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Arch dam flood-discharge energy-dissipating structure

An energy dissipation and arch dam technology, which is applied in water conservancy projects, sea area engineering, coastline protection, etc., can solve the problems of flood discharge atomization and heavy water fog, and achieve the effect of reducing the intensity of flood discharge atomization

Active Publication Date: 2010-09-01
CHINA HYDROELECTRIC ENGINEERING CONSULTING GROUP CHENGDU RESEARCH HYDROELECTRIC INVESTIGATION DESIGN AND INSTITUTE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But at the same time, due to the air collision of the upper and lower hole water strands, a large amount of water mist is generated, resulting in serious flood discharge atomization.

Method used

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  • Arch dam flood-discharge energy-dissipating structure
  • Arch dam flood-discharge energy-dissipating structure
  • Arch dam flood-discharge energy-dissipating structure

Examples

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Embodiment

[0016] Now take a large arch dam project as an example to illustrate the application of this flood discharge and energy dissipation method:

[0017] The valley at the site of a large arch dam is narrow, with steep bank slopes on both sides. It is a typical deep-cut V-shaped valley, and the water surface width is only 80m-100m in dry season. The designed (checked) discharge volume of the hub is 12297m 3 / s(13897m 3 / s), the maximum flood discharge head is 221.7m, and the flood discharge power is as high as 33456MW. It has the characteristics of "narrow valley, high water head, and large flow". Flood discharge and energy dissipation are one of the important technical issues of the project. In addition, due to the high and steep topography of the slope on the left bank downstream of the arch dam, the broken rock mass and strong unloading, the stability of the slope is not high. During the operation period of the power station, the degree of flood discharge atomization of the dam...

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Abstract

The invention discloses a flood-discharging and energy-dissipating structure for the high concrete arch dam in the gorge area, which can effectively decrease the discharging atomization in the flood discharge and can meet the requirement of draining the large water flow through the dam body in the gorge area. The arch dam flood-discharging and energy-dissipating structure is provided with an upper opening and a lower opening at the dam body, an afterbay dam is arranged at the downstream of the large dam to form a plunge pool, the upper opening adopts narrow slot falling type to drain, the water flow from the upper opening and the lower opening does not collide in the air. Through the reasonable arrangement of the position, type and the discharge angle of the upper opening and the lower opening, the drained water flow of the whole dam body is fully diffused, the water flow is considerably aerified in the air, the energy per unit area shot into the downstream plunge pool is decreased, which meets the flood-discharging and energy-dissipating requirement of the dam. At the same time, the water flow from the upper opening and the lower opening does not collide in the air, which considerably decreases the atomization intensity in the flood discharge. The invention can be widely generalized and used in the power station that has high head drop, large flow and is at the deep gorge.

Description

technical field [0001] The invention relates to a flood discharge and energy dissipation structure in a water conservancy and hydropower project, in particular to a flood discharge and energy dissipation structure for a high concrete arch dam in a canyon area. Background technique [0002] At present, in order to meet the requirements of large flow discharge through the dam body in the canyon area, the high concrete arch dam usually adopts the flood discharge energy dissipation structure of the dam body "water tongue collision and pad pond energy dissipation type". The main energy dissipation principle is: Two dams are set up downstream of the dam to form a cushion pond. By rationally arranging the orifices of each layer of the dam body, the discharged water flow is layered and differentially flowed. Increase the dispersion of the incoming water jets and reduce the scouring and damaging ability of the discharged water to the bottom of the river bed; the openings of the dam b...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E02B8/06
Inventor 周钟饶红玲曾勇唐忠敏唐虎张剑
Owner CHINA HYDROELECTRIC ENGINEERING CONSULTING GROUP CHENGDU RESEARCH HYDROELECTRIC INVESTIGATION DESIGN AND INSTITUTE
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