋被称为叶片下容积。实际上,叶片泵的转子具有多个内部通道,这些内部通道将叶片之间的泵送腔室连接至叶片下容积。叶片和内部管道的组合以及叶片下部的体积已建模为随转子旋转的动态“阀门”。以此方式,基于由于叶片内径侧上的体积的压缩所产生的压力,计算叶片的径向运动作为模拟的一部分。该研究是明尼苏达大学和那不勒斯大学“ Federico II”研究小组与Simerics®Inc的代码开发人员之间合作的结果。这些大学和Simerics®Inc.均已参与该项目,并紧密合作。合作进行模型构建和仿真。

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