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抽水蓄能电站下库长系列年泥沙淤积特性研究

孙羽 李向阳 孙东坡 张晓雷 植凤娟

长江科学院院报2018,Vol.35Issue(1):5-10,15,7.
长江科学院院报2018,Vol.35Issue(1):5-10,15,7.DOI:10.11988/ckyyb.20170074

抽水蓄能电站下库长系列年泥沙淤积特性研究

Numerical Simulation on Long Series Sedimentation in Downstream Reservoir of a Pumped Storage Power Station

孙羽 1李向阳 2孙东坡 1张晓雷 1植凤娟3

作者信息

  • 1. 华北水利水电大学水利学院,郑州450046
  • 2. 黄河水利委员会水文局,郑州450004
  • 3. 凯里学院建工学院,贵州凯里556011
  • 折叠

摘要

Abstract

In order to understand the impact of a long series water and sediment process on the adjustment of reservoir bed,we simulated the scouring and deposition and deformation in the downstream reservoir of Tianchi pumped storage power station using MIKE based on water level fluctuation in the downstream reservoir.Through calibration of parameters and model validation,we obtained the long series total deposition amount and sediment delivery ratio of the reservoir as well as the deposition profile along stream and deposition process of characteristic reaches.Results suggest that the sedimentation of reservoir corresponds with the water and sediment process.Sedimentation mainly displays a delta shape,focusing in the range of 0.5-1.8 km upstream the dam.Affected by hydraulic and boundary condition,the deposition features and deposit compositions of different reaches vary correspondingly.Floods of certain frequency has a significant influence on deposition amount despite that flood does not occupy much of the flowsediment series.Flood dispatching and operation of power station must be adjusted and optimized to enhance sediment delivery ratio and reduce sedimentation.The research results are in agreement with those from scale model test,hence could offer technical parameters for the reservoir dispatching operation.

关键词

抽水蓄能电站/下水库/长系列年/数值模拟/泥沙淤积/排沙比/淤积重心

Key words

pumped storage power station/downstream reservoir/long series/numerical simulation/deposition/sediment delivery ratio/focus of deposition

分类

建筑与水利

引用本文复制引用

孙羽,李向阳,孙东坡,张晓雷,植凤娟..抽水蓄能电站下库长系列年泥沙淤积特性研究[J].长江科学院院报,2018,35(1):5-10,15,7.

基金项目

国家自然科学基金重点项目(51579013) (51579013)

水利部公益性科研专项(201201074) (201201074)

长江科学院院报

OA北大核心CSCDCSTPCD

1001-5485

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