Temperature difference self-generating system for air conditioner pipeline
By adopting a combined structure of a casing, a base, a holder and an insulation sleeve in the temperature difference self-generating system of the air-conditioning pipe, the problems of reduced power generation and sealing caused by the exposure of the thermoelectric generator are solved, and higher energy utilization and electric energy storage effects are achieved.
Patent Information
- Application Number
- CN202422785406.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-15
AI Technical Summary
In the existing air-conditioning duct temperature difference self-generating system, the exposed state of the thermoelectric generator leads to reduced power generation and is easily invaded by external dust and mosquitoes, affecting the system's sealing and stability.
A temperature difference self-generating system for air-conditioning pipes was designed. The combined structure of the casing, base, bracket and insulation sleeve enhanced energy utilization and sealing. Threaded clamps and threaded sleeves were used to improve connection stability. The system was combined with batteries and distribution components to achieve electrical energy storage and conversion.
It improves the power generation rate of the thermoelectric generator, enhances the sealing and stability of the system, prevents the invasion of dust and mosquitoes, and improves energy utilization efficiency and power storage capacity.
Smart Images

Figure CN223451849U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a self-generating device, in particular to a temperature difference self-generating system for air-conditioning pipes, belonging to the technical field of power generation equipment. Background Art
[0002] The air conditioning pipe temperature difference self-generating system is a device that converts the temperature difference of the air conditioning pipe into electrical energy. The air conditioning system will produce a large temperature difference during operation. This temperature difference can be used for energy recovery. By recovering the heat radiation and cold radiation released by the air conditioning pipe, the heat radiation and cold radiation are converted into electrical energy, thereby improving the comprehensive utilization efficiency of energy.
[0003] Most air conditioning duct temperature difference self-generating systems use thermoelectric generators, which absorb the heat and cold radiation from the air conditioning ducts to generate electricity. However, most thermoelectric generators are exposed, which reduces the power generation capacity. To this end, we provide air conditioning duct temperature difference self-generating systems to solve the above problems. Utility Model Content
[0004] In order to solve the above problems, the present invention provides an air conditioning pipe temperature difference self-generating system to solve the above problems. The specific technical solution is as follows:
[0005] An air conditioning pipe temperature difference self-generating system includes a thermoelectric generator body and a pipe body. A casing is provided on the outside of the thermoelectric generator body. The bottom end of the casing is detachably connected to a bottom cover, and the top end of the casing is detachably connected to a top cover. A slot is provided on the inside of the casing. The inner wall of the slot contacts the outer surface of the pipe body. The outer surface of the pipe body contacts the base. The outer surface of the pipe body also contacts the holder. One side of the holder is connected to one side of the base. The thermoelectric generator body is installed above the base, and an insulation sleeve is provided inside the casing.
[0006] Preferably, an inserting plate is connected to the upper surface of the bottom cover, and an outer surface of the inserting plate contacts the inner wall of the card slot, and the outer surface of the inserting plate also contacts the outer surface of the pipe body.
[0007] Preferably, the outer surface of the housing is connected to a first threaded clamping ring, the outer surface of the inserting plate is connected to a second threaded clamping ring, the outer surfaces of the first threaded clamping ring and the second threaded clamping ring are threadedly connected to threaded sleeves, and the first threaded clamping ring and the second threaded clamping ring are located outside the clamping groove.
[0008] Preferably, the lower surface of the thermal insulation sleeve contacts the bottom cover, and the inner wall of the thermal insulation sleeve contacts the outer surfaces of the base and the card seat.
[0009] Preferably, a retaining ring is connected to the inner wall of the casing, one side of the retaining ring is in contact with a partition, and a battery and a power distribution component are installed on the upper surface of the partition.
[0010] Preferably, a plurality of support frames are detachably connected to the outer surface of the casing, and the plurality of support frames are located at the four corners of the casing.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. The air-conditioning pipe temperature difference self-generating system cooperates between the base, the casing and the insulation cover, and the base and the holder wrap the pipe body, so that the hot and cold energy released by the pipe is fully absorbed by the base and the holder, and then transmitted to the thermoelectric generator body through the base. The insulation cover wraps the outside of the base and the holder to reduce the volatilization of hot and cold energy to the outside, thereby improving the utilization rate of hot and cold energy by the thermoelectric generator. The casing forms isolation on the outside of the thermoelectric generator body to reduce the volatilization of hot and cold energy to the outside, thereby improving the power generation rate of the thermoelectric generator.
[0013] 2. The air-conditioning pipe temperature difference self-generating system cooperates between the plug plate, the first threaded clamping ring, the second threaded clamping ring and the threaded sleeve. The plug plate is used to seal the gap between the card slot and the pipe body, thereby improving the sealing of the casing, preventing external dust or mosquitoes from entering the interior of the casing, and improving the cleanliness of the interior of the casing. The first threaded clamping ring and the second threaded clamping ring are combined together by the threaded sleeve, so that the first threaded clamping ring and the second threaded clamping ring form a whole, thereby improving the stability of the connection between the bottom cover and the casing. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0015] Figure 2 This is a schematic diagram of the internal structure of the casing in the present utility model;
[0016] Figure 3 This is a schematic diagram of the overall three-dimensional structure of the card holder in the present utility model;
[0017] Figure 4 This is a schematic diagram of the overall three-dimensional structure of the bottom cover in the present utility model;
[0018] Figure 5 It is a schematic diagram of the overall three-dimensional structure of the casing in the present invention.
[0019] BRIEF DESCRIPTION OF DRAWINGS:1, temperature difference generator body;2, pipe body;3, casing;4, bottom cover;5, top cover;6, card slot;7, base;8, card seat;9, heat preservation sleeve;10, plug;11, first threaded snap ring;12, second threaded snap ring;13, threaded sleeve;14, blocking ring;15, partition;16, battery;17, power distribution assembly;18, support frame. DETAILED DESCRIPTION
[0020] The utility model will be further described in connection with the drawings.
[0021] Please refer to Figures 1-5 , air conditioning pipe temperature difference self-power generation system, including temperature difference generator body 1 and pipe body 2, the outside of temperature difference generator body 1 is provided with casing 3, the bottom end of casing 3 is detachably connected with bottom cover 4, the top end of casing 3 is detachably connected with top cover 5, the bottom of casing 3 is closed through bottom cover 4, the top of casing 3 is closed through top cover 5, make the inside of casing 3 form an independent space.
[0022] The inner side of casing 3 is provided with card slot 6, the inner wall of card slot 6 is in contact with the outer surface of pipe body 2, casing 3 is used for placing pipe body 2 through card slot 6, the outer surface of pipe body 2 is in contact with base 7, the outer surface of pipe body 2 is in contact with card seat 8 simultaneously, one side of card seat 8 is connected with one side of base 7, pipe body 2 is clamped in the inside through base 7 and card seat 8, improve the contact area of temperature difference generator body 1 and pipe body 2, temperature difference generator body 1 is installed above base 7, make the cold and heat energy of pipe body 2 pass through base 7 and transmit to temperature difference generator body 1, improve the stability of temperature difference generator body 1 simultaneously.
[0023] The inside of casing 3 is provided with heat preservation sleeve 9, the lower surface of heat preservation sleeve 9 is in contact with bottom cover 4, the inner wall of heat preservation sleeve 9 is in contact with the outer surface of base 7 and card seat 8, heat preservation sleeve 9 is supported through bottom cover 4, make heat preservation sleeve 9 contact tightly with base 7 and card seat 8, heat preservation sleeve 9, the material of heat preservation sleeve 9 adopts phenolic resin heat preservation material, phenolic resin has the characteristics of lighter quality, fireproof, smokeless and nontoxic, prevent the cold and heat energy of pipe body 2 from volatilizing to the outside through heat preservation sleeve 9, further improve the utilization rate of cold and heat energy.
[0024] The upper surface of bottom cover 4 is connected with plug 10, the outer surface of plug 10 is in contact with the inner wall of card slot 6, the outer surface of plug 10 is also in contact with the outer surface of pipe body 2, the gap between card slot 6 and pipe body 2 is blocked through plug 10, prevent the dust or mosquito of outside from entering the inside of casing 3, improve the cleanliness of the inside of casing 3.
[0025] The outer surface of the casing 3 is connected with a first threaded clamping ring 11, the outer surface of the plug-in board 10 is connected with a second threaded clamping ring 12, the outer surfaces of the first threaded clamping ring 11 and the second threaded clamping ring 12 are threadedly connected with a threaded sleeve 13, and the first threaded clamping ring 11 and the second threaded clamping ring 12 are located outside the clamping groove 6, the first threaded clamping ring 11 and the second threaded clamping ring 12 are combined together through the threaded sleeve 13, and the stability of the connection of the bottom cover 4 and the casing 3 is improved.
[0026] The inner wall of the casing 3 is connected with a blocking ring 14, one side of the blocking ring 14 is in contact with a partition plate 15, the upper surface of the partition plate 15 is provided with a storage battery 16 and a power distribution assembly 17, the partition plate 15 is supported by the blocking ring 14, the stability of the partition plate 15 is maintained, the partition plate 15 is directly placed above the blocking ring 14, the partition plate 15 is convenient to take out, and the parts inside the casing 3 are convenient to maintain in the later period, the casing 3 generates another space through the partition plate 15, and the storage battery 16 and the power distribution assembly 17 are installed in the space, the storage battery 16 is connected with the power distribution assembly 17 through electricity, and the thermoelectric generator body 1 is connected with the power distribution assembly 17 through electricity, the electric energy generated by the thermoelectric generator body 1 is converted and transmitted to the inside of the storage battery 16 through the power distribution assembly 17, the electric energy generated by the thermoelectric generator body 1 is stored through the storage battery 16, the storage battery 16 is discharged to the outside through the power distribution assembly 17, the power distribution assembly 17 comprises a controller, an inverter and a plurality of electronic components, the electric energy is converted and transmitted through the controller, the inverter and the plurality of electronic components, and the output and input of the electric energy to the storage battery 16 are realized.
[0027] The outer surface of the casing 3 is detachably connected with a plurality of supporting frames 18, and the plurality of supporting frames 18 are located at the four corners of the casing 3, the casing 3 is fixed through the supporting frames 18, and the stability of the casing 3 is maintained, the supporting frames 18 are connected with the casing 3 through bolts, the positions of the supporting frames 18 are adjusted by loosening the bolts, so that the spacing and the angle between the supporting frames 18 and the supporting points are adapted.
[0028] In use, the base 7 is covered above the pipeline body 2, the clamping seat 8 is covered below the pipeline body 2, the base 7 and the clamping seat 8 are connected together, the thermoelectric generator body 1 is installed above the base 7, the casing 3 is sleeved outside the thermoelectric generator body 1, the base 7 and the clamping seat 8, the clamping groove 6 is aligned with the pipeline body 2, the heat preservation sleeve 9 is placed from below the casing 3, the base 7 and the clamping seat 8 are wrapped by the heat preservation sleeve 9, the bottom cover 4 is installed below the casing 3, the plug-in board 10 is aligned with the clamping groove 6, then the threaded sleeve 13 is aligned with the first threaded clamping ring 11 and the second threaded clamping ring 12 and is tightened, the partition plate 15 is placed in the casing 3 and is in contact with the blocking ring 14, then the storage battery 16 and the power distribution assembly 17 are installed on the partition plate 15, and finally the top cover 5 is installed above the casing 3, so that the casing 3 is closed.
[0029] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are intended solely to illustrate the principles of the present invention and should not be construed in any way as limiting the scope of protection of the present invention. Based on the explanations herein, those skilled in the art will be able to devise other specific embodiments of the present invention without inventive effort, and such embodiments will fall within the scope of protection of the claims of the present invention.
Claims
1. An air conditioning pipe temperature difference self-generating system, comprising a temperature difference generator body (1) and a pipe body (2), characterized in that: The thermoelectric generator body (1) is provided with a housing (3) on the outside, the bottom end of the housing (3) is detachably connected to a bottom cover (4), the top end of the housing (3) is detachably connected to a top cover (5), a card slot (6) is provided on the inside of the housing (3), the inner wall of the card slot (6) is in contact with the outer surface of the pipe body (2), the outer surface of the pipe body (2) is in contact with a base (7), and the outer surface of the pipe body (2) is also in contact with a card seat (8), one side of the card seat (8) is connected to one side of the base (7), the thermoelectric generator body (1) is mounted above the base (7), and a heat preservation sleeve (9) is provided inside the housing (3).
2. The air conditioning pipe temperature difference self-generating system according to claim 1 is characterized in that: The upper surface of the bottom cover (4) is connected to an inserting plate (10), the outer surface of the inserting plate (10) contacts the inner wall of the card slot (6), and the outer surface of the inserting plate (10) also contacts the outer surface of the pipe body (2).
3. The air conditioning pipe temperature difference self-generating system according to claim 2 is characterized in that: The outer surface of the housing (3) is connected to a first threaded snap ring (11), the outer surface of the insert plate (10) is connected to a second threaded snap ring (12), the outer surfaces of the first threaded snap ring (11) and the second threaded snap ring (12) are threadedly connected to a threaded sleeve (13), and the first threaded snap ring (11) and the second threaded snap ring (12) are located outside the clamping groove (6).
4. The air conditioning pipe temperature difference self-generating system according to claim 1, characterized in that: The lower surface of the thermal insulation sleeve (9) contacts the bottom cover (4), and the inner wall of the thermal insulation sleeve (9) contacts the outer surfaces of the base (7) and the card seat (8).
5. The air conditioning pipe temperature difference self-generating system according to claim 1 is characterized in that: The inner wall of the casing (3) is connected to a retaining ring (14), one side of the retaining ring (14) is in contact with a partition (15), and a battery (16) and a power distribution assembly (17) are installed on the upper surface of the partition (15).
6. The air conditioning pipe temperature difference self-generating system according to claim 1, characterized in that: The outer surface of the housing (3) is detachably connected to a plurality of support frames (18), and the plurality of support frames (18) are located at the four corners of the housing (3).