CN221646199U - Photovoltaic roof for green building - Google Patents

Photovoltaic roof for green building Download PDF

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Publication number
CN221646199U
CN221646199U CN202323363579.1U CN202323363579U CN221646199U CN 221646199 U CN221646199 U CN 221646199U CN 202323363579 U CN202323363579 U CN 202323363579U CN 221646199 U CN221646199 U CN 221646199U
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mounting frame
vaulting pole
building
frame
photovoltaic
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冯炬星
冯晓辉
肖国涛
卢毅斯
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China Light Guangzhou Design Engineering Co ltd
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China Light Guangzhou Design Engineering Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/10Photovoltaic [PV]
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Abstract

本申请涉及一种绿色建筑用光伏屋顶,其包括安装框架和多个光伏板,所述光伏板安装于安装框架,还包括支撑架和升降件,所述支撑架用于安装在建筑顶部,所述安装框架转动安装于支撑架,所述升降件用于控制安装框架旋转,所述升降件设置为液压缸,所述液压缸用于与建筑顶部相固定,所述液压缸活动端转动安装有连接块,所述连接块滑移连接于安装框架。本申请具有提高光伏屋顶的使用性能的效果。

The present application relates to a photovoltaic roof for green buildings, which includes a mounting frame and a plurality of photovoltaic panels, the photovoltaic panels are mounted on the mounting frame, and also includes a support frame and a lifting member, the support frame is used to be mounted on the top of the building, the mounting frame is rotatably mounted on the support frame, the lifting member is used to control the rotation of the mounting frame, the lifting member is configured as a hydraulic cylinder, the hydraulic cylinder is used to be fixed to the top of the building, the movable end of the hydraulic cylinder is rotatably mounted with a connecting block, and the connecting block is slidably connected to the mounting frame. The present application has the effect of improving the performance of the photovoltaic roof.

Description

一种绿色建筑用光伏屋顶Photovoltaic roof for green building

技术领域Technical Field

本申请涉及绿色建筑的领域,尤其是涉及一种绿色建筑用光伏屋顶。The present application relates to the field of green buildings, and in particular to a photovoltaic roof for green buildings.

背景技术Background Art

绿色建筑,具有节约资源、保护环境、减少污染等优点,能够最大限度的实现人与自然和谐共生。通常,绿色建筑屋顶会设置光伏屋顶,光伏无屋顶包括安装框架和多个光伏板,安装框架连接于建筑顶部,光伏板安装于安装框架。Green buildings have the advantages of saving resources, protecting the environment, reducing pollution, etc., and can maximize the harmonious coexistence of man and nature. Usually, a photovoltaic roof is installed on the roof of a green building. The photovoltaic roof includes a mounting frame and multiple photovoltaic panels. The mounting frame is connected to the top of the building, and the photovoltaic panels are installed on the mounting frame.

但在实际使用时,由于日照方向的变化,此时安装框架及光伏板的朝向难以根据太阳的所处方向进行调节,进而使得光伏板受到光照的效果较差, 从而使得光伏屋顶的使用性能还有待提高。However, in actual use, due to changes in the direction of sunlight, it is difficult to adjust the orientation of the mounting frame and photovoltaic panels according to the direction of the sun, which results in poor lighting effects on the photovoltaic panels, and the performance of the photovoltaic roof needs to be improved.

实用新型内容Utility Model Content

为了提高光伏屋顶的使用性能,本申请提供一种绿色建筑用光伏屋顶。In order to improve the performance of photovoltaic roofs, the present application provides a photovoltaic roof for green buildings.

本申请提供的一种绿色建筑用光伏屋顶采用如下的技术方案:The photovoltaic roof for green buildings provided in this application adopts the following technical solution:

一种绿色建筑用光伏屋顶,包括安装框架和多个光伏板,所述光伏板安装于安装框架,还包括支撑架和升降件,所述支撑架用于安装在建筑顶部,所述安装框架转动安装于支撑架,所述升降件用于控制安装框架旋转。A photovoltaic roof for a green building comprises a mounting frame and a plurality of photovoltaic panels, wherein the photovoltaic panels are mounted on the mounting frame, a supporting frame and a lifting member, wherein the supporting frame is used to be mounted on the top of the building, the mounting frame is rotatably mounted on the supporting frame, and the lifting member is used to control the rotation of the mounting frame.

通过采用上述技术方案,使用时,设置的支撑架能够对安装框架和光伏板整体做支撑,随后能够通过升降件控制安装框架旋转,进而能够根据日照方向调节光伏板朝向,从而增加光伏板接受到的光照效果,提高光伏屋顶的使用性能。By adopting the above technical solution, when in use, the set support frame can support the installation frame and the photovoltaic panel as a whole, and then the installation frame can be controlled to rotate through the lifting parts, and then the direction of the photovoltaic panel can be adjusted according to the direction of sunlight, thereby increasing the lighting effect received by the photovoltaic panel and improving the performance of the photovoltaic roof.

可选的,所述升降件设置为液压缸,所述液压缸用于与建筑顶部相固定,所述液压缸活动端转动安装有连接块,所述连接块滑移连接于安装框架。Optionally, the lifting member is configured as a hydraulic cylinder, which is used to be fixed to the top of the building, and a connecting block is rotatably mounted on the movable end of the hydraulic cylinder, and the connecting block is slidably connected to the mounting frame.

通过采用上述技术方案,使用时,控制液压缸运行,进而在连接块的作用下,能够对安装框架进行推动或牵引,实现控制安装框架旋转的目的。By adopting the above technical solution, when in use, the hydraulic cylinder is controlled to operate, and then under the action of the connecting block, the installation frame can be pushed or pulled, thereby achieving the purpose of controlling the rotation of the installation frame.

可选的,所述液压缸设置有多个,且多个液压缸平行安装框架的转动轴线方向分布设置。Optionally, a plurality of hydraulic cylinders are provided, and the plurality of hydraulic cylinders are distributed and arranged parallel to the direction of the rotation axis of the mounting frame.

通过采用上述技术方案,设置的多个液压缸能够同时对安装框架做支撑,进而在控制安装框架旋转时,相对较为稳定。By adopting the above technical solution, the multiple hydraulic cylinders can support the installation frame at the same time, so that the installation frame is relatively stable when controlling the rotation.

可选的,所述安装框架设置有与连接块相卡接的滑槽,所述滑槽为小端开口的阶梯槽或燕尾槽。Optionally, the mounting frame is provided with a slide groove engaged with the connecting block, and the slide groove is a stepped groove or a dovetail groove with a small end opening.

通过采用上述技术方案,液压缸推动安装框架旋转时,设置的连接块能够在滑槽内滑移且保持与滑槽相卡接,进而不易对安装框架的旋转造成限制,确保使用效果。By adopting the above technical solution, when the hydraulic cylinder pushes the installation frame to rotate, the arranged connecting block can slide in the slide groove and remain engaged with the slide groove, thereby not easily restricting the rotation of the installation frame, thereby ensuring the use effect.

可选的,所述支撑架包括连接梁和若干支撑杆,所述支撑杆设置为伸缩杆且用于与建筑顶部相连接,所述连接梁连接于支撑杆,所述安装框架转动连接于连接梁。Optionally, the support frame includes a connecting beam and a plurality of supporting rods, the supporting rods are configured as telescopic rods and are used to connect to the top of the building, the connecting beams are connected to the supporting rods, and the mounting frame is rotatably connected to the connecting beams.

通过采用上述技术方案,安装时,将安装框架与连接梁相连接,随后能够对支撑杆的长度进行调节,进而便于根据实际需求调节安装框架及光伏板整体的安装高度,增加使用效果。By adopting the above technical solution, during installation, the installation frame is connected to the connecting beam, and then the length of the support rod can be adjusted, thereby facilitating the adjustment of the installation height of the installation frame and the photovoltaic panel as a whole according to actual needs, thereby increasing the use effect.

可选的,所述支撑杆包括竖向延伸的第一撑杆和第二撑杆,所述第一撑杆用于与建筑顶部相连接,所述第二撑杆穿设并滑移连接于第一撑杆,所述第二撑杆与连接梁相固定,所述支撑杆还包括同时穿设于第一撑杆和第二撑杆的调节螺栓,所述第二撑杆开设有多个使调节螺栓穿过的调节孔,多个所述调节孔沿竖向分布设置。Optionally, the support rod includes a first support rod and a second support rod extending vertically, the first support rod is used to connect to the top of the building, the second support rod is passed through and slidably connected to the first support rod, the second support rod is fixed to the connecting beam, and the support rod also includes an adjustment bolt that passes through the first support rod and the second support rod at the same time, the second support rod is provided with a plurality of adjustment holes for the adjustment bolts to pass through, and the plurality of adjustment holes are distributed vertically.

通过采用上述技术方案,将第二撑杆相对第一撑杆滑移,随后固定调节螺栓,使得调节螺栓穿设于所在位置的调节孔,进而实现支撑杆的长度调节,实现对支撑架的高度调节。By adopting the above technical solution, the second support rod is slid relative to the first support rod, and then the adjusting bolt is fixed so that the adjusting bolt passes through the adjusting hole at the location, thereby adjusting the length of the support rod and adjusting the height of the support frame.

可选的,所述第一撑杆固定连接有底板,所述底板用于抵接并固定于建筑顶部。Optionally, the first support rod is fixedly connected to a bottom plate, and the bottom plate is used to abut and be fixed to the top of the building.

通过采用上述技术方案,设置的底板使得支撑杆与建筑顶部的抵接效果更佳,使得支撑杆安装的稳固性更佳。By adopting the above technical solution, the provided bottom plate makes the abutment effect between the support rod and the top of the building better, making the installation of the support rod more stable.

可选的,所述底板设置有多个支撑肋板,所述支撑肋板同时固定连接于底板和第一撑杆。Optionally, the bottom plate is provided with a plurality of supporting ribs, and the supporting ribs are fixedly connected to the bottom plate and the first support rod at the same time.

通过采用上述技术方案,设置的支撑肋板能够对支撑杆整体做支撑,增加支撑杆承受载荷的能力,增加使用效果。By adopting the above technical solution, the arranged supporting ribs can support the supporting rod as a whole, thereby increasing the load-bearing capacity of the supporting rod and improving the use effect.

综上所述,本申请包括以下至少一种有益技术效果:In summary, the present application includes at least one of the following beneficial technical effects:

1.使用时,能够通过升降件控制安装框架旋转,进而能够根据日照方向调节光伏板朝向,从而增加光伏板接受到的光照效果,提高光伏屋顶的使用性能。1. When in use, the installation frame can be controlled to rotate through the lifting parts, and then the direction of the photovoltaic panel can be adjusted according to the direction of sunlight, thereby increasing the lighting effect received by the photovoltaic panel and improving the performance of the photovoltaic roof.

2.安装时,能够对支撑杆的长度进行调节,进而便于根据实际需求调节安装框架及光伏板整体的安装高度,增加使用效果。2. During installation, the length of the support rod can be adjusted, so that the installation height of the installation frame and the photovoltaic panel as a whole can be adjusted according to actual needs, thereby increasing the use effect.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

图1是本申请实施例的结构示意图;FIG1 is a schematic diagram of the structure of an embodiment of the present application;

图2是本申请实施例滑槽处的局部爆炸结构示意图;FIG2 is a schematic diagram of a partial explosion structure of a chute in an embodiment of the present application;

图3是图1中A部分的放大结构示意图。FIG. 3 is an enlarged structural schematic diagram of part A in FIG. 1 .

附图标记说明:1、安装框架;11、滑槽;2、光伏板;3、支撑架;31、连接梁;32、支撑杆;321、第一撑杆;322、第二撑杆;323、调节螺栓;33、底板;34、支撑肋板;4、液压缸;5、连接块。Explanation of the accompanying drawings: 1. Mounting frame; 11. Slide groove; 2. Photovoltaic panel; 3. Support frame; 31. Connecting beam; 32. Support rod; 321. First support rod; 322. Second support rod; 323. Adjusting bolt; 33. Bottom plate; 34. Support rib; 4. Hydraulic cylinder; 5. Connecting block.

具体实施方式DETAILED DESCRIPTION

以下结合附图1-3对本申请作进一步详细说明。The present application is further described in detail below in conjunction with Figures 1-3.

本申请实施例公开一种绿色建筑用光伏屋顶。参照图1,一种绿色建筑用光伏屋顶包括安装框架1、支撑架3、升降件和多个光伏板2,光伏板2安装于安装框架1。支撑架3安装于建筑顶部,安装框架1中部转动安装于支撑架3顶部,升降件安装于建筑顶部,且能够控制安装框架1旋转。The embodiment of the present application discloses a photovoltaic roof for green buildings. Referring to FIG1 , a photovoltaic roof for green buildings includes a mounting frame 1, a support frame 3, a lifting member, and a plurality of photovoltaic panels 2, and the photovoltaic panels 2 are mounted on the mounting frame 1. The support frame 3 is mounted on the top of the building, the middle part of the mounting frame 1 is rotatably mounted on the top of the support frame 3, and the lifting member is mounted on the top of the building and can control the rotation of the mounting frame 1.

使用时,设置的支撑架3能够对安装框架1和光伏板2整体做支撑,随后能够通过升降件控制安装框架1旋转,进而能够根据日照方向调节光伏板2朝向,从而增加光伏板2接受到的光照效果,提高光伏屋顶的使用性能。When in use, the support frame 3 can support the installation frame 1 and the photovoltaic panel 2 as a whole, and then the installation frame 1 can be controlled to rotate through the lifting member, and then the direction of the photovoltaic panel 2 can be adjusted according to the direction of sunlight, thereby increasing the lighting effect received by the photovoltaic panel 2 and improving the performance of the photovoltaic roof.

参照图1和图2,升降件设置为液压缸4,液压缸4设置有多个且平行安装框架1的转动轴线方向分布设置。液压缸4的缸体部分与建筑顶部相固定,活动端转动安装有连接块5。安装框架1设置有多个滑槽11,滑槽11设置为小端开口的阶梯槽,当然也可设置为燕尾槽。连接块5卡设并滑移连接于滑槽11。Referring to Figures 1 and 2, the lifting member is configured as a hydraulic cylinder 4, and the hydraulic cylinder 4 is provided with multiple and distributed in parallel with the rotation axis direction of the mounting frame 1. The cylinder body of the hydraulic cylinder 4 is fixed to the top of the building, and a connecting block 5 is rotatably installed at the movable end. The mounting frame 1 is provided with multiple chute 11, and the chute 11 is configured as a stepped groove with a small end opening, and of course, it can also be configured as a dovetail groove. The connecting block 5 is clamped and slidably connected to the chute 11.

使用时,控制液压缸4运行,进而能够对安装框架1进行推动或牵引,实现控制安装框架1旋转的目的;且该过程中,设置的连接块5能够在滑槽11内滑移且保持与滑槽11相卡接,进而不易对安装框架1的旋转造成限制,确保使用效果。When in use, the hydraulic cylinder 4 is controlled to operate, so that the mounting frame 1 can be pushed or pulled, thereby achieving the purpose of controlling the rotation of the mounting frame 1; and in this process, the arranged connecting block 5 can slide in the slide groove 11 and remain engaged with the slide groove 11, so that it is not easy to restrict the rotation of the mounting frame 1, thereby ensuring the use effect.

在其他实施方式中,升降件还可设置为气缸、电推杆或丝杠。In other embodiments, the lifting member may also be configured as a cylinder, an electric push rod or a lead screw.

参照图1和图3,支撑架3包括连接梁31和若干支撑杆32,支撑杆32包括竖向延伸的第一撑杆321、第二撑杆322和调节螺栓323。第一撑杆321下端固定连接有底板33,底板33抵接于建筑顶部且与建筑顶部相固定,第二撑杆322穿设并滑移连接于第一撑杆321。连接梁31固定连接于第二撑杆322顶部,安装框架1与连接梁31相转动连接。1 and 3, the support frame 3 includes a connecting beam 31 and a plurality of supporting rods 32, wherein the supporting rods 32 include a first supporting rod 321, a second supporting rod 322 and an adjusting bolt 323 extending vertically. The lower end of the first supporting rod 321 is fixedly connected to a bottom plate 33, the bottom plate 33 abuts against and is fixed to the top of the building, and the second supporting rod 322 is passed through and slidably connected to the first supporting rod 321. The connecting beam 31 is fixedly connected to the top of the second supporting rod 322, and the mounting frame 1 is rotatably connected to the connecting beam 31.

调节螺栓323同时穿设于第一撑杆321和第二撑杆322,第二撑杆322开设有多个使调节螺栓323穿过的调节孔,多个调节孔沿竖向分布设置。The adjusting bolt 323 is passed through both the first support rod 321 and the second support rod 322 . The second support rod 322 is provided with a plurality of adjusting holes for the adjusting bolt 323 to pass through. The plurality of adjusting holes are vertically distributed.

安装时,能够将第二撑杆322相对第一撑杆321滑移,随后固定调节螺栓323,使得调节螺栓323穿设于所在位置的调节孔,进而实现支撑杆32的长度调节,实现对支撑架3的高度调节,进而便于根据实际需求调节安装框架1及光伏板2整体的安装高度,增加使用效果。During installation, the second support rod 322 can be slid relative to the first support rod 321, and then the adjusting bolt 323 can be fixed so that the adjusting bolt 323 passes through the adjusting hole at the location, thereby adjusting the length of the support rod 32 and adjusting the height of the support frame 3, thereby facilitating the adjustment of the overall installation height of the installation frame 1 and the photovoltaic panel 2 according to actual needs, thereby increasing the use effect.

设置的底板33使得支撑杆32与建筑顶部的抵接效果更佳,使得支撑杆32安装的稳固性更佳。The bottom plate 33 is provided to improve the abutment effect between the support rod 32 and the top of the building, and to improve the stability of the installation of the support rod 32.

参照图3,底板33设置有多个支撑肋板34,支撑肋板34竖向设置,支撑肋板34同时固定连接于第一撑杆321和底板33。设置的支撑肋板34能够对支撑杆32整体做支撑,增加支撑杆32承受载荷的能力,增加使用效果。3, the bottom plate 33 is provided with a plurality of supporting ribs 34, the supporting ribs 34 are vertically arranged, and the supporting ribs 34 are fixedly connected to the first support rod 321 and the bottom plate 33. The arranged supporting ribs 34 can support the supporting rod 32 as a whole, increase the load bearing capacity of the supporting rod 32, and increase the use effect.

本申请实施例一种绿色建筑用光伏屋顶的实施原理为:使用时,设置的支撑架3能够对安装框架1和光伏板2整体做支撑,随后能够通过液压缸4控制安装框架1旋转,进而能够根据日照方向调节光伏板2朝向,从而增加光伏板2接受到的光照效果,提高光伏屋顶的使用性能。The implementation principle of a photovoltaic roof for a green building in an embodiment of the present application is as follows: when in use, the support frame 3 is able to support the mounting frame 1 and the photovoltaic panel 2 as a whole, and then the mounting frame 1 can be controlled to rotate through the hydraulic cylinder 4, and then the direction of the photovoltaic panel 2 can be adjusted according to the direction of sunlight, thereby increasing the lighting effect received by the photovoltaic panel 2 and improving the performance of the photovoltaic roof.

以上均为本申请的较佳实施例,并非依此限制本申请的保护范围,故:凡依本申请的结构、形状、原理所做的等效变化,均应涵盖于本申请的保护范围之内。The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims (6)

1. The utility model provides a green photovoltaic roof for building, includes mounting frame (1) and a plurality of photovoltaic board (2), photovoltaic board (2) are installed in mounting frame (1), its characterized in that: the lifting device comprises a mounting frame (1), a lifting piece and a supporting frame (3), wherein the mounting frame (1) is rotatably mounted on the supporting frame (3), and the lifting piece is used for controlling the mounting frame (1) to rotate;
the support frame (3) comprises a connecting beam (31) and a plurality of support rods (32), wherein the support rods (32) are telescopic rods and are used for being connected with the top of a building, the connecting beam (31) is connected with the support rods (32), and the mounting frame (1) is rotatably connected with the connecting beam (31);
The bracing piece (32) is including first vaulting pole (321) and second vaulting pole (322) of vertical extension, first vaulting pole (321) are used for being connected with the building top, second vaulting pole (322) wear to establish and slide and connect in first vaulting pole (321), second vaulting pole (322) are fixed with connecting beam (31) mutually, bracing piece (32) still including wearing to locate adjusting bolt (323) of first vaulting pole (321) and second vaulting pole (322) simultaneously, a plurality of regulation holes that make adjusting bolt (323) pass are seted up to second vaulting pole (322), a plurality of the regulation hole sets up along vertical distribution.
2. A green architectural photovoltaic roof according to claim 1, wherein: the lifting part is arranged to be a hydraulic cylinder (4), the hydraulic cylinder (4) is used for being fixed with the top of a building, a connecting block (5) is rotatably arranged at the movable end of the hydraulic cylinder (4), and the connecting block (5) is connected to the mounting frame (1) in a sliding mode.
3. A green architectural photovoltaic roof according to claim 2, wherein: the hydraulic cylinders (4) are arranged in a plurality, and the hydraulic cylinders (4) are distributed in parallel with the rotation axis direction of the mounting frame (1).
4. A green architectural photovoltaic roof according to claim 2, wherein: the mounting frame (1) is provided with a chute (11) which is clamped with the connecting block (5), and the chute (11) is a stepped groove or a dovetail groove with a small end opening.
5. A green architectural photovoltaic roof according to claim 1, wherein: the first stay bar (321) is fixedly connected with a bottom plate (33), and the bottom plate (33) is used for being abutted and fixed on the top of a building.
6. A green architectural photovoltaic roofing according to claim 5, wherein: the base plate (33) is provided with a plurality of supporting rib plates (34), and the supporting rib plates (34) are fixedly connected to the base plate (33) and the first stay bars (321) at the same time.
CN202323363579.1U 2023-12-09 2023-12-09 Photovoltaic roof for green building Active CN221646199U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323363579.1U CN221646199U (en) 2023-12-09 2023-12-09 Photovoltaic roof for green building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323363579.1U CN221646199U (en) 2023-12-09 2023-12-09 Photovoltaic roof for green building

Publications (1)

Publication Number Publication Date
CN221646199U true CN221646199U (en) 2024-09-03

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323363579.1U Active CN221646199U (en) 2023-12-09 2023-12-09 Photovoltaic roof for green building

Country Status (1)

Country Link
CN (1) CN221646199U (en)

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