Pavilion structure of photovoltaic tile BIPV building
By incorporating photovoltaic tiles into the building's structure, and utilizing a stainless steel frame and PVC pipe drainage system, the problems of roof cracking and leakage, as well as material aging, were solved. This approach enabled the utilization of solar energy and structural reinforcement, while also enhancing the building's aesthetics and lifespan.
Patent Information
- Application Number
- CN202520479641.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-18
AI Technical Summary
The roofs of ordinary farmhouses or villas with brick and concrete structures are prone to cracking, leaks, and aging. Furthermore, the drainage pipes and steel structures age and are damaged under prolonged exposure to wind and sun, affecting their appearance and lifespan.
Design a pavilion structure for BIPV (Building Integrated Photovoltaics) buildings using photovoltaic tiles. Employ a stainless steel frame and PVC pipe drainage system, reinforced with grout to increase structural strength. PVC pipes are embedded in the stainless steel support columns to protect against drainage. Photovoltaic tiles are installed on the roof and outer frame to utilize solar energy.
It improves the durability and aesthetics of the pavilion structure, while also enabling the utilization of solar energy, thus enhancing the practicality and protective effect of the building.
Smart Images

Figure CN223880839U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of building, concretely is a pavilion structure of application photovoltaic tile BIPV building. BACKGROUND
[0002] Ordinary farmyard house building or villa is mostly one to two three layer brick mixed structure, pours the flat roof or slope roof by cement, and long time wind and sun exposure, easy to appear roof cracking and water leakage phenomenon and house overall aging phenomenon, and its aesthetic degree is also greatly discounted, influences house overall service life.
[0003] The pavilion is not only a part of Chinese garden building, but also bears many social and cultural activities, and the utility and beauty of the building are equally important and necessary, the BIPV building design innovatively combines the ancient building pavilion structure garden design, builds a photovoltaic power generation integrated BIPV building of pavilion structure on the basis of one to two three layer brick mixed structure, builds the roof of BIPV building on the basis of the original area and extends the eave 1-3 meters to the periphery, achieves the effect of overall protection of house full coverage, and the appearance beautification degree and the utility of the overall protection of house of the lengthened kiss beast ridge and the set beast ridge are greatly improved.
[0004] Ordinary building is provided with a drain pipe on the surface, but the drainage is easy to age and damage under the condition of long time wind and sun exposure, and the steel in the building structure will also rust with the elapse of time, resulting in that the rainwater pipe will also age and break down and cannot be used under the condition of long time sun exposure and rain, therefore, a BIPV photovoltaic panel combined pavilion is designed, and the pavilion is internally characterized by pouring mortar and burying the rainwater pipe therein, the pavilion structure is strengthened and the durability of the material is improved, so as to solve the problems of long time utilization of the roof and rapid material loss with the elapse of time, so that the pavilion structure of application photovoltaic tile BIPV building is needed. SUMMARY
[0005] In view of the deficiencies of the prior art, the utility model provides a pavilion structure of application photovoltaic tile BIPV building, which solves the technical problems in the background art.
[0006] In order to achieve the above object, the utility model discloses a pavilion structure of application photovoltaic tile BIPV building through the following technical schemes, a roof stainless steel frame and eave stainless steel frame and multiple pairs of stainless steel support column are all equipped with cavities, two pairs of stainless steel support column are installed on the lower wall of roof stainless steel frame, the eave stainless steel frame is sleeved on the outer wall of roof stainless steel frame, the cavity is equipped with reinforcing assembly, the stainless steel support column is equipped with drainage assembly, and the roof stainless steel frame and eave stainless steel frame are equipped with photovoltaic tile assembly on the upper end,
[0007] The reinforcing assembly includes reinforcing ribs, and the reinforcing ribs are arranged in the cavity.
[0008] Preferably, the drainage assembly includes a PVC pipe, the PVC pipe is inserted into the stainless steel support column and located at one side of the cavity, one end of the PVC pipe close to the roof stainless steel frame is provided with a water inlet, and the other end of the PVC pipe away from the water inlet is provided with a drain outlet.
[0009] Preferably, the lower wall of the stainless steel support column is provided with a base, and the base is provided with an expansion bolt at the lower end.
[0010] Preferably, the photovoltaic tile assembly includes photovoltaic tiles, and the photovoltaic tiles are installed on the upper end of the roof stainless steel frame and the eave stainless steel frame.
[0011] Preferably, the roof stainless steel frame is provided with a kiss ridge beam and a sleeve ridge beam.
[0012] Beneficial effects
[0013] The utility model provides a pavilion structure of application photovoltaic tile BIPV building, the utility model discloses in using, because PVC pipe is buried in the stainless steel support column, at this time can pass through stainless steel support column and protect PVC pipe, if the water is produced, the top of roof stainless steel frame can pass through water inlet and flow to the inside of PVC pipe and is discharged through drain outlet, because roof stainless steel frame and eave stainless steel frame and stainless steel support column all carry out mortar injection through the grouting top mouth and grouting bottom mouth of stainless steel cavity, and the inside of stainless steel support column is equipped with reinforcing rib and can greatly strengthen the structural strength of pavilion, and the pavilion lower edge is spliced with the lower insertion board through the mortise and tenon structure, so that the pavilion eave cap increases the beautiful effect, and the upper end of roof stainless steel frame and eave stainless steel frame is equipped with photovoltaic tile, can use solar energy through photovoltaic tile, so as to convert solar energy into electric energy, to realize the utilization of energy and the increase of pavilion strength structure. Attached Figure Description
[0014] Fig. 1 This is a schematic diagram of the main view of a pavilion structure for a BIPV building using photovoltaic tiles, as described in this utility model.
[0015] Fig. 2 This is a top view schematic diagram of the pavilion structure of a BIPV building using photovoltaic tiles as described in this utility model.
[0016] Fig. 3 This is a schematic diagram of the internal structure of the stainless steel support column of the pavilion structure of a BIPV building using photovoltaic tiles, as described in this utility model.
[0017] In the diagram: 1. Stainless steel frame for the roof; 2. Stainless steel frame for the outer eaves; 3. Lower insert plate; 4. Base; 5. Expansion bolts; 6. Stainless steel support column; 7. Drain outlet; 8. PVC pipe; 9. Water inlet; 10. Photovoltaic tile; 11. Grouting top opening; 12. Grouting bottom opening; 13. Reinforcing rib; 14. Sound-absorbing cotton net; 15. Ridge ornament; 16. Ridge ornament. Detailed Implementation
[0018] 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.
[0019] Please see Figs. 1-3 This utility model provides a technical solution: a pavilion structure for BIPV (Building Integrated Photovoltaics) buildings using photovoltaic tiles, including a roof stainless steel frame 1, an outer eaves stainless steel frame 2, and multiple pairs of stainless steel support columns 6. The roof stainless steel frame 1, the outer eaves stainless steel frame 2, and the multiple pairs of stainless steel support columns 6 are all provided with cavities. Two pairs of stainless steel support columns 6 are installed on the lower wall of the roof stainless steel frame 1, and the outer eaves stainless steel frame 2 is fitted onto the outer wall of the roof stainless steel frame 1. Reinforcing components are provided inside the cavities, and drainage components are provided inside the stainless steel support columns 6. Photovoltaic tile components are installed on the upper ends of the roof stainless steel frame 1 and the outer eaves stainless steel frame 2.
[0020] The reinforcement component includes reinforcing ribs 13, and a plurality of the reinforcing ribs 13 are disposed inside the cavity. The cavity is provided with a grouting top opening 11 and a grouting bottom opening 12.
[0021] The roof stainless steel frame 1, the outer eave stainless steel frame 2 and the stainless steel support column 6 are all grouted through the grouting top opening 11 and the grouting bottom opening 12 of the stainless steel cavity, and the stainless steel support column 6 is internally provided with the reinforcing rib 13, so that the structural strength of the pavilion is greatly enhanced.
[0022] The drainage assembly comprises the PVC pipe 8 which is inserted into the stainless steel support column 6 and located at one side of the cavity, the PVC pipe 8 is provided with the water inlet 9 at one end close to the roof stainless steel frame 1, the PVC pipe 8 is provided with the water outlet 7 at one end away from the water inlet 9, and the PVC pipe 8 is installed with the sound-absorbing cotton net 14.
[0023] The PVC pipe 8 is embedded in the stainless steel support column 6, so that the PVC pipe 8 is protected by the stainless steel support column 6, if water accumulation occurs, the top end of the roof stainless steel frame 1 can flow water into the PVC pipe 8 through the water inlet 9 and discharge the water through the water outlet 7.
[0024] The bottom seat 4 is installed at the lower wall of the stainless steel support column 6, and the expansion bolt 5 is installed at the lower end of the bottom seat 4.
[0025] The photovoltaic tile assembly comprises the photovoltaic tile 10 which is installed at the upper end of the roof stainless steel frame 1 and the outer eave stainless steel frame 2, and the lower insertion plate 3 is installed at the lower end of the outer eave stainless steel frame 2 through the mortise and tenon structure.
[0026] The kiss beast ridge beam 15 and the sleeve beast ridge beam 16 are installed on the roof stainless steel frame 1.
[0027] The detailed connection means is the technology known in the art, and the working principle and process are mainly introduced below, and the specific work is as follows.
[0028] Embodiment: The pavilion in the traditional technology is only a pavilion structure, and is provided with a drainage pipe on the surface, but the drainage is easy to be damaged in the case of long-time wind and sun, and the steel in the building structure will also rust with the passage of time, and in the case of long-time sun and rain, solar energy cannot be collected and utilized, therefore, the BIPV photovoltaic board combined pavilion is designed, and the pavilion is internally provided with the characteristics of grouting mortar and pipeline embedding, so that the pavilion structure is strengthened and the durability of the material is improved.
[0029] In use, since the PVC pipe 8 is buried in the stainless steel support column 6, at this time the PVC pipe 8 can be protected by the stainless steel support column 6, if water accumulation occurs, the top end of the ceiling stainless steel frame 1 can flow water into the PVC pipe 8 through the water inlet 9 and discharge through the water outlet 7, since the ceiling stainless steel frame 1 and the eaves stainless steel frame 2 and the stainless steel support column 6 are all grouted by the grouting top opening 11 and the grouting bottom opening 12 of the stainless steel cavity, and the stainless steel support column 6 is internally provided with the reinforcing rib 13, which can greatly enhance the structural strength of the pavilion, the pavilion is spliced with the lower plug-in plate 3 through the mortise and tenon structure along the lower edge, so that the pavilion increases the aesthetic effect, and the ceiling stainless steel frame 1 and the eaves stainless steel frame 2 are provided with the photovoltaic tile 10 at the upper end, which can utilize solar energy through the photovoltaic tile 10, so as to convert solar energy into electric energy, so as to realize the utilization of energy and the increase of the strength structure of the pavilion.
[0030] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying that there is any such relationship or order between such entities or actions.
Claims
1. A gazebo structure applied with a building of a photovoltaic tile (BIPV), comprising a roof stainless steel frame (1) and an outer eave stainless steel frame (2) and a plurality of pairs of stainless steel support columns (6), characterized in that, The ceiling stainless steel frame (1) and the outer eaves stainless steel frame (2) and a plurality of pairs of stainless steel support columns (6) are internally provided with cavities, two pairs of the stainless steel support columns (6) are installed on the lower wall surface of the ceiling stainless steel frame (1), the outer eaves stainless steel frame (2) is sleeved on the outer wall surface of the ceiling stainless steel frame (1), the cavity is internally provided with a reinforcing assembly, the stainless steel support column (6) is internally provided with a drainage assembly, and the ceiling stainless steel frame (1) and the outer eaves stainless steel frame (2) are provided with photovoltaic tile assemblies on the upper ends. The reinforcing assembly comprises a reinforcing rib (13), and a plurality of reinforcing ribs (13) are arranged in the cavity.
2. A gazebo structure using a photovoltaic tile (BIPV) building according to claim 1, wherein, The drainage assembly comprises a PVC pipe (8), the PVC pipe (8) is inserted into the stainless steel support column (6) and located on one side of the cavity, one end of the PVC pipe (8) close to the ceiling stainless steel frame (1) is provided with a water inlet (9), and one end of the PVC pipe (8) away from the water inlet (9) is provided with a drain (7), and the PVC pipe (8) is provided with a sound-absorbing cotton net (14).
3. The gazebo structure of claim 1, wherein, The lower wall surface of the stainless steel support column (6) is provided with a base (4), and the lower end of the base (4) is provided with an expansion bolt (5).
4. The gazebo structure of claim 1, wherein, The photovoltaic tile assembly comprises a photovoltaic tile (10), and the photovoltaic tile (10) is installed on the upper end of the ceiling stainless steel frame (1) and the outer eaves stainless steel frame (2), respectively.
5. The gazebo structure of claim 1, wherein, The ceiling stainless steel frame (1) is provided with a kiss ridge beam (15) and a sleeve ridge beam (16), respectively.