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跌坎型底流消能工跌坎深度在工程优化设计中的应用

杨宇 张家明 陈维亮

南水北调与水利科技2017,Vol.15Issue(5):170-175,6.
南水北调与水利科技2017,Vol.15Issue(5):170-175,6.DOI:10.13476/j.cnki.nsbdqk.2017.05.026

跌坎型底流消能工跌坎深度在工程优化设计中的应用

Application of falling-sill depth of the falling-sill bottom-flow energy dissipator in engineering optimization design

杨宇 1张家明 2陈维亮2

作者信息

  • 1. 昆明理工大学 电力工程学院,昆明 650000
  • 2. 楚雄欣源水利电力勘察设计有限责任公司,云南 楚雄 675000
  • 折叠

摘要

Abstract

This paper took the bottom-flow energy dissipator of a diversion spillway tunnel of a project as the object of study.In the original test scheme,when the gate was half open,the discharged flow was off the bottom of the discharge chute,which was not conducive to dissipating the energy of the discharged flow.In this study,we altered the slope of the floor in the pressing slope section,and reduced the two slope sections of the discharge chute into one slope section.In the original scheme,there were repelled hydraulic jumps in the stilling pool,resulting in poor energy dissipation.To tackle this problem,we adopted a calculation formula of the minimum falling-sill depth that was aimed at controlling the maximum underflow speed,and determined the elevation of the floor of the stilling pool.After two optimization experiments,we eliminated the phenomenon in which the flow out of the gate was off the bottom of the discharge chute.The discharged flow was in a steady regime.There were stable submerged jumps to dissipate the energy in the stilling pool.The water flow out of the stilling pool connected well with the downstream flow.The underflow speed and time-averaged dynamic water pressure in the stilling pool were significantly reduced.The dissipation effect was good.

关键词

跌坎型底流消能工/跌坎深度/临底流速/消能效果/水力学试验

Key words

falling-sill bottom-flow energy dissipator/falling-sill depth/underflow speed/energy dissipation effect/hydraulic test

分类

水利科学

引用本文复制引用

杨宇,张家明,陈维亮..跌坎型底流消能工跌坎深度在工程优化设计中的应用[J].南水北调与水利科技,2017,15(5):170-175,6.

基金项目

国家自然科学基金(51169008)National Natural Science Fomndation of China(51169008) (51169008)

南水北调与水利科技

OA北大核心CSCDCSTPCD

2096-8086

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