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Novel energy dissipating structure of hydraulic and hydropower engineering

A water conservancy, hydropower and engineering technology, applied in water conservancy engineering, marine engineering, coastline protection, etc., can solve the problems of local scouring at the downstream landing point, increase the instability of flow state, fail to achieve the effect of energy dissipation, and achieve energy dissipation. Improved effect, easy to mix with air and friction, good energy dissipation effect

Inactive Publication Date: 2017-08-29
XIHUA UNIV
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are still huge defects in this structure. Because the water flow is relatively concentrated during the falling process, it often causes serious local erosion to the downstream landing point.
At the same time, when the discharge flow rate is large and the flow rate is fast, the high-speed water flow hits the landing point, causing the riverbed to sink severely at the landing point, w

Method used

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  • Novel energy dissipating structure of hydraulic and hydropower engineering
  • Novel energy dissipating structure of hydraulic and hydropower engineering
  • Novel energy dissipating structure of hydraulic and hydropower engineering

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Embodiment Construction

[0032] combine Figure 1-7 A new type of energy dissipation structure for water conservancy and hydropower projects is shown, including a discharge outlet 2 arranged on the upper part of the dam 1, a first discharge channel 3 arranged on the surface of the downstream side of the dam 1, and a first discharge channel 3 arranged on the surface of the dam 1 The second drain channel 4 inside the main body. The discharge outlet 2 can be either an overflow sill arranged on the top of the dam 1, or a flood discharge channel provided with a gate valve, or other structures with the same effect. Such as figure 1 As shown, the left side of the dam 1 is the upstream side, and the right side is the downstream side. The first discharge channel 3 is located on the right side of the dam 1, and the second discharge channel 4 is located inside the dam 1. In the dam 1 The construction phase is integrally constructed with the main body of the dam 1 .

[0033] Both the first discharge channel 3 ...

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Abstract

The invention relates to the technical field of hydraulic and hydropower engineering and aims to provide a novel energy dissipating structure of the hydraulic and hydropower engineering, which has a good energy dissipating effect. According to the adopted technical scheme, the novel energy dissipating structure of the hydraulic and hydropower engineering comprises a discharging hole formed in the upper part of a dam, a first discharging channel arranged in the surface of the downstream side of the dam and a second discharging channel arranged in a main body of the dam, wherein the upper end of the first discharging channel is communicated with the tail end of the discharging hole; a water dividing hole is formed in the bottom of the discharging hole and located in the front of a place where the first discharging channel and the discharging hole are connected; the upper end of the second discharging channel is communicated with the water dividing hole; a flow adjusting valve is arranged at the water dividing hole; a water outlet of the second discharging channel is located below a water outlet of the first discharging channel; and water flows respectively discharged by the first discharging channel and the second discharging channel collide with each other to realize energy dissipating. The structure provided by the invention has an excellent energy dissipating effect.

Description

technical field [0001] The invention relates to the technical field of water conservancy and hydropower engineering, in particular to a novel energy dissipation structure for water conservancy and hydropower engineering. Background technique [0002] At present, with the gradual development of hydropower resources in mountainous rivers in my country, the development of hydropower engineering construction in China has entered a climax stage, especially in the western mountainous areas where a large number of small and medium hydropower stations have been built. The water flow in natural rivers is generally a slow flow, and the single-width flow distribution along the river width is relatively uniform. However, when drainage structures such as dams and sluices are built in the river, the flow conditions of the river have undergone tremendous changes, and the flow velocity and energy of the discharged water are large, which has a great destructive effect on the riverbed downstr...

Claims

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Application Information

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IPC IPC(8): E02B8/06
CPCE02B8/06
Inventor 张焕敏王非孙井沛
Owner XIHUA UNIV
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