Design and Application of Operating Curve of Factor Extended Gate Control
A kind of curve design and gate technology, which is applied in the field of element expansion gate control application curve design, which can solve the problem of inability to express the discharge flow of the flood gate.
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Embodiment 1
[0126] Application Curve of Extended Gate Control of Overflow Surface Orifice Elements in Pingban Hydropower Station
[0127] [Design conditions]
[0128] The Hongshuihe Pingban Hydropower Station is a riverbed-type power station mainly for power generation. It has installed 3 hydro-generator sets. The overflow dam has 5 overflow surface holes, each hole has a clear width of 17m, and the gate retaining height is 17.3m. The weir type is WES type, and the weir height above the bottom of the bucket is 24.7m. Flood discharge depends entirely on 5 overflow surface holes, when the incoming water flow Q>9164m 3 / s, open the gate to release the flood. The downstream water level does not affect the outflow from the sluice hole. The surface hole adopts the combined energy dissipation device of the top drop-flow type wide tail pier and the bucket type stilling basin. The hydraulic model test provides: the free flow discharge capacity curve of the gate hole; Relational curve; it is re...
Embodiment 2
[0144] The operation curve of the extended gate control of the elements of the discharge sluice of the Letan Hydropower Station
[0145] [Design conditions]
[0146] Hongshui River Letan Hydropower Station Project is a water conservancy and hydropower project that mainly generates power, and also has comprehensive utilization benefits such as shipping and irrigation. The power station is a river bed type, with 4 sets of generator hydro-generator units with a single unit capacity of 150MW installed; the overflow dam is equipped with 8 overflow surface holes, each hole has a clear width of 15m, and the water retaining height of the gate is 16m. The overflow weir type is WES type, and the gate pier is a conventional straight and equal thickness type. The energy dissipator adopts the stilling basin of the bucket type to dissipate energy. The elevation of the bottom and ridge of the basin is designed to be high and low according to the change of the terrain: the riverbed has 4 hol...
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