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面向运行全过程的水电站技术供水系统优化模型研究

陈铁 李挺 汪长林 李咸善

水利水电技术2017,Vol.48Issue(2):83-88,137,7.
水利水电技术2017,Vol.48Issue(2):83-88,137,7.DOI:10.13928/j.cnki.wrahe.2017.02.015

面向运行全过程的水电站技术供水系统优化模型研究

Study on full operation process-oriented optimal model for technical water supply system of hydropower station

陈铁 1李挺 1汪长林 1李咸善1

作者信息

  • 1. 三峡大学梯级水电站运行与控制湖北省重点实验室,湖北宜昌 443002
  • 折叠

摘要

Abstract

In accordance with the status quo of that the integrated model include normal operation process and the fault chain process of the technical water supply system for hydropower station cannot be realized at present,a full operation process-oriented practical simulation model for the technical water supply system for hydropower station is put forward herein.At first,the control process and the dynamic process are decoupled and optimized for establishing the basic equipment model to reflect the normal operation mode.Moreover,the fault behavior is incorporated into the normal operation behavior with the logical similarity between the fault chain mode and the normal operation mode to realize the integrated modeling of both the normal condition and the fault condition.Finally,the system model is built up with the equipment model to realize the simulation of the full process of the water supply system.The model has the merits of clear physical concepts,concise calculation and strong commonality,thus is not only applied to the simulation training systems of several hydropower stations,but also popularized to the whole auxiliary system concerned.The study result provides a reference for the optimal design of the technical water supply system of hydropower station.

关键词

水电站/供水系统/全过程仿真/系统优化/一体化模型

Key words

hydropower station/water supply system/full process simulation/system optimization/integrated model

分类

建筑与水利

引用本文复制引用

陈铁,李挺,汪长林,李咸善..面向运行全过程的水电站技术供水系统优化模型研究[J].水利水电技术,2017,48(2):83-88,137,7.

基金项目

虚拟水电仿真培训服务平台(湖北省科技支撑计划2015BAA106) (湖北省科技支撑计划2015BAA106)

面向设备的水电站辅助设备仿真研究(宜昌市自然科学研究与应用项目A15302a11) (宜昌市自然科学研究与应用项目A15302a11)

水利水电技术

OA北大核心CSCDCSTPCD

1000-0860

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