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Numerical modelling and analysis of external gear pumps by applying generalized control volumes

机译:应用广义控制量的外齿轮泵数值建模与分析

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摘要

Components in gear pumps usually involve complex geometrical arrangements in order to achieve the desired performance. The use of lumped parametric models is considered the most accurate and effective method for investigation of the associated design issues. In this study, the numerical modelling approach based on the lumped parameters and control volume concepts is reviewed, especially for gear teeth within the meshing zone. To apply the approach to the entire gear pump, control volume concepts are generalized to all gear pockets and flow orifices with some reasonable assumptions. The assumptions include instantaneous angular positions, orifice transitions and imagined control volumes with internal flows. The fluid dynamics and pump performance, which even have the measurement difficulties, can be estimated to investigate and optimize the design parameters of gears by the model. A simulation example and its experimental results of a gear machine are presented to validate the proposed approach in this article.
机译:齿轮泵中的组件通常涉及复杂的几何布置,以实现所需的性能。集总参数模型的使用被认为是研究相关设计问题的最准确和有效的方法。在这项研究中,对基于集总参数和控制体积概念的数值建模方法进行了回顾,特别是对于啮合区域内的齿轮齿。为了将这种方法应用于整个齿轮泵,在合理的假设下,控制量概念可以推广到所有齿轮腔和流量孔。这些假设包括瞬时角位置,节流孔过渡以及带有内部流量的想象控制量。甚至可以估算流体动力学和泵性能,甚至存在测量困难,从而可以通过模型研究和优化齿轮的设计参数。给出了齿轮机的仿真实例及其实验结果,以验证本文提出的方法。

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