Solar auxiliary heat supply device
By using components such as heat transfer plates, connecting pipes, heat transfer wires, arc-shaped refractive plates, and heating wires in solar-assisted heating devices, the problems of poor heat reception and low conversion efficiency of solar heating devices have been solved, achieving efficient heating under different weather conditions.
Patent Information
- Application Number
- CN202520452705.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-15
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-15
AI Technical Summary
Existing solar-assisted heating devices have poor heat reception performance, are limited by weather and time, and have low conversion efficiency, which affects their widespread and efficient utilization.
The heat transfer plate and connecting pipe at the top of the support column are used for uniform heat conduction. The heat transfer wire inside the support column is used for rapid heat transfer. The light collection effect is enhanced by the arc-shaped refraction plate. The angle of the reflective surface and collection plate in the auxiliary component is adjusted to improve heat collection. The heat transfer column and heating wire in the heating component work together to dissipate heat.
It improves the efficiency of solar energy collection and heat transfer, enhances the heating effect, ensures stable heating under different weather conditions, and improves the overall heating efficiency.
Smart Images

Figure CN223840664U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solar energy technology, and in particular to a solar-assisted heating device. Background Technology
[0002] Solar-assisted heating systems utilize solar energy as the primary energy source. They absorb solar radiation through collectors, converting it into heat energy, which is then transferred to water or air via a heat exchange system to provide heating. This device effectively reduces the dependence of traditional heating systems on fossil fuels, saves energy, reduces carbon emissions, and offers both environmental and economic benefits. It is often used in conjunction with traditional heating equipment to provide an auxiliary heat source when there is ample sunlight, improving the overall energy efficiency of the system and ensuring that users' heating needs are met even in cold or cloudy weather.
[0003] However, existing solar energy systems are not very effective at receiving heat. On the one hand, they are greatly limited by weather and time. On cloudy or rainy days when there is insufficient sunlight, heat reception is greatly reduced, and they cannot work at night. On the other hand, the conversion efficiency of solar panels is limited, and much of the light energy cannot be effectively converted into heat energy, resulting in a low overall level of heat reception and affecting the widespread and efficient use of solar energy.
[0004] Therefore, this application provides a solar-assisted heating device to meet the demand. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies and propose a solar-assisted heating device.
[0006] To achieve the above objectives, this utility model adopts the following technical solution: a solar-assisted heating device, comprising:
[0007] Solar pillars and a water storage tank placed on top of the solar pillars;
[0008] A heat transfer assembly is placed on top of a water storage tank. The heat transfer assembly includes a support column set on top of the water storage tank, a heat transfer plate fixed on top of the support column, connecting pipes between the heat transfer plates, and a first heat transfer wire inside the support column.
[0009] An auxiliary component is placed on top of the transfer component. The auxiliary component includes a first connecting block disposed on the top of a support column. A rotating shaft is disposed on the top of the first connecting block. A fixed base is fixed on the top of the rotating shaft. A folding surface is fixed on the bottom of each fixed base. A first connecting column is fixed on the top of the fixed base. A top collecting plate is disposed on the top of the first connecting column.
[0010] Furthermore, an arc-shaped refractive plate is fitted onto the bottom of the support column away from the heat transfer plate.
[0011] The beneficial effect of adopting the above-mentioned further solution is that an arc-shaped refraction plate is fitted at the bottom of the support column, which uses its curvature to refract and concentrate the light, thereby enhancing the light-gathering effect.
[0012] Furthermore, the heating assembly includes a fixed column fixed to the bottom of the support column, and a heat transfer column is fixed to the bottom of the fixed column. Each heat transfer column is provided with a second heat transfer wire.
[0013] The beneficial effects of adopting the above-mentioned further solution are: in the heating component, the fixed column at the bottom of the support column plays a connecting role, the heat transfer column at the bottom is responsible for conducting heat, and the second heat transfer wire above accelerates the heat transfer, so as to efficiently transport heat energy and realize heating.
[0014] Furthermore, a second connecting column is fixed to the outside of the heat transfer column, and a second connecting block is fixed to both ends of the second connecting column. A heating column is fixed to the outside of each of the second connecting blocks, and a heating wire is provided on each of the heating columns.
[0015] The beneficial effects of adopting the above-mentioned further scheme are: the second connecting column on the outside of the heat transfer column is connected to the heating column through the second connecting blocks at both ends, and the heating wire on the heating column is heated by the first heat transfer wire. Together with the heat transfer column, the heat is dissipated more widely, enhancing the heating effect and improving the heating efficiency.
[0016] Furthermore, the top of the first heat transfer wire is fixedly connected to the heat transfer plate, and the bottom of the first heat transfer wire is fixedly connected to the fixing post.
[0017] The beneficial effects of adopting the above-mentioned further solution are: the top of the first heat transfer wire is connected to the heat transfer plate and the bottom is connected to the fixed column, which conducts the heat absorbed by the heat transfer plate to the fixed column, helping the heating component to achieve efficient heating.
[0018] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0019] 1. The heat transfer components play a crucial role. The support column at the top of the water storage tank provides stable support, and the heat transfer plate fixed at the top can efficiently absorb solar energy and convert it into heat energy. The connecting pipe between the heat transfer plates allows the heat to be evenly conducted between the heat transfer plates. The first heat transfer wire inside the support column is responsible for quickly transferring the heat absorbed by the heat transfer plate to the bottom, achieving efficient heat transfer and thus providing a stable heat energy source for the subsequent heating process.
[0020] 2. In the solar-assisted heating device, the auxiliary component is located on top of the transfer component. The first connecting block at the top of the support column is connected to the rotating shaft, allowing the fixed base to rotate flexibly and adjust the angle to better receive solar energy. The folded surface at the bottom of the fixed base can reflect light and increase heat collection. The top collection plate is fixed to the fixed base through the first connecting column, efficiently collecting and transferring solar energy to improve the overall heating efficiency. Attached Figure Description
[0021] Figure 1 This is a front view of a solar-assisted heating device according to this utility model;
[0022] Figure 2 This is a cross-sectional view of a solar-assisted heating device according to the present invention;
[0023] Figure 3 This is a structural diagram of an auxiliary component in a solar-assisted heating device according to the present invention;
[0024] Figure 4 This is a structural diagram of the heating component in a solar-assisted heating device according to this utility model.
[0025] Figure Labels
[0026] 1. Solar panel support; 2. Water storage tank;
[0027] 3. Auxiliary components; 31. Top collecting plate; 32. First connecting column; 33. Fixed base; 34. Reflecting surface; 35. Rotating shaft; 36. Arc-shaped refraction plate; 37. First connecting block;
[0028] 4. Transfer assembly; 41. Heat transfer plate; 42. Connecting pipe; 43. Support column; 44. First heat transfer wire;
[0029] 5. Heating component; 51. Fixed column; 52. Heat transfer column; 53. Second heat transfer wire; 54. Heating column; 55. Heating wire; 56. Second connecting block; 57. Second connecting column. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] like Figure 1 - Figure 3As shown, this utility model provides a technical solution: a solar-assisted heating device, including: a solar column 1 and a water storage tank 2 placed on top of the solar column 1;
[0032] The heat transfer component 4 is located on top of the water storage tank 2. The heat transfer component 4 includes a support column 43 on top of the water storage tank 2, a heat transfer plate 41 fixed on top of the support column 43, and connecting pipes 42 between the heat transfer plates 41. A first heat transfer wire 44 is installed inside the support column 43. The heat transfer component 4 plays a key role. The support column 43 on top of the water storage tank 2 provides stable support. The heat transfer plate 41 fixed on top can efficiently absorb solar energy and convert it into heat energy. The connecting pipes 42 between the heat transfer plates 41 allow heat to be evenly conducted between the heat transfer plates 41. The first heat transfer wire 44 inside the support column 43 is responsible for quickly transferring the heat absorbed by the heat transfer plate 41 to the lower part, realizing efficient heat transfer and providing a stable heat energy source for subsequent heating.
[0033] Auxiliary component 3 is located on top of transmission component 4. Auxiliary component 3 includes a first connecting block 37 located on top of support column 43. A rotating shaft 35 is located on top of the first connecting block 37. A fixed base 33 is fixed on top of the rotating shaft 35. A reflective surface 34 is fixed on the bottom of the fixed base 33. A first connecting column 32 is fixed on top of the fixed base 33. A top collecting plate 31 is located on top of the first connecting column 32. In the solar-assisted heating device, auxiliary component 3 is located on top of transmission component 4. The first connecting block 37 on top of support column 43 is connected to rotating shaft 35, allowing fixed base 33 to rotate flexibly and adjust its angle to better receive solar energy. The reflective surface 34 on the bottom of fixed base 33 can reflect light and increase heat collection. The top collecting plate 31 is fixed to fixed base 33 through first connecting column 32, efficiently collecting and transferring solar energy, and improving overall heating efficiency.
[0034] Furthermore, such as Figure 1 - Figure 3 As shown: An arc-shaped refraction plate 36 is fitted at the bottom of the support column 43 away from the heat transfer plate 41. The arc-shaped refraction plate 36 at the bottom of the support column 43 uses its curvature to refract and concentrate light, thereby enhancing the light-gathering effect.
[0035] The above solutions also have the problem of limited heating coverage, such as... Figure 1 - Figure 4 As shown: In this scheme, the heating component 5 includes a fixed column 51 fixed to the bottom of the support column 43, and a heat transfer column 52 fixed to the bottom of the fixed column 51. Each heat transfer column 52 is provided with a second heat transfer wire 53. In the heating component 5, the fixed column 51 fixed to the bottom of the support column 43 plays a connecting role. Its bottom heat transfer column 52 is responsible for conducting heat, and the second heat transfer wire 53 on it accelerates the heat transfer, efficiently transporting heat energy and realizing heating.
[0036] The above solutions also suffer from low heating efficiency, such as... Figure 1 - Figure 4 As shown: In this scheme, a second connecting column 57 is fixed to the outside of the heat transfer column 52. A second connecting block 56 is fixed to both ends of the second connecting column 57. A heating column 54 is fixed to the outside of the second connecting block 56. A heating wire 55 is provided on each heating column 54. The second connecting column 57 on the outside of the heat transfer column 52 is connected to the heating column 54 through the second connecting blocks 56 at both ends. The heating wire 55 on the heating column 54 is heated by the first heat transfer wire 44. Together with the heat transfer column 52, the heat is dissipated more widely, enhancing the heating effect and improving the heating efficiency.
[0037] Working principle: such as Figure 1 - Figure 4 As shown, the heat transfer component 4 is located at the top of the water storage tank 2, the support column 43 provides support, the heat transfer plate 41 is fixed at the top of the support column 43, it can absorb solar energy and convert it into heat energy, the connecting pipe 42 connects each heat transfer plate 41 to make the heat conduction uniformly, and the first heat transfer wire 44 inside the support column 43 transfers the heat absorbed by the heat transfer plate 41 to the bottom.
[0038] The auxiliary component 3 is located above the transmission component 4. The first connecting block 37 at the top of the support column 43 is connected to the rotating shaft 35, which drives the fixed base 33 to rotate. The user can adjust the angle of the top collecting plate 31 according to the sun's position to better receive solar energy. The folding surface 34 at the bottom of the fixed base 33 can reflect light and increase heat collection.
[0039] In the heating component 5, the fixed column 51 at the bottom of the support column 43 connects the heat transfer component 4 and the heating part. The heat transfer column 52 at the bottom of the fixed column 51 is responsible for conducting heat. The second heat transfer wire 53 is wound around the heat transfer column 52 to accelerate heat transfer. The second connecting column 57 on the outside of the heat transfer column 52 is connected to the heating column 54 through the second connecting block 56. The heating wire 55 on the heating column 54 generates heat under the action of the heat conducted by the first heat transfer wire 44. In conjunction with the heat transfer column 52, the heat is more widely dissipated, enhancing the heating effect and improving the heating efficiency.
[0040] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A solar-assisted heating device, characterized in that, include: A solar panel (1) and a water storage tank (2) placed on top of the solar panel (1); The transfer component (4) is placed on top of the water storage tank (2). The transfer component (4) includes a support column (43) set on top of the water storage tank (2). A heat transfer plate (41) is fixed on the top of the support column (43). A connecting pipe (42) is provided between the heat transfer plates (41). A first heat transfer wire (44) is provided inside the support column (43). An auxiliary component (3) is placed on top of a transfer component (4). The auxiliary component (3) includes a first connecting block (37) set on top of a support column (43). A rotating shaft (35) is set on top of the first connecting block (37). A fixed base (33) is fixed on top of the rotating shaft (35). A folding surface (34) is fixed on the bottom of the fixed base (33). A first connecting column (32) is fixed on top of the fixed base (33). A top collecting plate (31) is set on top of the first connecting column (32).
2. The solar-assisted heating device according to claim 1, characterized in that, An arc-shaped refractive plate (36) is fitted at the bottom of the support column (43) away from the heat transfer plate (41).
3. The solar-assisted heating device according to claim 1, characterized in that, A heating assembly (5) is provided at the bottom of the support column (43).
4. A solar-assisted heating device according to claim 3, characterized in that, The heating assembly (5) includes a fixed column (51) fixed to the bottom of the support column (43), and a heat transfer column (52) is fixed to the bottom of the fixed column (51). A second heat transfer wire (53) is provided on each heat transfer column (52).
5. A solar-assisted heating device according to claim 4, characterized in that, A second connecting column (57) is fixed to the outside of the heat transfer column (52). A second connecting block (56) is fixed to both ends of the second connecting column (57). A heating column (54) is fixed to the outside of the second connecting block (56). A heating wire (55) is provided on the heating column (54).
6. A solar-assisted heating device according to claim 1, characterized in that, The top of the first heat transfer wire (44) is fixedly connected to the heat transfer plate (41), and the bottom of the first heat transfer wire (44) is fixedly connected to the fixing post (51).