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煤泥管道输送压力超调试验与数值模拟研究

刘建 李昌杰 刘铭铭 徐东 郑伟雄

流体机械2026,Vol.54Issue(2):109-118,10.
流体机械2026,Vol.54Issue(2):109-118,10.DOI:10.3969/j.issn.1005-0329.2026.02.012

煤泥管道输送压力超调试验与数值模拟研究

Experimental and numerical study on pressure overshoot in coal slurry pipeline transportation

刘建 1李昌杰 1刘铭铭 1徐东 1郑伟雄2

作者信息

  • 1. 兖煤菏泽能化有限公司 赵楼煤矿,山东 菏泽 274700
  • 2. 中国矿业大学(北京)机械与电气工程学院,北京 100083
  • 折叠

摘要

Abstract

To address the issue of pressure overshoot during the reversing process of piston pumps,experimental tests and numerical simulations were conducted using coal slurry with a solid concentration of 68.5%as a case study.Cyclic pumping experiments were carried out under two pressure conditions,and the results were compared with numerical predictions.The study revealed that as the distance from the pipeline inlet increases,the rate of decrease in pressure overshoot accelerates,while the overshoot ratio gradually rises.For instance,at a steady-state transport pressure of 5.17 MPa,the experimental overshoot ratio increased from 11.9%at the inlet to 15.23%near the outlet.Near the pipeline inlet,both maximum velocity and steady-state velocity demonstrate minimal changes with distance,but beyond a certain point,the maximum velocity incrementally rises.Furthermore,the velocity overshoot at measurement point 11#under the two conditions is 66.9 mm/s and 17.3 mm/s,with overshoot ratios of 1.53%and 0.43%,respectively.The variation in overshoot magnitude was more pronounced than that of the velocity itself,with the transport velocity differing by 9.5%,while the overshoot ratio differed by as much as 255%.The findings provide valuable insights for optimizing the pumping strategy and the design of coal slurry pipeline systems.

关键词

煤泥/活塞泵/管道输送/压力超调/非牛顿流体

Key words

coal slurry/piston pump/pipeline transportation/pressure overshoot/non-newtonian fluid

分类

机械制造

引用本文复制引用

刘建,李昌杰,刘铭铭,徐东,郑伟雄..煤泥管道输送压力超调试验与数值模拟研究[J].流体机械,2026,54(2):109-118,10.

基金项目

国家自然科学基金项目(52104399) (52104399)

河北省自然科学基金生态智慧矿山联合基金项目(E2022402102) (E2022402102)

兖矿能源集团科技计划项目(MY2021B53-R55) (MY2021B53-R55)

流体机械

1005-0329

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