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高速轴配流中旋转径向小孔流量系数的实验研究

朱碧海 董博

液压与气动2024,Vol.48Issue(6):44-55,12.
液压与气动2024,Vol.48Issue(6):44-55,12.DOI:10.11832/j.issn.1000-4858.2024.06.006

高速轴配流中旋转径向小孔流量系数的实验研究

Experimental Study on Flow Coefficient of the Rotating Radial Small Orifice Used in High Speed Shaft-type Commutation

朱碧海 1董博1

作者信息

  • 1. 华中科技大学 机械学院液压与气动技术研究中心,湖北 武汉 430074
  • 折叠

摘要

Abstract

In view of the rotating working condition of radial small orifices used in shaft-type commutation of high speed axial piston pump,the experimental study on flow coefficients of flow passing through small orifices was conducted.The two flow directions involved in this study,namely,the flow from the axis-center of the rotating cylinder block outward through the orifice is positive flow,and vice versa is reverse flow.The results show that the centrifugal force and Coriolis force have significant effects on the flow in rotating small orifice,the centrifugal force exerted on the fluid has the effect of giving energy to the fluid in the positive flow,and the flow coefficients increase with the increase of rotating speed.In reverse flow,the centrifugal force exerted on the fluid in small orifice holds the flow,and the flow coefficients decrease with the increase of rotating speed.With the increase of the average discharge velocity in orifices,the overall effect of the Coriolis forces in both directions is to makes the flow coefficient of positive flow decrease,on the contrary,the flow coefficient of reverse flow increase.When the discharge Reynolds number is large enough,regardless of forward or reverse flow,the flow coefficients of different orifices types have respectively the stable value.The stable values of the flow coefficient of various orifices in positive flow are within the range of 0.65~0.80.

关键词

旋转径向小孔出流/轴配流/流量系数/旋转雷诺数/出流雷诺数

Key words

rotating radial small orifices/shaft type commutation/flow coefficient/rotational Reynolds number/discharge Reynolds number

分类

机械制造

引用本文复制引用

朱碧海,董博..高速轴配流中旋转径向小孔流量系数的实验研究[J].液压与气动,2024,48(6):44-55,12.

基金项目

国家自然科学基金(51975225) (51975225)

液压与气动

OA北大核心CSTPCD

1000-4858

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