Energy-dissipating structure and energy-dissipating method at the front end of a modified stilling pool
A stilling pool and pressure sensor technology, applied in marine engineering, construction, barrage/weir, etc., can solve the problems of high pressure and low energy dissipation efficiency of the stilling pool, reduce various pressures, and improve the phenomenon of atomization. , the effect of obvious energy dissipation effect
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Embodiment 1
[0038] Embodiment 1: as figure 1 , 7 , 8, and 9, a modified form of stilling pool front end energy dissipation structure, including WES curve section 1, WES straight line section 2, WES reverse arc section 3, stilling pool front end 4, stilling pool rear end 5, pressure Sensor, controller, auxiliary hydraulic jacking device, main hydraulic jacking device, WES curve section 1 is connected to WES straight section 2, WES straight section 2 is connected to WES anti-arc section 3, the tail of WES anti-arc section 3 is connected to the force-reducing The front end 4 of the stilling pool is connected, and the front end 4 of the stilling pool is connected to the rear end 5 of the stilling pool. The front end 4 of the stilling pool is evenly divided into several blocks 6, and each block 6 is equipped with an auxiliary hydraulic jacking device, the auxiliary hydraulic jacking device includes an auxiliary hydraulic cylinder 7-5, an auxiliary lifting column 7-6, the auxiliary hydraulic c...
Embodiment 2
[0047] Embodiment 2: as figure 2 As shown, the structure of this embodiment is the same as that of Embodiment 1, the difference is that the first row of blocks 6 at the front end 4 of the stilling pool all descends as a whole, and the descending height is the same and the largest, and every subsequent row descends, and the descending height Although it is consistent but gradually decreases, a drop sill with a certain height difference can be formed between the WES anti-arc section 3 and the front end 4 of the stilling pool, and the front end 4 of the stilling pool can be formed as a whole to form a bottom slope of the stilling pool i>0 This form can increase the concentration of aeration in the process of underflow energy dissipation, and strengthen the tumbling of the water flow at the connection, so as to achieve the purpose of energy dissipation.
Embodiment 3
[0048] Embodiment 3: as image 3 As shown, the structure of this embodiment is the same as that of Embodiment 1, the difference is that the relative height H of the first row of blocks 6 at the front end 4 of the stilling pool does not change, and the overall height H of each row of blocks 6 afterward All descend, the relative height H of the same row of blocks is equal, and the height of the blocks 6 of different rows gradually increases as they go further, so that the front end 4 of the stilling pool can form a bottom slope of the stilling pool as a whole i< 0, so that the discharged water can continuously fall at the front end 4 of the stilling basin, and more sufficient collision and mixing can be carried out at the position between the front end 4 of the stilling basin and the rear end 5 of the stilling basin It is more conducive to the energy dissipation of the water flow in the stilling pool.
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