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基于Python的水泵稳定工况点优化求解方法研究

王辛羽 成一雄 晋华

人民黄河2024,Vol.46Issue(10):133-137,5.
人民黄河2024,Vol.46Issue(10):133-137,5.DOI:10.3969/j.issn.1000-1379.2024.10.023

基于Python的水泵稳定工况点优化求解方法研究

Research on Optimization Method for Stable Operating Point of Water Pump Based on Python

王辛羽 1成一雄 2晋华1

作者信息

  • 1. 太原理工大学 水利科学与工程学院,山西 太原 030024
  • 2. 太原理工大学 土木工程学院,山西 太原 030024
  • 折叠

摘要

Abstract

The determination of stable operating points for water pumps is crucial for improving the operational performance and efficiency of water supply pumping stations.Based on Python programming language,a software was developed to calculate the stable working condition point of the pump,and the mathematical model of the stable working condition point of the pump was optimized by fully considering the head loss of the pipeline in the inlet and outlet sections of the pump.According to the known hydraulic parameters of the water supply pump sta-tion,the pipeline head loss parameters and pump characteristic curve parameters of different pipe sections were calculated,the pipeline char-acteristic curve,the pump characteristic curve and the flow-efficiency curve were drawn,and the pump stable working conditions of different terrain heads were quickly determined.Taking the Yinye to Chang Water Supply Project as an example,the practical application of the soft-ware was carried out.The application situation shows that when the KQSN350-M6 pump is located at the topographic lift of 52.6 m,the maxi-mum working lift is 81.53 m,but it still does not meet the requirements of the design lift of 83.00 m.When the reselected SD250-600A pump is located at the topographic lift of 52.6 m,the maximum working lift is 83.96 m,which meets the design lift requirements.

关键词

水泵/稳定工况点/Python/水头损失/引冶入昌供水工程

Key words

water pump/stable operating point/Python/hydraulic loss/Yinye to Chang Water Supply Project

分类

建筑与水利

引用本文复制引用

王辛羽,成一雄,晋华..基于Python的水泵稳定工况点优化求解方法研究[J].人民黄河,2024,46(10):133-137,5.

基金项目

2022年度山西省高等学校科技创新计划项目(2022L033) (2022L033)

2023年度山西省研究生教育教学管理改革项目(2023JG031) (2023JG031)

人民黄河

OA北大核心CSTPCD

1000-1379

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