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双吸式离心泵叶片吸力面泥沙磨损破坏规律与形成机制研究

张映波 赵子龙 钱忠东

农业机械学报2024,Vol.55Issue(2):202-207,6.
农业机械学报2024,Vol.55Issue(2):202-207,6.DOI:10.6041/j.issn.1000-1298.2024.02.019

双吸式离心泵叶片吸力面泥沙磨损破坏规律与形成机制研究

Analysis of Sediment Erosion at Suction Side of Double Suction Centrifugal Pump Blade

张映波 1赵子龙 1钱忠东1

作者信息

  • 1. 武汉大学水资源工程与调度全国重点实验室,武汉 430072
  • 折叠

摘要

Abstract

Sediment erosion of centrifugal pump impeller is a major issue of pumping stations on the Yellow River.The sediment erosion at the outlet of the impeller blade suction side of a double-suction centrifugal pump was mainly analyzed by experiments and numerical simulation.In the experiment,the blade sediment erosion was visualized by using the multi-layer coating method and the near-wall flow pattern were observed by the tuft visualization method coupled with the endoscopic imaging technique respectively.The experimental results showed that there were two triangular severe erosion regions symmetrically distributed at the outlet of the suction side of the blade.In the same regions,the flow separation can also be observed clearly.Furthermore,the Euler-Lagrangian method was used to analyze the mechanism for the sediment erosion on the two triangular severe erosion regions.The inter-blade vortex in the pump impeller and the recirculation vortex at the blade outlet were considered responsible for the formation of severe erosion.The inlet-blade vortex can guide sediment particles to aggregate and hit the outlet of the blade suction side.In addition,the recirculation vortex near the outlet of the suction side of the blade made the particles hit the blade repeatedly.Their combined effects lead to severe sediment erosion on the outlet of the blade suction side.The research results can supply theoretical reference for anti-erosion design of centrifugal pump.

关键词

双吸式离心泵/叶片吸力面/泥沙磨损/流场观测/数值模拟

Key words

double suction centrifugal pump/suction side of the blade/sediment erosion/flow field observation/numerical simulation

分类

机械制造

引用本文复制引用

张映波,赵子龙,钱忠东..双吸式离心泵叶片吸力面泥沙磨损破坏规律与形成机制研究[J].农业机械学报,2024,55(2):202-207,6.

基金项目

国家自然科学基金项目(52279090) (52279090)

农业机械学报

OA北大核心CSTPCD

1000-1298

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