Solar water heater water tower integrated support
Patent Information
- Application Number
- CN202522097525.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0006]本实用新型的有益效果是:通过将太阳能热水器与水塔集成于同一架体,实现了设备安装一体化,不仅制造、运输、安装成本低,适用于多种地形屋顶的紧凑布局;同时,通过太阳能热水器固定装置将太阳能热水器固定于架体顶部,顶部空间开阔性更好,不易被遮挡,能够充分接受光照,大大提高了集热效率,通过水塔托板对水塔进行支撑和固定,使得水塔安装在架体底部,还能够充分利用太阳能热水器的下方空间,大大减少了空间占用;此外,水塔还能起到配重作用,有效降低了设备的整体重心,大大增强了设备在大风或地震等外力作用下的稳定性,使得整个设备结构更加稳固,安全性能显著提升。
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Figure CN224787415U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solar water heater technology, specifically to an integrated support for a solar water heater tower. Background Technology
[0002] Most existing solar water heaters and water tower supports are of a split structure. Split installation is not only cumbersome to operate, but also takes up a lot of space. In addition, the water tower is relatively tall and easy to tip over. Solar water heaters generally include collector tubes and water tanks. The water tank is relatively heavy, while the collector tubes are relatively light. The collector tubes are tilted below the water tank, which makes the overall center of gravity high. This results in poor stability under external forces such as strong winds or earthquakes, posing a safety hazard.
[0003] In addition, the separate structure of solar water heaters and water towers is complex, requires more materials, has higher manufacturing costs, and is inconvenient to transport, which greatly increases the installation and maintenance costs. Furthermore, it is difficult to achieve stable installation on rooftops in narrow or complex terrains. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide an integrated bracket for solar water heaters and water towers, which integrates solar water heaters and water towers into the same frame, realizing integrated equipment installation. It not only has low manufacturing, transportation and installation costs, but is also suitable for compact layouts on roofs of various terrains. In addition, the equipment occupies little space, has a stable structure and good safety.
[0005] The technical solution of this utility model to solve the above-mentioned technical problems is as follows: an integrated bracket for solar water heater and water tower, including a frame, a solar water heater fixing device at the top of the frame, and a water tower fixing device at the bottom of the frame. The solar water heater fixing device includes a solar water tank support plate and a solar heat exchanger support rod fixedly connected to the frame, and the water tower fixing device includes a water tower support plate fixedly connected to the frame.
[0006] The beneficial effects of this utility model are as follows: By integrating the solar water heater and the water tower into the same frame, integrated equipment installation is achieved, resulting in low manufacturing, transportation, and installation costs, and making it suitable for compact layouts on roofs of various terrains. Simultaneously, by fixing the solar water heater to the top of the frame using a fixing device, the top space is more open and less prone to obstruction, allowing for full sunlight reception and significantly improving heat collection efficiency. The water tower is supported and fixed by a support plate, allowing it to be installed at the bottom of the frame, fully utilizing the space below the solar water heater and greatly reducing space occupation. Furthermore, the water tower also acts as a counterweight, effectively lowering the overall center of gravity of the equipment and greatly enhancing its stability under external forces such as strong winds or earthquakes, making the entire equipment structure more robust and significantly improving safety performance.
[0007] Based on the above technical solution, the present invention can be further improved as follows.
[0008] Furthermore, the water tower support plate has an arc-shaped, U-shaped, or V-shaped structure, and both ends of the water tower support plate are fixedly connected to the columns on both sides of the frame, and the bottom of the water tower support plate is fixedly connected to the crossbeam at the bottom of the frame.
[0009] The beneficial effects of adopting the above-mentioned further solutions are: the arc-shaped, U-shaped or V-shaped structure of the water tower support plate can better adapt to the rotating structure of the water tower, ensuring that it can fit tightly against the outer wall of the water tower, effectively enhancing the stability of the water tower fixation, preventing shaking, and at the same time, it can adapt to the installation requirements of water towers of different sizes, greatly improving the adaptability and versatility of the device.
[0010] Furthermore, a longitudinal support column is provided at the center of the bottom of the water tower support plate. The longitudinal support column is vertically fixed to the bottom of the crossbeam corresponding to the bottom of the water tower support plate, and the bottom end of the longitudinal support column is flush with the bottom end of the column.
[0011] The beneficial effects of adopting the above-mentioned further scheme are: the longitudinal support column is used to further enhance the longitudinal support strength of the bottom beam of the water tower support plate, thereby effectively enhancing the load-bearing capacity and structural stability of the water tower support plate, preventing the water tower support plate from deforming or the beam from sagging due to the concentrated weight of the water tower, and the bottom ends of the longitudinal support column and the column are flush, so that the longitudinal support column and the column form a continuous vertical load-bearing system, which makes it easy for the support to be placed stably on the roof or ground foundation, avoiding tilting or settlement caused by uneven support.
[0012] Furthermore, the bottom center of the water tower support plate is provided with supporting diagonal rods on both sides. The supporting diagonal rods abut against the bottom surface of the water tower support plate, and the two ends of the supporting diagonal rods are fixedly connected to the column connected to one end of the water tower support plate and the crossbeam connected to the bottom, respectively.
[0013] The beneficial effects of adopting the above-mentioned further scheme are: after the two supporting diagonal rods support the water tower support plate from both sides, they form a stable three-point support structure with the crossbeam, thereby greatly improving the lateral support strength of the water tower support plate. In addition, the two supporting diagonal rods also form a triangular mechanical stability structure with the columns connected to both ends of the water tower support plate and the crossbeam connected to the bottom, further enhancing the deformation resistance of the entire frame.
[0014] Furthermore, the solar water tank support plate has an arc-shaped, U-shaped, or V-shaped structure. The solar water tank support plate is fixed to one side of the top of the frame, and the solar heat exchanger support rod is fixed to the other side of the top of the frame. The height difference between the solar heat exchanger support rod and the solar water tank support plate matches the height difference between the two ends of the solar heat exchanger.
[0015] The beneficial effects of adopting the above-mentioned further solutions are as follows: The solar water tank support plate adopts an arc-shaped, U-shaped, or V-shaped structure, which can better adapt to the rotary structure of the solar water tank, ensuring a tight fit against the outer wall of the solar water tank, effectively enhancing the stability of the solar water tank and preventing shaking. At the same time, it can also adapt to the installation requirements of solar water tanks of different sizes, greatly improving the adaptability and versatility of the device. In addition, the height difference design between the solar water tank support plate and the solar heat exchanger support rod is matched with the actual installation position of the solar heat exchanger and the solar water tank, thereby ensuring that the connecting pipe between the solar heat exchanger and the solar water tank maintains a reasonable slope, which is conducive to the smooth flow of the circulating medium, avoids air blockage or backflow, improves heat exchange efficiency, and facilitates quick on-site positioning and installation, reduces construction errors, and improves the overall system reliability and energy efficiency.
[0016] Furthermore, both the solar water tank support plate and the solar heat exchanger support rod are fixedly connected to the frame through a support frame. The support frame includes a support beam one connected to the solar water tank support plate and a support beam two fixedly connected to the solar heat exchanger support rod. The support beam one is fixedly connected to the top of the column on one side of the frame, and the support beam two is fixedly connected to the top of the column on the other side of the frame. The support beam one and the support beam two are integrally formed, welded, or bolted together.
[0017] The beneficial effects of adopting the above-mentioned further solution are as follows: Support beam one and support beam two are used to connect the solar water tank support plate and the solar heat exchanger support rod to the frame, respectively, so that the solar water tank support plate and the solar heat exchanger support rod can be fixed on both sides of the top of the frame. At the same time, support beam one and support beam two can also connect the columns on both sides of the frame, thereby enhancing the overall lateral stability and structural rigidity of the frame, further improving wind resistance, earthquake resistance and long-term load-bearing capacity, and ensuring the safe operation of the system in complex environments.
[0018] Furthermore, there are multiple solar water tank support plates and water tower support plates, and each of the solar water tank support plates and water tower support plates is arranged sequentially at intervals along the axis parallel to the solar heat exchanger support rod.
[0019] The beneficial effects of adopting the above-mentioned further scheme are: multiple solar water tank support plates and water tower support plates are arranged at intervals along the axial direction, which can effectively distribute the load, avoid local stress concentration, and improve the load uniformity and overall stability of the support structure; at the same time, it can adapt to solar water tanks and water towers of different lengths and specifications, enhance the versatility and installation flexibility of the device, facilitate standardized production and rapid on-site assembly, and further improve construction efficiency and system reliability.
[0020] Furthermore, the number of support frames matches the number of solar water tank trays.
[0021] The beneficial effects of adopting the above-mentioned further solution are: the one-to-one correspondence between the number of support frames and solar water tank trays ensures that each solar water tank tray has independent and stable support, further improving the overall structure's load-bearing capacity and deformation resistance; at the same time, it facilitates modular design and mass production, reduces processing and installation errors, and enhances system integration and maintenance convenience.
[0022] Furthermore, the columns on both sides of the frame correspond one-to-one, and the number and position of each column match the water tower support plate.
[0023] The beneficial effects of adopting the above-mentioned further solution are: the number and position of the columns on both sides of the frame and the water tower support plate are matched, so that the two ends of the water tower support plate can be accurately fixedly connected to the columns on their corresponding sides, thereby ensuring that the water tower support plate is evenly stressed and installed stably, effectively avoiding structural deformation and safety hazards caused by misalignment or deviation, and greatly improving the reliability and safety of the device.
[0024] Furthermore, an X-shaped support mechanism is provided between two adjacent columns on one side of the frame. The X-shaped support mechanism is composed of two intersecting diagonal rods, with the intersection of the two diagonal rods hinged to each other, and the two ends of the two diagonal rods respectively hinged to the two adjacent columns.
[0025] The beneficial effects of adopting the above-mentioned further scheme are: the X-shaped support mechanism uses two intersecting diagonal braces to form multiple triangular support structures between two adjacent columns, which not only ensures that each column remains stable under horizontal and vertical loads, significantly improving the overall rigidity and anti-lateral displacement capacity of the frame, but also serves as a lateral protection barrier, effectively preventing external impacts from damaging the water tower and related structures inside, greatly improving the safety protection level and operational stability of the equipment. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of an integrated support frame for a solar water heater tower according to the present invention; Figure 2 This is a schematic diagram of the integrated bracket for a solar water heater and water tower, and the structure after the solar water heater and water tower are installed.
[0027] The attached diagram lists the components represented by each number as follows: 1. Frame; 11. Column; 12. Horizontal beam; 2. Solar water heater fixing device; 21. Solar water tank support plate; 22. Solar heat exchanger support rod; 3. Water tower fixing device; 31. Water tower support plate; 32. Longitudinal support column; 33. Support diagonal brace; 4. Solar heat exchanger; 5. Support frame; 51. Support beam one; 52. Support beam two; 6. Solar water tank; 7. Water tower; 8. X-shaped support mechanism; 81. Diagonal brace. Detailed Implementation
[0028] The principles and features of this utility model are described below. The examples given are only for explaining this utility model and are not intended to limit the scope of this utility model.
[0029] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0030] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0031] Example 1 like Figures 1-2 As shown, this embodiment provides an integrated support for a solar water heater and water tower, including a frame 1. The top of the frame 1 is provided with a solar water heater fixing device 2, and the bottom of the frame 1 is provided with a water tower fixing device 3. The solar water heater fixing device 2 includes a solar water tank support plate 21 and a solar heat exchanger support rod 22 fixedly connected to the frame 1. The water tower fixing device 3 includes a water tower support plate 31 fixedly connected to the frame 1.
[0032] In this embodiment, the solar water tank 6 and solar heat exchanger 4 in the solar water heater are fixedly connected to the solar water tank support plate 21 and solar heat exchanger support rod 22 in the solar water heater fixing device 2 by welding or bolting, respectively. The water tower 7 is fixedly connected to the water tower support plate 31 in the water tower fixing device 3 by welding or bolting. By integrating the solar water heater and water tower 7 into the same frame 1, the equipment installation is integrated, which not only reduces manufacturing, transportation, and installation costs, but also makes it suitable for compact layouts on roofs of various terrains. At the same time, by fixing the solar water heater to the top of the frame 1 through the solar water heater fixing device 2, the top space is more open and less likely to be blocked, allowing for full sunlight reception and greatly improving heat collection efficiency. The water tower 7 is supported and fixed by the water tower support plate 31, allowing the water tower 7 to be installed at the bottom of the frame 1, which also makes full use of the space below the solar water heater, greatly reducing space occupation. In addition, the water tower 7 can also act as a counterweight, effectively lowering the overall center of gravity of the equipment, greatly enhancing the stability of the equipment under external forces such as strong winds or earthquakes, making the entire equipment structure more stable and significantly improving safety performance.
[0033] Example 2 Based on Embodiment 1, in this embodiment, the water tower support plate 31 is an arc-shaped, U-shaped or V-shaped structure, and the two ends of the water tower support plate 31 are fixedly connected to the columns 11 on both sides of the frame 1, and the bottom of the water tower support plate 31 is fixedly connected to the crossbeam 12 at the bottom of the frame 1.
[0034] In this embodiment, the water tower support plate 31 adopts an arc-shaped, U-shaped, or V-shaped structure, which can better adapt to the rotating structure of the water tower 7, ensuring that it can fit tightly against the outer wall of the water tower 7, effectively enhancing the stability of the water tower 7 and preventing shaking. At the same time, it can also adapt to the installation requirements of water towers 7 of different sizes, greatly improving the adaptability and versatility of the device.
[0035] Example 3 Based on Embodiment 2, in this embodiment, a longitudinal support column 32 is provided at the bottom center of the water tower support plate 31. The longitudinal support column 32 is vertically fixed to the bottom of the crossbeam 12 corresponding to the bottom of the water tower support plate 31, and the bottom end of the longitudinal support column 32 is flush with the bottom end of the column 11.
[0036] In this embodiment, the longitudinal support column 32 is used to further enhance the longitudinal support strength of the bottom crossbeam 12 of the water tower support plate 31, thereby effectively enhancing the load-bearing capacity and structural stability of the water tower support plate 31, preventing the water tower support plate 31 from deforming or the crossbeam 12 from sagging due to the concentrated weight of the water tower 7. The bottom ends of the longitudinal support column 32 and the column 11 are flush, so that the longitudinal support column 32 and the column 11 form a continuous vertical load-bearing system, which makes it easy for the frame 1 to be placed stably on the roof or ground foundation, avoiding tilting or settlement caused by uneven support.
[0037] Example 4 Based on Embodiment 3, in this embodiment, the bottom center of the water tower support plate 31 is provided with supporting diagonal rods 33 on both sides. The supporting diagonal rods 33 abut against the bottom surface of the water tower support plate 31, and the two ends of the supporting diagonal rods 33 are fixedly connected to the column 11 connected to one end of the water tower support plate 31 and the crossbeam 12 connected to the bottom, respectively.
[0038] In this embodiment, the two supporting diagonal rods 33 support the water tower support plate 31 from both sides and form a stable three-point support structure with the crossbeam 12, thereby greatly improving the lateral support strength of the water tower support plate 31. In addition, the two supporting diagonal rods 33 also form a triangular mechanical stability structure with the columns 11 connected to both ends of the water tower support plate 31 and the crossbeam 12 connected to the bottom, further enhancing the deformation resistance of the entire frame 1.
[0039] Example 5 Based on Embodiment 1, in this embodiment, the solar water tank support plate 21 has an arc-shaped, U-shaped or V-shaped structure. The solar water tank support plate 21 is fixed to one side of the top of the frame 1, and the solar heat exchanger support rod 22 is fixed to the other side of the top of the frame 1. The height difference between the solar heat exchanger support rod 22 and the solar water tank support plate 21 matches the height difference between the two ends of the solar heat exchanger 4.
[0040] In this embodiment, the solar water tank support plate adopts an arc, U-shaped, or V-shaped structure, which can better adapt to the rotary structure of the solar water tank 6, ensuring a tight fit against the outer wall of the solar water tank 6, effectively enhancing the stability of the solar water tank 6 and preventing shaking. At the same time, it can also adapt to the installation requirements of solar water tanks 6 of different sizes, greatly improving the adaptability and versatility of the device. In addition, the height difference design between the solar water tank support plate 21 and the solar heat exchanger support rod 22 is matched with the actual installation height of the solar heat exchanger 4 and the solar water tank 6, thereby ensuring that the connecting pipe between the solar heat exchanger 4 and the solar water tank 6 maintains a reasonable slope, which is conducive to the smooth flow of the circulating medium, avoids air blockage or backflow, improves heat exchange efficiency, and facilitates quick on-site positioning and installation, reduces construction errors, and improves the overall system reliability and energy efficiency.
[0041] Example 6 Based on Embodiment 5, in this embodiment, the solar water tank support plate 21 and the solar heat exchanger support rod 22 are both fixedly connected to the frame 1 through the support frame 5. The support frame 5 includes a first support beam 51 connected to the solar water tank support plate 21 and a second support beam 52 fixedly connected to the solar heat exchanger support rod 22. The first support beam 51 is fixedly connected to the top of the column 11 on one side of the frame 1, and the second support beam 52 is fixedly connected to the top of the column 11 on the other side of the frame 1. The first support beam 51 and the second support beam 52 are integrally formed, welded or bolted together.
[0042] In this embodiment, support beam 51 and support beam 52 are used to connect the solar water tank support plate 21 and the solar heat exchanger support rod 22 to the frame 1, respectively, so that the solar water tank support plate 21 and the solar heat exchanger support rod 22 can be fixed on the top two sides of the frame 1. At the same time, support beam 51 and support beam 52 can also connect the columns 11 on both sides of the frame 1, thereby enhancing the overall lateral stability and structural rigidity of the frame 1, further improving wind resistance, earthquake resistance and long-term load-bearing capacity, and ensuring the safe operation of the system in complex environments.
[0043] Example 7 Based on Example 6, in this example, there are multiple solar water tank support plates 21 and water tower support plates 31, and each of the solar water tank support plates 21 and water tower support plates 31 is arranged sequentially at intervals along the axis parallel to the solar heat exchanger support rod 22.
[0044] In this embodiment, multiple solar water tank support plates 21 and water tower support plates 31 are arranged at intervals along the axial direction, which can effectively distribute the load, avoid local stress concentration, and improve the load uniformity and overall stability of the support structure. At the same time, it can adapt to solar water tanks 6 and water towers 7 of different lengths, enhance the versatility and installation flexibility of the device, facilitate standardized production and rapid on-site assembly, and further improve construction efficiency and system reliability.
[0045] Example 8 Based on Example 7, in this example, the number of support frames 5 matches the number of solar water tank trays 21.
[0046] In this embodiment, the number of support frames 5 and solar water tank trays 21 are in one-to-one correspondence, ensuring that each solar water tank tray 21 has independent and stable support, further improving the load-bearing capacity and deformation resistance of the overall structure; at the same time, it facilitates modular design and mass production, reduces processing and installation errors, and enhances system integration and maintenance convenience.
[0047] Example 9 Based on Embodiment 2, in this embodiment, the columns 11 on both sides of the frame 1 correspond one-to-one, and the number and position of each column 11 match the water tower support plate 31.
[0048] In this embodiment, the number and position of the columns 11 on both sides of the frame 1 and the water tower support plate 31 are matched, so that the two ends of the water tower support plate 31 can be accurately fixedly connected to the columns 11 on their corresponding sides, thereby ensuring that the water tower support plate 31 is subjected to uniform force and is installed stably, effectively avoiding structural deformation and safety hazards caused by misalignment or deviation, and greatly improving the reliability and safety of the device.
[0049] Example 10 Based on embodiment 9, in this embodiment, an X-shaped support mechanism 8 is provided between two adjacent columns 11 on one side of the frame 1. The X-shaped support mechanism 8 is formed by two intersecting diagonal rods 81. The intersection point of the two diagonal rods 81 is hinged to each other, and the two ends of the two diagonal rods 81 are respectively hinged to the two adjacent columns 11.
[0050] In this embodiment, the X-shaped support mechanism 8 uses two intersecting diagonal braces 81 to form multiple triangular support structures between two adjacent columns 11. This not only ensures that each column 11 remains stable under horizontal and vertical loads, significantly improving the overall rigidity and lateral displacement resistance of the frame, but also serves as a lateral protection barrier, effectively preventing external impacts from damaging the water tower 7 and related structures inside, thus greatly improving the safety protection level and operational stability of the equipment.
[0051] The working principle of this utility model is as follows: During installation, the frame 1 is first placed in the preset installation position and leveled and fixed. Then, the solar water tank 6 and solar heat exchanger 4 in the solar water heater are fixedly connected to the solar water tank support plate 21 and solar heat exchanger support rod 22 in the solar water heater fixing device 2 by welding or bolting. Finally, the water tower 7 is fixedly connected to the water tower support plate 31 in the water tower fixing device 3 by welding or bolting. This utility model integrates the solar water heater and the water tower 7 into the same frame 1, realizing integrated equipment installation. This not only reduces manufacturing, transportation, and installation costs but also makes it suitable for compact layouts on roofs of various terrains. At the same time, the water tower 7 is supported and fixed by the water tower support plate 31, allowing the water tower 7 to be installed at the bottom of the frame 1. This also makes full use of the space below the solar water heater, greatly reducing space occupation. In addition, the water tower 7 can also act as a counterweight, effectively lowering the overall center of gravity of the equipment and greatly enhancing the stability of the equipment under external forces such as strong winds or earthquakes. This makes the entire equipment structure more stable and significantly improves safety performance.
[0052] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0053] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0054] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An integrated support frame for a solar water heater tower, characterized in that, The device includes a frame (1), a solar water heater fixing device (2) on the top of the frame (1), a water tower fixing device (3) at the bottom of the frame (1), the solar water heater fixing device (2) includes a solar water tank support plate (21) and a solar heat exchanger support rod (22) fixedly connected to the frame (1), and the water tower fixing device (3) includes a water tower support plate (31) fixedly connected to the frame (1).
2. The integrated support frame for a solar water heater tower according to claim 1, characterized in that, The water tower support plate (31) is an arc-shaped, U-shaped or V-shaped structure. The two ends of the water tower support plate (31) are fixedly connected to the columns (11) on both sides of the frame (1), and the bottom of the water tower support plate (31) is fixedly connected to the crossbeam (12) at the bottom of the frame (1).
3. The integrated support frame for a solar water heater tower according to claim 2, characterized in that, The water tower support plate (31) has a longitudinal support column (32) at the bottom center. The longitudinal support column (32) is vertically fixed to the bottom of the crossbeam (12) corresponding to the bottom of the water tower support plate (31). The bottom end of the longitudinal support column (32) is flush with the bottom end of the column (11).
4. The integrated support frame for a solar water heater tower according to claim 3, characterized in that, The bottom center of the water tower support plate (31) is provided with support diagonal rods (33) on both sides. The support diagonal rods (33) abut against the bottom surface of the water tower support plate (31). The two ends of the support diagonal rods (33) are fixedly connected to the column (11) connected to one end of the water tower support plate (31) and the crossbeam (12) connected to the bottom.
5. The integrated support frame for a solar water heater tower according to claim 1, characterized in that, The solar water tank support plate (21) is an arc-shaped, U-shaped or V-shaped structure. The solar water tank support plate (21) is fixed on one side of the top of the frame (1). The solar heat exchanger support rod (22) is fixed on the other side of the top of the frame (1). The height difference between the solar heat exchanger support rod (22) and the solar water tank support plate (21) matches the height difference between the two ends of the solar heat exchanger (4).
6. The integrated support frame for a solar water heater tower according to claim 5, characterized in that, The solar water tank support plate (21) and the solar heat exchanger support rod (22) are both fixedly connected to the frame (1) through the support frame (5). The support frame (5) includes a support beam one (51) connected to the solar water tank support plate (21) and a support beam two (52) fixedly connected to the solar heat exchanger support rod (22). The support beam one (51) is fixedly connected to the top of the column (11) on one side of the frame (1), and the support beam two (52) is fixedly connected to the top of the column (11) on the other side of the frame (1). The support beam one (51) and the support beam two (52) are integrally formed, welded or bolted together.
7. The integrated support frame for a solar water heater tower according to claim 6, characterized in that, There are multiple solar water tank support plates (21) and water tower support plates (31), and each of the solar water tank support plates (21) and water tower support plates (31) is arranged sequentially at intervals along the axis parallel to the solar heat exchanger support rod (22).
8. The integrated support frame for a solar water heater tower according to claim 7, characterized in that, The number of the support frame (5) matches the number of the solar water tank trays (21).
9. The integrated support frame for a solar water heater tower according to claim 2, characterized in that, The columns (11) on both sides of the frame (1) correspond one-to-one, and the number and position of each column (11) match the water tower support plate (31).
10. The integrated support frame for a solar water heater tower according to claim 9, characterized in that, An X-shaped support mechanism (8) is provided between two adjacent columns (11) on one side of the frame (1). The X-shaped support mechanism (8) is formed by two intersecting diagonal rods (81). The intersection of the two diagonal rods (81) is hinged to each other, and the two ends of the two diagonal rods (81) are respectively hinged to the two adjacent columns (11).