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Investigation of flow through curved constrictions for leakage flow modelling in hydraulic gear pumps

机译:液压齿轮泵泄漏流动曲线流动的研究

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The internal leakage flows in external gear and gerotor pumps are often represented by flow through curved constrictions. The nature of this flow can vary from laminar to turbulent and the flow can experience localized cavitation too. In the current literature, there is a scarcity of techniques for accurately modelling such curve-constricted flows which limits the accuracy of the current simulation tools for gear pumps. This paper presents a novel flow model for curve-constricted geometries that is applicable over a wide range of flow regimes including localized cavitation. Using a dimensionless form, the proposed model characterizes the constriction flow velocity as the function of the constriction shape, the pressure difference, and a properly defined cavitation indicator. The functional relationships between these dimensionless parameters are developed based on CFD simulations. The flow model is validated by the means of several experiments conducted on a custom test apparatus. The model presented in this paper can be incorporated in the lumped parameter simulation tools widely used for modelling gear pumps, improving their accuracy in predicting the internal leakages. Consequently, this model will also aid the development of novel energy efficient gear pump designs, where such leakages are kept to a minimum.
机译:外部齿轮和Gerotor泵中的内部泄漏流通常通过弯曲的收缩来表示。该流动的性质可以从层流中变化到湍流,并且流动也可以体验局部空化。在当前的文献中,缺乏用于精确建模这种曲线收缩流的技术,这限制了用于齿轮泵的电流模拟工具的精度。本文介绍了一种新颖的曲线收缩几何形状的流量模型,适用于包括局部空化的各种流动制度。使用无量纲形式,所提出的模型表征了作为收缩形状,压力差和适当限定的空化指示器的功能的收缩流速。基于CFD模拟开发了这些无量纲参数的功能关系。通过在定制测试装置上进行的几个实验的装置验证流程模型。本文提出的模型可以在广泛用于建模齿轮泵的集成参数仿真工具中,提高其准确性来预测内部泄漏。因此,该模型还将有助于开发新型节能齿轮泵设计,其中这种泄漏保持最小。

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