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Numerical and experimental study of cavitation performance in sea water hydraulic axial piston pump

机译:海水液压轴向柱塞泵空化性能的数值与实验研究。

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摘要

Cavitation is one of the important elements influencing the performance of sea water hydraulic axial piston pump. To understand the working performance of sea water hydraulic axial piston pump under cavitation effects, a fully dynamic numerical model was developed in this article, which has taken into account the fluid compressibility effect, dynamic processes of gaseous, vaporous, pseudo-cavitation and cavitation damage, and the simulation was conducted through a three-dimensional computational fluid dynamics code PumpLinx. The cavitation characteristics of the pump were presented with a set of working conditions, as well as the cavitation damage power, dynamic gas volume fraction and vapor volume fraction inside the intake, piston and port plate chamber. A test rig was developed to validate the computational fluid dynamics simulations for the case of sea water hydraulic axial piston pump. Comparisons between the measured and simulated instantaneous discharge pressure, average flow as well as the vibration characteristics under different extents of cavitation by varying the inlet pressure and rotational speed of the pump were presented.
机译:空化是影响海水液压轴向柱塞泵性能的重要因素之一。为了解海水液压轴向柱塞泵在气蚀作用下的工作性能,建立了一个全动态数值模型,该模型考虑了流体的压缩效应,气态,气态,假气蚀和气蚀破坏的动态过程。 ,并通过三维计算流体动力学代码PumpLinx进行了仿真。介绍了泵的气蚀特性以及一组工作条件,以及进气,活塞和孔板腔室内的气蚀破坏力,动态气体体积分数和蒸汽体积分数。开发了一个试验台,以验证海水液压轴向柱塞泵情况下的计算流体动力学模拟。通过改变泵的进口压力和转速,比较了实测瞬时出口压力,平均流量以及在不同气蚀程度下的振动特性。

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