Gate pump hydrodynamic regulation and control method
A technology of pumping water and power, applied in the field of hydrodynamic control of sluice pumps, which can solve problems such as low intelligence, high energy consumption, and high operation and management costs, and achieve the effects of increasing self-purification capacity, improving water quality, and reducing costs
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Embodiment 1
[0031] like figure 1 As shown, a method for regulating the hydraulic power of a gate pump in this embodiment includes:
[0032] S1, use data acquisition equipment to collect river parameters, water quality parameters, flow and water level data, and transmit the collected data to the backend server. In step S1, RTK equipment is used to collect river parameters, and acoustic Doppler flow velocity profiler is used to measure flow velocity , using a water gauge to measure the water level; at the same time, the collected water quality parameters include water turbidity, transparency, nitrification rate, water temperature, pH value, trace harmful chemical element content, bacterial content and NH3-N, COD, BOD5 degradation rate, DO, Sediment oxygen consumption rate, nitrification rate and denitrification rate; among them, the channel parameters include river length, river width, river bottom elevation, section size and gate size;
[0033] S2, the background server receives the colle...
Embodiment 2
[0038] Compared with Embodiment 1, in this embodiment, in step S2, the water diversion flow and water diversion time are controlled by the water delivery control scheme, and the water diversion flow and water diversion time are used as inputs; wherein, the regulation target parameter indicators include water quality parameters, flow and water diversion time. water level, and water diversion time;
[0039] In step S3, the control target parameter index of the selected section is used as the output condition; the artificial neural network is used to learn and predict the effect of the water conveyance control plan to control the hydrodynamics and improve the water environment, and the artificial control behavior can be learned, which not only realizes the water conveyance plan It is more intelligent by learning the artificial regulation behavior; through the reasonable scheduling of the sluice station and pump station, while achieving the purpose of water diversion and regulating...
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