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A study on the suppression of cavitation flow inside an axial piston pump

机译:轴向柱塞泵内气蚀流的抑制研究

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Computational Fluid Dynamics (CFD) is employed in this paper to study the cavitation flow near a damping groove of a valve plate inside an axial piston pump. Effects of common U-shaped groove and V-shaped groove on the cavitation phenomenon are analyzed, and the process of cavitation bubbles from growth to collapse is studied numerically. It is shown that the cavitation can be effectively restrained to a certain extent by increasing the number of V-shaped grooves or the aspect ratio of the cross section of a U-shaped groove under the same flow area. The erosion caused by the cavitation can be effectively reduced leading to a substantial improvement of the reliability and lifespan of axial piston pumps.
机译:本文使用计算流体动力学(CFD)研究轴向柱塞泵内阀板阻尼槽附近的空化流。分析了常见的U形槽和V形槽对空化现象的影响,并数值研究了空化气泡从生长到坍塌的过程。结果表明,在相同的流动面积下,通过增加V形槽的数量或增加U形槽的横截面的纵横比,可以在一定程度上有效地抑制气蚀。可以有效地减少由气蚀引起的腐蚀,从而显着提高轴向柱塞泵的可靠性和使用寿命。

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