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水电站库区翻坝能源-物流耦合调度优化

贾清茹 刘皓明 普月 王健

电力需求侧管理2026,Vol.28Issue(3):7-13,7.
电力需求侧管理2026,Vol.28Issue(3):7-13,7.DOI:10.3969/j.issn.1009-1831.2026.03.002

水电站库区翻坝能源-物流耦合调度优化

Energy-logistics coupled scheduling optimization for cross-dam in hydropower reservoir areas

贾清茹 1刘皓明 1普月 1王健1

作者信息

  • 1. 河海大学 电气与动力工程学院,南京 211100
  • 折叠

摘要

Abstract

To address the high transportation costs and severe carbon emissions caused by dam blockages at hydropower stations,a cross-dam energy-logistics coupled dispatching optimization method that integrates electricity-hydrogen-oil multi-energy complementarity is pro-posed.According to the flow diversion characteristics of cross-dam cargo between waterway and land routes,the operational characteristics of cross-dam logistics covering heterogeneous heavy-duty trucks and waterway handling facilities are analyzed,and energy consumption models for transportation equipment are established.Based on the operational power characteristics of facilities such as integrated hydrogen production-charging-storage stations,energy facility production models are constructed.Combined with the characterization of energy sup-ply-demand coupling mechanisms,a cross-dam energy-logistics coupled dispatching optimization model is established.With the objective of minimizing operational costs while considering carbon emissions and load response capability,coupled optimization is performed on cross-dam energy and logistics systems to obtain cargo flow distribution and dispatching strategies for transportation and energy equipment.Taking a 6 400 MW hydropower station in Southwest China as a case study,simulation results demonstrate that the proposed method can ef-fectively reduce cross-dam operational costs and carbon emissions.

关键词

水电站/翻坝物流/能源-物流耦合/耦合优化/节能减排

Key words

hydropower station/cross-dam logistics/energy-logistics coupling/coupled optimization/energy saving and emission reduction

分类

交通工程

引用本文复制引用

贾清茹,刘皓明,普月,王健..水电站库区翻坝能源-物流耦合调度优化[J].电力需求侧管理,2026,28(3):7-13,7.

基金项目

国家自然科学基金资助项目(52207091) (52207091)

电力需求侧管理

1009-1831

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