System device for improving seawater power generation and aquaculture water by using sea wave impact force

By designing a system for enhancing seawater power generation and aquaculture water supply using the impact force of ocean waves, the problem of unutilized ocean wave energy has been solved, achieving effective utilization of ocean wave energy and reducing aquaculture costs.

CN224049321UActive Publication Date: 2026-03-27XIANGBAN (WANNING) TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing technologies have failed to effectively combine wave energy with power generation and aquaculture, resulting in the underdevelopment and underutilization of wave energy.

Method used

Design a system for seawater power generation and aquaculture using wave impact force, including a seawater lifting system, a seawater storage system, an aquaculture system, and a power generation system. The system utilizes the impact force of waves to lift seawater to a reservoir above sea level through a wave collection device and a one-way valve, and uses the water level difference to generate electricity for aquaculture.

Benefits of technology

This achieves the effective utilization of wave energy, which can generate electricity for aquaculture farms, reduce aquaculture costs, and generate revenue while being environmentally friendly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a system device for lifting seawater power generation and aquaculture water by using sea wave impact force. The device comprises a seawater lifting system, a seawater storage system, an aquaculture system and a power generation system, sea waves are collected through the horn mouth, meanwhile, the sea water position is lifted through the shrunk pipeline by means of the characteristic that the impact force pressure intensity of the sea waves is large, and the sea water enters the water storage pool. And low-water-level water in the reservoir is introduced into the culture pond for daily use according to use requirements. And the high-water-level seawater in the reservoir generates electricity through the impeller generator. The electric power used by the breeding plant is from the power generation of the system, so that the breeding cost is not additionally increased. Meanwhile, unused electric power can be accessed to a power grid to generate benefits.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a seawater power generation and breeding device, in particular to a seawater power generation and breeding water system device using sea wave impact force to promote the mutual cooperation of breeding and power generation. BACKGROUND

[0002] Through testing, the impact force of sea waves on the coast reaches 20-30 tons per square meter, and the maximum can reach 60 tons, which is the energy endowed by nature, and has not been converted into available resources due to insufficient development. Therefore, people have begun to study the utilization of sea wave energy for decades in order to make it better serve mankind.

[0003] At present, the sea wave resources have not been used for the combination of power generation and breeding industry, and the kinetic energy and electric energy generated thereby are utilized. CONTENT OF THE UTILITY MODEL

[0004] In view of the above problems, the main purpose of the utility model is to provide a seawater power generation and breeding water system device using sea wave impact force to promote the mutual cooperation of breeding and power generation.

[0005] The utility model solves the above technical problems through the following technical scheme: a seawater power generation and breeding water system device using sea wave impact force to promote, which comprises a seawater lifting system, a seawater storage system, a breeding system and a power generation system.

[0006] The seawater lifting system comprises a plurality of sea wave collecting devices, a sea wave collecting pipeline and a one-way valve. The one-way valve is installed on the sea wave collecting pipeline. One end of the sea wave collecting pipeline is connected to the sea wave collecting device, and the other end is connected to the seawater storage system. The sea wave collecting device is aligned with the seawater inflow direction of the sea.

[0007] The seawater storage system comprises a water storage tank and a platform. The platform is located 10-30 meters above sea level, and the water storage tank is installed on the platform.

[0008] The breeding system comprises a plurality of breeding pools, a water inlet main pipe and a drainage main pipe. The water inlet main pipe is connected to the water storage tank of the seawater storage system. The water inlet main pipe and the drainage main pipe are connected to the water storage tank through water inlet branch pipes and drainage branch pipes.

[0009] The power generation system comprises an impeller generator. The impeller generator is located below the platform of the seawater storage system. The lower part of the impeller generator is provided with a drainage outlet connected to the sea.

[0010] A water overflow port is provided on the water storage tank, a valve switch is installed, a water outlet pipe is connected, and the impeller generator is connected. The position of the water overflow port is higher than the position of the water outlet connected to one side of the breeding pool.

[0011] In the embodiment of the utility model, the multiple sea wave collecting devices are multiple trumpet mouths.

[0012] In the embodiment of the utility model, the multiple breeding ponds are distributed on both sides of the water storage pool, the breeding ponds on each side of the water storage pool are divided into two rows, the water inlet main pipe is located between the two rows, each water storage pool is connected with the water inlet main pipe through a water inlet branch pipe, and each water storage pool is connected with the water outlet main pipe through a water outlet branch pipe.

[0013] In the embodiment of the utility model, the water outlet main pipe is provided with a sewage treatment device.

[0014] In the embodiment of the utility model, the power generation system can independently generate electricity and feed back the surplus electricity.

[0015] In the embodiment of the utility model, the sea wave collecting pipe is scaled according to the water lifting height, and when the water lifting height exceeds 10 m, the water inlet and the water outlet are scaled according to 20:(1-5).

[0016] In the embodiment of the utility model, the one-way valve is a one-way valve through which seawater can only flow to the seawater storage system.

[0017] In the embodiment of the utility model, the overflow port is located 15-30 cm higher than the water outlet port connected to one side of the breeding pond.

[0018] In the embodiment of the utility model, the overflow port and the sea wave collecting pipe are located on the same side of the water storage pool.

[0019] In the embodiment of the utility model, the overflow port includes two, which are symmetrically distributed on the water storage pool; the overflow port of the water storage pool is provided with a valve switch, and the power generation system can be opened and closed as required.

[0020] The utility model has the advantages that: the device for improving seawater power generation and breeding water system by using sea wave impact force provided by the utility model has the following advantages compared with common technologies: the device uses natural resources of sea wave impact force, generates electricity by using seawater, is environmentally friendly and generates income; and the traditional breeding mode is changed, and the breeding cost is reduced. DRAWINGS

[0021] Figure 1 It is an overall structure schematic view (perspective view) of the utility model.

[0022] Figure 2 It is an overall structure schematic view (left view) of the utility model.

[0023] Figure 3 It is a structure schematic view of the sewage treatment device in the utility model.

[0024] The following is the name corresponding to the label in the utility model:

[0025] Sea wave collecting device 1, sea wave collecting pipeline 2, one-way valve 3, water storage tank 4, water storage tank 5, water inlet main pipe 6, water outlet main pipe 7, water inlet branch pipe 8, water outlet branch pipe 9, water outlet 10, overflow 11, sewage treatment device 12, impeller generator 13. DETAILED DESCRIPTION

[0026] The preferred embodiments of the utility model are combined with the drawings below to give a detailed description of the technical scheme of the utility model.

[0027] The utility model adopts the horn mouth to collect sea waves, simultaneously utilizes the characteristics that the sea wave impact force pressure is extremely big, passes through the reduced pipeline, promotes the sea water position, makes the sea water enter the water storage tank. According to the need of use, the low water level water in the water storage tank is introduced into the breeding pond for daily use. The high water level sea water in the water storage tank is generated by the impeller generator. The electricity used by the breeding plant is all from the system generation, does not increase the breeding cost additionally. At the same time, the unused electricity can be connected to the power grid to generate benefits.

[0028] Figure 1 It is the whole structure schematic diagram (perspective view) of the utility model, Figure 2 It is the whole structure schematic diagram (left view) of the utility model, Figure 3 It is the structure schematic diagram of sewage treatment in the utility model, as Figures 1-3 The utility model discloses a kind of sea wave impact force lifting sea water power generation and breeding water system device, which sea wave impact force lifting sea water power generation and breeding water system device include: sea water lifting system, sea water storage system, breeding system, power generation system.

[0029] Sea water lifting system includes multiple sea wave collecting devices 1, sea wave collecting pipeline 2, one-way valve 3;One-way valve 3 is installed on sea wave collecting pipeline 2, sea wave collecting pipeline 2 one end is connected on sea wave collecting device 1, the other end is connected on sea water storage system, sea wave collecting device 1 is aligned with sea water inflow direction.

[0030] Sea water storage system includes water storage tank 4 and platform;Platform is located at 10-30 meters higher than sea level, water storage tank 5 is installed on platform.

[0031] Breeding system includes multiple breeding ponds 5, water inlet main pipe 6, water outlet main pipe 7;Water inlet main pipe 6 is connected on the water storage tank 4 of sea water storage system, water inlet main pipe 6 and water outlet main pipe 7 are connected on water storage tank 4 by water inlet branch pipe 8 and water outlet branch pipe 9.

[0032] Power generation system includes impeller generator 13, impeller generator 13 is located below the platform in sea water storage system, the lower part of impeller generator 9 is provided with water outlet 10 connected with sea.

[0033] The overflow 11 is arranged on the water storage pool, a valve switch is installed, a water outlet pipe is connected, and the water outlet pipe is connected with the impeller generator, and the position of the overflow is higher than the position of the water outlet connected with the edge of the breeding pool.

[0034] In the specific implementation process, the plurality of sea wave collecting devices 1 of the utility model can be a plurality of horn mouths.

[0035] In the specific implementation process, the plurality of breeding pools of the utility model are distributed on the two edges of the water storage pool, the breeding pools on each edge of the water storage pool are divided into two rows, the water inlet main pipe is located between the two rows, each breeding pool is connected with the water inlet main pipe through the water inlet branch pipe, and each breeding pool is connected with the water outlet main pipe through the water outlet branch pipe.

[0036] In the specific implementation process, the water outlet main pipe 7 of the utility model is provided with a sewage treatment device 12.

[0037] In the specific implementation process, the power generation system of the utility model can independently generate electricity and feed back the surplus electricity.

[0038] In the specific implementation process, the sea wave collecting pipe is scaled according to the water lifting height, when the water lifting height exceeds 10 m, the inlet and the outlet are scaled according to the proportion of 20: (1-5), and meanwhile, the length of the water pipe and the average height of sea waves in the place are considered, and the proportion of the inlet and the outlet is adjusted according to the actual construction pressure required.

[0039] In the specific implementation process, the position of the overflow 11 of the utility model is 15-30 cm higher than the position of the water outlet connected with the edge of the breeding pool.

[0040] In the specific implementation process, the overflow of the utility model can include a plurality of, Figure 1 The overflow of the water storage pool can be provided with a valve switch, and the power generation system can be opened and closed as required. The design is beneficial to adapt to weather changes, suitable for energy storage power generation, and improves economic income.

[0041] The following is a specific embodiment:

[0042] The utility model is divided into four technical parts:

[0043] 1, sea water lifting system: the impact force of sea waves on the coast reaches 20-30 tons per square meter, and the maximum can reach 60 tons, the horn mouth sea wave collecting device is used to collect sea waves, the strong pressure released by the impact force of sea waves is utilized, a 50 cm diameter pipe connected with one end of the horn mouth small mouth is used, the sea wave pressure is doubled after being increased, and the sea water is lifted to the water storage pool under the action of the pressure. A one-way valve is installed at the connection between the small horn mouth and the pipe, the sea water can only flow in one direction, and cannot flow out, thereby solving the water storage problem.

[0044] 2. The seawater storage system: build a water storage pool with a height of 10-30 meters above sea level, and the water storage pool stores the collected seawater. The water storage pool leaves a water outlet at the lower position on both sides, installs a valve switch, and releases water to the culture pond according to needs. One side of the connection horn mouth collecting device leaves an overflow outlet 11, installs a valve switch, connects a water outlet pipe, and is connected with an impeller generator. The overflow outlet position here is 20 cm higher than the water outlet position connected with the culture pond. This design makes the low water level seawater in the water storage pool used for culture, and the high water level seawater enters the generator to generate electricity.

[0045] 3. The culture system: the culture system is composed of multiple culture ponds 5, which are connected with the water storage pool and the drain pipe through pipelines. Each culture pond is controlled by a valve switch to perform water exchange and water supplement work as needed. The tail part of the drain pipe is provided with a sewage treatment device, and the waste water is treated and discharged into the sea through a drain outlet.

[0046] 4. The power generation system: after the low water level seawater in the water storage pool is used for culture, the high water level seawater flows out through the overflow outlet, and the fall drives the impeller generator to generate electricity. The electricity can be used for the culture factory, and the remaining electricity is connected to the power grid. The used seawater is discharged into the sea through the drain outlet below the impeller generator.

[0047] The above shows and describes the basic principles and main features of the utility model and the advantages of the utility model. It should be understood by those skilled in the art that the utility model is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model can also have various changes and improvements. These changes and improvements all fall within the scope of the claimed utility model, and the scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. A system for raising a seawater power generation and aquaculture water system device using sea wave impact force, characterized by: The device for improving seawater power generation and aquaculture water system by sea wave impact force comprises a seawater lifting system, a seawater storage system, an aquaculture system and a power generation system. The seawater lifting system comprises a plurality of sea wave collecting devices, a sea wave collecting pipeline and a one-way valve. The one-way valve is installed on the sea wave collecting pipeline. The sea wave collecting pipeline is connected to the sea wave collecting devices at one end and to the seawater storage system at the other end. The sea wave collecting devices are aligned with the direction of incoming seawater. The seawater storage system comprises a water storage tank and a platform.

2. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system according to claim 1, characterized in that: The platform is located 10-30 meters above sea level.

3. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The water storage tank is installed on the platform.

4. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The aquaculture system comprises a plurality of aquaculture tanks, a water inlet main pipe and a water outlet main pipe.

5. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The water inlet main pipe is connected to the water storage tank of the seawater storage system.

6. The sea water power generation and aquaculture system device using sea wave impact force according to claim 2, characterized in that: The water inlet main pipe and the water outlet main pipe are connected to the water storage tank through water inlet branch pipes and water outlet branch pipes.

7. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The power generation system comprises an impeller generator.

8. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The impeller generator is located below the platform of the seawater storage system.

9. The sea wave impact power lifting apparatus for sea water power generation and aquaculture system of claim 1, wherein: The lower part of the impeller generator is provided with a water outlet connected to the sea.

10. The sea water power generation and aquaculture system device using sea wave impact force according to claim 1, characterized in that: The water storage tank is provided with an overflow outlet. A valve switch is installed on the overflow outlet. The overflow outlet is connected to a water outlet pipe and is connected to the impeller generator. The position of the overflow outlet is higher than the position of the water outlet connected to one side of the aquaculture tank. The plurality of sea wave collecting devices are a plurality of horn mouths. The plurality of aquaculture tanks are distributed on both sides of the water storage tank. The aquaculture tanks on each side of the water storage tank are divided into two rows. The water inlet main pipe is located between the two rows. Each aquaculture tank is connected to the water inlet main pipe through a water inlet branch pipe. Each aquaculture tank is connected to the water outlet main pipe through a water outlet branch pipe. The water outlet main pipe is provided with a sewage treatment device. The power generation system independently generates electricity and feeds it into the grid or uses the excess electricity to feed it into the grid. The sea wave collecting pipeline is scaled according to the water lifting height. When the water lifting height exceeds 10 meters, the inlet and outlet are scaled according to the ratio of 20:(1-5). The one-way valve is a one-way valve that allows seawater to flow only to the seawater storage system. The position of the overflow outlet is 15-30 cm higher than the position of the water outlet connected to one side of the aquaculture tank. The overflow outlet and the sea wave collecting pipeline are located on the same side of the water storage tank. The overflow outlet comprises two symmetrical parts distributed on the water storage tank. The water storage tank overflow outlet is provided with a valve switch that can be opened and closed as needed to start and stop the power generation system.