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For high cost, hard grid connection and low failure probability for large-scale offshore wind power, an innovate seawater desalination system is proposed. It directly couples offshore wind power with high energy-consuming seawater desalination to a new and full one. The system uses 100%off-shore wind power and adopts variable condition optimal control to maintain energy consumption per unit when fresh...
Oilfield enterprises are large power consumption users; 40% of the power is consumed by oil pumping machines, which are widely distributed in an oil field. In the areas with rich wind energy and solar energy, directly using distributed wind power and solar power as a source for the oil pumping machine is an effective approach for saving energy and emission reduction. In the proposed distributed wind...
An innovative seawater desalination system using non-grid-connected wind power is developed. The system makes full use of the cheap, clean, and renewable sources: non-grid-connection wind power. The system adopts the low-temperature, multi-stage, high-efficiency desalination technology to produce cheap fresh water. It includes five major parts: fixed-pitch variable-speed wind turbine, power converter...
A hydrogen production experimental system is developed to verify the theory of the non-grid-connected wind power. This experimental system analyzes the new type of wind turbine and its characteristics, the integrated control strategy, and the system feasibility and controllability so as to fully reveal the basic rules of non-grid-connected wind power system. These practices demonstrated the reasonable...
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