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Multifunctional offshore wind power structure

An offshore wind power and multi-functional technology, applied in wind power generation, wind motor combination, energy industry, etc., can solve the problems of low resource collection efficiency, low utilization, poor overall structure matching, etc., and achieve a compact and reasonable overall structure , easy storage, novel structure effect

Pending Publication Date: 2021-07-20
FOSHAN DIANJIAN ELECTRICAL EQUIP CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented technology allows for efficient use of both oceanic water (brine), breathable air from deep underground environments or other sources like salts/sea waters, while also making up space on top by converting excessive loads caused during offshore drilling operations into useful materials such as oil sands. Overall this innovation improves efficiency over traditional ways of collecting renewables and optimizing their usage across different seasons.

Problems solved by technology

This patents describes how different types of resources are used for producing electrical energy during periods when there's no or very little sunlight on land compared to other areas where they may also receive solar radiation. These differences affect both temperature and pressure levels at certain locations along their length. To address this issue, an improved design called a hydropneumatic system (HydroP) was developed. It uses compressed air instead of water to control the flow of fluid through pipes. Hydraulic systems were designed specifically for marine environments due to its ability to absorb shock waves caused by wave action without losing any useful work done by older designs like turbines. Overall, these technical improvements aimed towards more efficient usage of space while maintaining stability over time.

Method used

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  • Multifunctional offshore wind power structure
  • Multifunctional offshore wind power structure
  • Multifunctional offshore wind power structure

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Embodiment Construction

[0024] Embodiments of the present invention will be described below in conjunction with the accompanying drawings and related examples. In the following embodiments, and the present invention relates to relevant necessary components in the technical field, they should be regarded as known technologies in the technical field, which are known and mastered by those skilled in the technical field.

[0025] combine Figure 1 to Figure 4 As shown, the multi-functional offshore wind power structure includes a pile body 1 whose bottom is arranged below the seabed, and a wind turbine 2 arranged at the top of the pile body 1. The bottom of the pile body 1 is provided with a bottom that communicates with seawater. The water inlet valve body 3, the other end of the water inlet valve body 3 is sequentially connected with a seawater cyclone 4, a high pressure pump 5 and a pressure holding tank 6, and the pressure holding tank 6 is connected with a reverse osmosis device 7, and the reverse o...

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PUM

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Abstract

The invention relates to a multifunctional offshore wind power structure which comprises a pile body with the bottom arranged below a seabed surface, and seawater filtering and separating structures such as a wind turbine generator set arranged at the top end of the pile body. A folding type high-pressure nozzle is arranged on the outer wall of the pile body; a salt basking pond is arranged below the folding type high-pressure nozzle; a transparent water collecting cover body covers the outer part of the salt basking pond; and power umbrella drive skeletons are arranged in the centers of the salt basking pond and the transparent water collecting cover body. The multifunctional offshore wind power structure provided by the invention is compact and reasonable in overall structure; wind power generation, oxygen/hydrogen production, salt production and seawater desalination are organically integrated, so that collected resources are more diversified, and the most prominent load effectiveness problem in the wind power equipment is effectively solved; meanwhile, the structures of salt basking and seawater desalination are novel, so that the two resource extraction modes are optimized; and storage is easy, so that the possibility that the equipment structure is damaged is reduced.

Description

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Claims

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Application Information

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Owner FOSHAN DIANJIAN ELECTRICAL EQUIP CO LTD
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