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Wind-solar complementary new energy pool oxygen supply system

A technology of wind-solar complementary and oxygen supply system, which is applied in the field of agriculture and breeding, can solve the problems of inconvenient adjustment of the position and angle of wind power generators, difficult adjustment of the position and angle of photovoltaic panels, etc., and achieve the effect of strong adaptability

Active Publication Date: 2019-03-12
IANGSU COLLEGE OF ENG & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, the position and angle of the photovoltaic panel in the existing photovoltaic power generation system are not easy to adjust, and the position and angl

Method used

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  • Wind-solar complementary new energy pool oxygen supply system
  • Wind-solar complementary new energy pool oxygen supply system
  • Wind-solar complementary new energy pool oxygen supply system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0053] refer to figure 1 , figure 2 with image 3 , a wind-solar complementary new energy pool oxygen supply system, including a first support plate 1 fixed above the pool and a photovoltaic power generation system and a wind power generation system arranged on the first support plate 1; in order to make the photovoltaic power generation system and the wind power generation system Utilizing energy to the greatest extent, a first column 11 is fixed above the first supporting plate 1, and a first sliding rod 110 is connected to slide along the vertical direction in the first column 11, wherein at the top of the first sliding rod 110 A first adjustment part 2 for controlling and adjusting the angle of the photovoltaic panel 111 in the photovoltaic power generation system is provided; at the same time, a second column 12 is fixed above the first support plate 1, and the second column 12 is slidably connected in the vertical direction There is a second sliding rod 120, and the s...

Embodiment 2

[0064] The difference from Example 1 is that the surfaces of the first support plate 1 and the second support plate 13 are coated with an anti-fouling coating. Since the first support plate 1 will be stepped on by the user when adjusting the device, the second support plate The surface of plate 13 is easy to accumulate the water in the pool again, so the first support plate 1 and the second support plate 13 all become dirty easily, for the convenience of cleaning the first support plate 1 and the second support plate 13, in the first The surface of the support plate 1 and the second support plate 13 is coated with an antifouling coating, so a method for preparing the antifouling coating is provided, which has the advantages of short preparation process and simple preparation, wherein the first support plate 1 and the The preparation method of the antifouling coating on the surface of the second support plate 13 is as follows:

[0065] Take the following raw materials of each c...

Embodiment 3

[0071] The difference from Example 2 lies in the preparation of the antifouling coating on the surface of the first support plate 1 and the second support plate 13, wherein the preparation method of the antifouling coating is as follows:

[0072] Take the following components by weight as raw materials: 45 parts of epoxy resin, 43 parts of methyl methacrylate, 44 parts of polyethylene, 26 parts of ammonium fluorosilicate, 21 parts of fatty alcohol polyoxyethylene ether, alkylphenol polyoxyethylene 17 parts of oxyethylene ether, 14 parts of sodium acrylate, 12 parts of hydroxyethylethylenediamine;

[0073] S1. Preparation of antifouling coating pre-preparation solution: Mix epoxy resin, methyl methacrylate, and polyethylene evenly and add to the reaction kettle, heat the temperature in the reaction kettle to 243°C and keep it warm for 20 minutes to obtain an antifouling coating Layer pre-preparation solution;

[0074] S2. Preparation of antifouling coating solution: After cool...

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PUM

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Abstract

The invention discloses a wind-solar complementary new energy pool oxygen supply system, which belongs to the field of agricultural cultivation. The system has technical scheme key points that the system comprises a first supporting plate, a photovoltaic power generation system and a wind power generation system, wherein the first supporting plate is fixed above the pool; the wind power generationsystem and the photovoltaic power generation system are arranged on the first supporting plate; a first stand column is fixed above the first supporting plate; a first sliding rod is in slippage connection in the first stand column along a vertical direction; the top end of the first sliding rod is provided with a first regulation part used for controlling and regulating the angle of a photovoltaic panel in the photovoltaic power generation system; a second stand column is also fixed above the first supporting plate; a second sliding rod is in slippage connection in the second stand column along the vertical direction; and the end part of the second sliding rod is provided with a second regulation part used for controlling and regulating the angle of a wind power generator in the wind power generation system. The photovoltaic power generation system and the wind power generation system are used for supplying power to a water pump, so that the device does not need to be supplied with power on the basis of a power grid, and therefore, the device is environmentally friendly.

Description

technical field [0001] The invention relates to the field of agriculture and breeding, more specifically, it relates to a solar-solar complementary new energy pool oxygen supply system. Background technique [0002] The oxygen needed by the fish cultured in the pool comes from the dissolved oxygen in the water. With the consumption of oxygen in the pool, hypoxia occurs, so it is necessary to supply oxygen to the pool to meet the requirements of farming. The principle of oxygen supply It is to inject air into the water and dissolve oxygen into the water to achieve the purpose of increasing oxygen. [0003] Since power equipment is needed for oxygen supply, and electric energy is consumed when the equipment is used for oxygen supply, oxygen supply alone takes up a large electricity cost in summer, resulting in high cost of farming; Most of the pools are in remote areas, and it is extremely inconvenient to use electricity, so it needs to be improved. [0004] There are two co...

Claims

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Application Information

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IPC IPC(8): H02S10/12H02S20/30F03D9/11A01K63/04C09D4/06C09D4/02C09D5/16
CPCA01K63/042A01K63/047C09D4/06C09D5/1687F03D9/007F03D9/11H02S10/12H02S20/30Y02E10/50Y02E10/72Y02E70/30Y02P80/10Y02A20/00
Inventor 师阳
Owner IANGSU COLLEGE OF ENG & TECH
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