CN205776954U - A kind of BIPV photovoltaic curtain wall adjustable support - Google Patents
A kind of BIPV photovoltaic curtain wall adjustable support Download PDFInfo
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- CN205776954U CN205776954U CN201620669859.6U CN201620669859U CN205776954U CN 205776954 U CN205776954 U CN 205776954U CN 201620669859 U CN201620669859 U CN 201620669859U CN 205776954 U CN205776954 U CN 205776954U
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A30/00—Adapting or protecting infrastructure or their operation
- Y02A30/60—Planning or developing urban green infrastructure
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/10—Photovoltaic [PV]
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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Abstract
本实用新型公开了一种BIPV光伏幕墙可调支架,它包括:外框(1)、内框(2)、第一合页(4)、第二合页(5)和斜撑(12),光伏幕墙(3)上侧通过第一合页(4)与内框(2)连接,两侧分别通过斜撑(12)与内框(2)连接,内框(2)通过第二合页(5)与外框(1)连接。光伏幕墙(3)背面固定有固定架(6),内框(2)背面固定有电机(7)和第一传动轴(8),电机(7)上设有第二传动轴(14)。支架具有良好的承重能力,可根据季节及地域的不同调整倾角进而提高发电量。遇极端天气,可收回光伏幕墙(3)避免损失和危险,室内便可完成光伏幕墙(3)的清理,同时为建筑物提供了良好的通风性和透光性。
The utility model discloses an adjustable bracket for a BIPV photovoltaic curtain wall, which comprises: an outer frame (1), an inner frame (2), a first hinge (4), a second hinge (5) and a diagonal brace (12) , the upper side of the photovoltaic curtain wall (3) is connected to the inner frame (2) through the first hinge (4), and the two sides are respectively connected to the inner frame (2) through diagonal braces (12), and the inner frame (2) is connected to the inner frame (2) through the second hinge The page (5) is connected to the outer frame (1). A fixing frame (6) is fixed on the back of the photovoltaic curtain wall (3), a motor (7) and a first transmission shaft (8) are fixed on the back of the inner frame (2), and a second transmission shaft (14) is arranged on the motor (7). The bracket has a good load-bearing capacity, and the inclination can be adjusted according to the season and region to increase the power generation. In case of extreme weather, the photovoltaic curtain wall (3) can be retracted to avoid loss and danger, and the photovoltaic curtain wall (3) can be cleaned indoors, while providing good ventilation and light transmission for the building.
Description
技术领域technical field
本实用新型涉及一种可调支架,特别是一种BIPV光伏幕墙可调支架,属于光伏建筑一体化领域。The utility model relates to an adjustable bracket, in particular to an adjustable bracket for a BIPV photovoltaic curtain wall, which belongs to the field of photovoltaic building integration.
背景技术Background technique
目前,BIPV渐渐被人们所重视,BIPV是应用太阳能发电的一种新概念,将太阳能光伏发电安装在建筑的围护结构外表面来提供电力。根据光伏方阵与建筑结合的方式不同,光伏建筑一体化可分为两大类:一类是光伏方阵与建筑的结合。另一类是光伏方阵与建筑的集成。如光电瓦屋顶、光伏幕墙和光电采光顶等。现有大多数的光伏幕墙直接嵌入到建筑中,导致建筑通风性不好,该种安装方式也大大偏离了最佳安装角度,不能高效地采集光照;因承重能力有限,现有幕墙仅限于薄膜组件光伏幕墙,导致发电量不充足。而现有带有倾角的光伏幕墙则采用焊接支架支撑,幕墙倾角不能调整,遇到极端天气还容易发生坠落损坏等现象,对人身安全造成极大的隐患。光伏幕墙的外表面需要定期清理,以防蒙尘影响发电量,高层建筑的外表面清理主要通过升降台或吊篮承载清洁工清理,有很大的危险性。At present, BIPV is gradually being valued by people. BIPV is a new concept of applying solar power generation. Solar photovoltaic power generation is installed on the outer surface of the building envelope to provide electricity. According to the different ways of combining photovoltaic arrays with buildings, BIPV can be divided into two categories: one is the combination of photovoltaic arrays and buildings. The other is the integration of photovoltaic arrays and buildings. Such as photovoltaic tile roof, photovoltaic curtain wall and photovoltaic lighting roof, etc. Most of the existing photovoltaic curtain walls are directly embedded in the building, resulting in poor ventilation of the building. This installation method also greatly deviates from the optimal installation angle, and cannot efficiently collect light; due to the limited load-bearing capacity, the existing curtain walls are limited to thin film Module photovoltaic curtain wall, resulting in insufficient power generation. However, the existing photovoltaic curtain wall with an inclination angle is supported by welding brackets, and the inclination angle of the curtain wall cannot be adjusted. In extreme weather, it is prone to fall damage and other phenomena, which poses a great hidden danger to personal safety. The outer surface of the photovoltaic curtain wall needs to be cleaned regularly to prevent dust from affecting the power generation. The outer surface of high-rise buildings is mainly cleaned by lifting platforms or hanging baskets carrying cleaners, which is very dangerous.
实用新型内容Utility model content
本实用新型的目的在于,提供一种BIPV光伏幕墙可调支架,该支架具有良好的承重能力,改变了现有光伏幕墙的材料限制,能够根据季节及地域的不同调整倾角进而提高发电量。遇到极端天气,可收回光伏幕墙避免损失和危险,另外在室内就可完成光伏幕墙的清理工作。The purpose of this utility model is to provide an adjustable bracket for BIPV photovoltaic curtain wall, which has good load-bearing capacity, changes the material limitations of existing photovoltaic curtain walls, and can adjust the inclination angle according to different seasons and regions to increase power generation. In case of extreme weather, the photovoltaic curtain wall can be retracted to avoid loss and danger, and the cleaning of the photovoltaic curtain wall can be completed indoors.
为解决上述技术问题,本实用新型采用如下的技术方案:In order to solve the problems of the technologies described above, the utility model adopts the following technical solutions:
该种可调支架包括外框、内框、第一合页、第二合页和斜撑,光伏幕墙上侧通过第一合页与内框连接,两侧分别通过斜撑与内框连接,内框通过第二合页与外框连接。光伏幕墙背面固定有固定架,内框背面固定有电机和第一传动轴,电机上设有第二传动轴。光伏幕墙上侧通过上悬窗的方式与内框合页连接,可以向室外开启。内框通过内平开窗的方式与外框合页连接,可以向室内开启。The adjustable bracket includes an outer frame, an inner frame, a first hinge, a second hinge and a diagonal brace. The upper side of the photovoltaic curtain wall is connected to the inner frame through the first hinge, and the two sides are respectively connected to the inner frame through a diagonal brace. The inner frame is connected with the outer frame through the second hinge. A fixing frame is fixed on the back of the photovoltaic curtain wall, a motor and a first transmission shaft are fixed on the back of the inner frame, and a second transmission shaft is arranged on the motor. The upper side of the photovoltaic curtain wall is connected to the hinge of the inner frame by means of a top-hung window, which can be opened to the outside. The inner frame is connected with the hinge of the outer frame by means of an inner casement window, and can be opened indoors.
前述的第一传动轴上设置有从动轮,第二传动轴上设置有主动轮,主动轮和从动轮通过皮带连接。电机开启带动第二传动轴运行,第二传动轴带动主动轮,主动轮、从动轮与皮带构成驱动装置。The aforementioned first transmission shaft is provided with a driven wheel, and the second transmission shaft is provided with a driving wheel, and the driving wheel and the driven wheel are connected by a belt. The motor is turned on to drive the second transmission shaft to run, and the second transmission shaft drives the driving wheel, and the driving wheel, the driven wheel and the belt form the driving device.
为了能够电动调整光伏幕墙的角度,内框上的第一传动轴与光伏幕墙背面的固定架连通,通过第一传动轴的运动调节固定架,从而带动光伏幕墙的旋转。In order to be able to electrically adjust the angle of the photovoltaic curtain wall, the first transmission shaft on the inner frame communicates with the fixed frame on the back of the photovoltaic curtain wall, and the fixed frame is adjusted through the movement of the first transmission shaft, thereby driving the rotation of the photovoltaic curtain wall.
为了装置安装的合理性,光伏幕墙的厚度需要小于内框的厚度,同样的,内框的厚度也需要小于外框的厚度,从而给驱动装置一定的操作空间。For the rationality of device installation, the thickness of the photovoltaic curtain wall needs to be smaller than the thickness of the inner frame. Similarly, the thickness of the inner frame also needs to be smaller than the thickness of the outer frame, so as to give the driving device a certain operating space.
为了能够调整光伏幕墙的角度,内框上固定斜撑的孔为六个腰型孔,可将斜撑固定于不同的腰型孔,使得光伏幕墙形成不同的倾角。In order to be able to adjust the angle of the photovoltaic curtain wall, the holes for fixing the diagonal braces on the inner frame are six waist-shaped holes, and the diagonal braces can be fixed to different waist-shaped holes, so that the photovoltaic curtain wall forms different inclination angles.
为了增强支架的承载能力,斜撑材质为不锈钢,外表面还拉伸有加强筋。In order to enhance the bearing capacity of the bracket, the material of the diagonal brace is stainless steel, and the outer surface is also stretched with reinforcing ribs.
进一步的,内框上的斜撑为两个,分布于两侧。Further, there are two diagonal braces on the inner frame, which are distributed on both sides.
由于该可调支架的承载能力和稳定性增强,所以光伏幕墙为薄膜组件或光电效率转换较高、透光性好、重量增加的双玻组件。Due to the enhanced bearing capacity and stability of the adjustable bracket, the photovoltaic curtain wall is a thin-film module or a double-glass module with high photoelectric efficiency conversion, good light transmission, and increased weight.
为了极端天气方便收回光伏幕墙,在光伏幕墙下侧设有把手。In order to facilitate the retraction of the photovoltaic curtain wall in extreme weather, a handle is provided on the lower side of the photovoltaic curtain wall.
与现有技术相比,本实用新型的有益之处在于:驱动装置使得支架能够根据季节及地域的不同自动调整倾角,实现太阳高度的跟踪,单人就可完成操作。若是电动操作出现故障,还可以手动调节斜撑完成不同角度的设置。遇到极端天气,可通过把手收回光伏幕墙避免出现坠落的隐患。采用不锈钢斜撑以及斜撑上设有加强筋,使得支架具有良好的承重能力,改变了现有光伏幕墙的材料限制,可以采用光电转换效率较高的双玻组件,提高了发电量。另外可以将光伏幕墙内拉至室内,完成灰尘清理工作。同时代替窗户为建筑物提供了良好的通风性和透光性,节省空调用电,进一步实现绿色环保。Compared with the prior art, the utility model is beneficial in that: the driving device enables the support to automatically adjust the inclination angle according to the season and the region, realize the tracking of the sun height, and a single person can complete the operation. If the electric operation fails, you can also manually adjust the diagonal brace to complete the setting of different angles. In extreme weather, the photovoltaic curtain wall can be retracted by the handle to avoid the hidden danger of falling. The use of stainless steel diagonal braces and the reinforcement ribs on the diagonal braces make the brackets have good load-bearing capacity, which changes the material limitations of the existing photovoltaic curtain walls, and can use double-glass modules with high photoelectric conversion efficiency to increase the power generation. In addition, the photovoltaic curtain wall can be pulled indoors to complete the dust cleaning work. At the same time, instead of windows, it provides good ventilation and light transmission for buildings, saves electricity for air conditioning, and further realizes green environmental protection.
附图说明Description of drawings
图1是BIPV光伏幕墙安装的正面示意图;Figure 1 is a front schematic diagram of BIPV photovoltaic curtain wall installation;
图2是BIPV光伏幕墙可调支架的安装示意图;Figure 2 is a schematic diagram of the installation of the BIPV photovoltaic curtain wall adjustable bracket;
图3是BIPV光伏幕墙背面示意图即光伏幕墙可调支架的结构示意图;Figure 3 is a schematic diagram of the back of the BIPV photovoltaic curtain wall, that is, a structural schematic diagram of the adjustable bracket of the photovoltaic curtain wall;
图4是BIPV光伏幕墙可调支架的侧面视图。Figure 4 is a side view of the adjustable bracket of the BIPV photovoltaic curtain wall.
附图标记的含义:1-外框,2-内框,3-光伏幕墙,4-第一合页,5-第二合页,6-固定架,7-电机,8-第一传动轴,9-主动轮,10-从动轮,11-皮带,12-斜撑,13-加强筋,14-第二传动轴,15-腰型孔,16-把手。Meanings of reference signs: 1-outer frame, 2-inner frame, 3-photovoltaic curtain wall, 4-first hinge, 5-second hinge, 6-fixed frame, 7-motor, 8-first transmission shaft , 9-driving wheel, 10-driven wheel, 11-belt, 12-diagonal brace, 13-reinforcing rib, 14-second drive shaft, 15-waist hole, 16-handle.
下面结合附图和具体实施方式对本实用新型作进一步的说明。Below in conjunction with accompanying drawing and specific embodiment, the utility model is further described.
具体实施方式detailed description
本实用新型的实施例1:如图1、图2和图3所示,光伏幕墙3上侧通过第一合页4与内框2连接,两侧分别通过斜撑12与内框2连接,内框2通过第二合页5与外框1连接。光伏幕墙3背面固定有固定架6,内框2背面固定有电机7和第一传动轴8,电机7上设有第二传动轴14。光伏幕墙3上侧通过上悬窗的方式与内框2合页连接,可以向室外开启。内框2通过内平开窗的方式与外框1合页连接,可以向室内开启。第一传动轴8上设置有从动轮10,第二传动轴14上设置有主动轮9,主动轮9和从动轮10通过皮带11连接。电机7开启带动第二传动轴14运行,第二传动轴14带动主动轮9,主动轮9、从动轮10与皮带11构成驱动装置。内框2上的第一传动轴8与光伏幕墙3背面的固定架6连通。为了调整光伏幕墙3的角度,电机7通过第一传动轴8驱动主动轮9,主动轮9通过皮带11带动从动轮10旋转,从而使得第二传动轴14旋转,进而调节固定架6,从而带动光伏幕墙3的旋转。Embodiment 1 of the present utility model: as shown in Fig. 1, Fig. 2 and Fig. 3, the upper side of the photovoltaic curtain wall 3 is connected to the inner frame 2 through the first hinge 4, and the two sides are respectively connected to the inner frame 2 through the braces 12, The inner frame 2 is connected with the outer frame 1 through the second hinge 5 . A fixing frame 6 is fixed on the back of the photovoltaic curtain wall 3 , a motor 7 and a first transmission shaft 8 are fixed on the back of the inner frame 2 , and a second transmission shaft 14 is arranged on the motor 7 . The upper side of the photovoltaic curtain wall 3 is hingedly connected with the inner frame 2 through a top-hung window, and can be opened to the outside. The inner frame 2 is hingedly connected with the outer frame 1 by means of an inner casement window, and can be opened indoors. A driven wheel 10 is provided on the first transmission shaft 8 , a driving wheel 9 is provided on the second transmission shaft 14 , and the driving wheel 9 and the driven wheel 10 are connected by a belt 11 . The motor 7 is turned on to drive the second transmission shaft 14 to run, and the second transmission shaft 14 drives the driving wheel 9, and the driving wheel 9, the driven wheel 10 and the belt 11 form a driving device. The first transmission shaft 8 on the inner frame 2 communicates with the fixing frame 6 on the back of the photovoltaic curtain wall 3 . In order to adjust the angle of the photovoltaic curtain wall 3, the motor 7 drives the driving wheel 9 through the first transmission shaft 8, and the driving wheel 9 drives the driven wheel 10 to rotate through the belt 11, so that the second transmission shaft 14 rotates, and then adjusts the fixed frame 6, thereby driving Rotation of photovoltaic curtain wall 3.
光伏幕墙3的厚度需要小于内框2的厚度,同样的,内框2的厚度也需要小于外框1的厚度,从而给驱动装置一定的操作空间,使得支架上各装置安装更合理。内框2上固定斜撑12的孔为六个腰型孔15,可将斜撑12固定于不同的腰型孔15,使得光伏幕墙3形成不同的倾角,获得更多的能量。内框2上的两个斜撑12材质为不锈钢,外表面还拉伸有加强筋13,增加了支架的承载能力。由于该可调支架的承载能力和稳定性增强,所以光伏幕墙3为光电效率转换较高、透光性好、重量增加的双玻组件。在光伏幕墙3下侧设有把手16,方便极端天气收回光伏幕墙3。The thickness of the photovoltaic curtain wall 3 needs to be smaller than the thickness of the inner frame 2. Similarly, the thickness of the inner frame 2 also needs to be smaller than the thickness of the outer frame 1, so as to provide a certain operating space for the driving device and make the installation of each device on the bracket more reasonable. The holes for fixing the diagonal braces 12 on the inner frame 2 are six waist-shaped holes 15, and the diagonal braces 12 can be fixed to different waist-shaped holes 15, so that the photovoltaic curtain wall 3 forms different inclination angles and obtains more energy. The two braces 12 on the inner frame 2 are made of stainless steel, and the outer surface is also stretched with reinforcing ribs 13, which increases the bearing capacity of the bracket. Due to the enhanced bearing capacity and stability of the adjustable bracket, the photovoltaic curtain wall 3 is a double-glass component with high photoelectric conversion efficiency, good light transmission, and increased weight. A handle 16 is provided on the lower side of the photovoltaic curtain wall 3 to facilitate retracting the photovoltaic curtain wall 3 in extreme weather.
实施例2:如图1和图2所示,该支架包括外框1、内框2、第一合页4、第二合页5和斜撑12,光伏幕墙3上侧通过第一合页4与内框2连接,两侧分别通过斜撑12与内框2连接,内框2通过第二合页5与外框1连接。光伏幕墙3背面固定有固定架6,内框2背面固定有电机7和第一传动轴8,电机7上设有第二传动轴14。光伏幕墙3上侧通过上悬窗的方式与内框2合页连接,可以向室外开启。内框2通过内平开窗的方式与外框1合页连接,可以向室内开启。第一传动轴8上设置有从动轮10,第二传动轴14上设置有主动轮9,主动轮9和从动轮10通过皮带11连接。电机7开启带动第二传动轴14运行,第二传动轴14带动主动轮9,主动轮9、从动轮10与皮带11构成驱动装置。内框2上的第一传动轴8与光伏幕墙3背面的固定架6连通。为了调整光伏幕墙3的角度,电机7通过第一传动轴8驱动主动轮9,主动轮9通过皮带11带动从动轮10旋转,从而使得第二传动轴14旋转,进而调节固定架6,从而带动光伏幕墙3的旋转。Embodiment 2: As shown in Figure 1 and Figure 2, the bracket includes an outer frame 1, an inner frame 2, a first hinge 4, a second hinge 5 and a brace 12, and the upper side of the photovoltaic curtain wall 3 passes through the first hinge 4 is connected with the inner frame 2, and both sides are respectively connected with the inner frame 2 through braces 12, and the inner frame 2 is connected with the outer frame 1 through the second hinge 5. A fixing frame 6 is fixed on the back of the photovoltaic curtain wall 3 , a motor 7 and a first transmission shaft 8 are fixed on the back of the inner frame 2 , and a second transmission shaft 14 is arranged on the motor 7 . The upper side of the photovoltaic curtain wall 3 is hingedly connected with the inner frame 2 through a top-hung window, and can be opened to the outside. The inner frame 2 is hingedly connected with the outer frame 1 by means of an inner casement window, and can be opened indoors. A driven wheel 10 is provided on the first transmission shaft 8 , a driving wheel 9 is provided on the second transmission shaft 14 , and the driving wheel 9 and the driven wheel 10 are connected by a belt 11 . The motor 7 is turned on to drive the second transmission shaft 14 to run, and the second transmission shaft 14 drives the driving wheel 9, and the driving wheel 9, the driven wheel 10 and the belt 11 form a driving device. The first transmission shaft 8 on the inner frame 2 communicates with the fixing frame 6 on the back of the photovoltaic curtain wall 3 . In order to adjust the angle of the photovoltaic curtain wall 3, the motor 7 drives the driving wheel 9 through the first transmission shaft 8, and the driving wheel 9 drives the driven wheel 10 to rotate through the belt 11, so that the second transmission shaft 14 rotates, and then adjusts the fixed frame 6, thereby driving Rotation of photovoltaic curtain wall 3.
实施例3:如图1和图3所示,光伏幕墙3上侧通过第一合页4与内框2连接,两侧分别通过斜撑12与内框2连接,内框2通过第二合页5与外框1连接。光伏幕墙3上侧通过上悬窗的方式与内框2合页连接,可以向室外开启。内框2通过内平开窗的方式与外框1合页连接,可以向室内开启。内框2上固定斜撑12的孔为六个腰型孔15,可将斜撑12固定于不同的腰型孔15,使得光伏幕墙3形成不同的倾角,获得更多的能量。内框2上的两个斜撑12材质为不锈钢,外表面还拉伸有加强筋13,增加了支架的承载能力。由于该可调支架的承载能力和稳定性增强,所以光伏幕墙3为光电效率转换较高、透光性好、重量增加的双玻组件。Embodiment 3: As shown in Figure 1 and Figure 3, the upper side of the photovoltaic curtain wall 3 is connected to the inner frame 2 through the first hinge 4, and the two sides are respectively connected to the inner frame 2 through the braces 12, and the inner frame 2 is connected to the inner frame 2 through the second hinge. Page 5 is connected to frame 1. The upper side of the photovoltaic curtain wall 3 is hingedly connected with the inner frame 2 through a top-hung window, and can be opened to the outside. The inner frame 2 is hingedly connected with the outer frame 1 by means of an inner casement window, and can be opened indoors. The holes for fixing the diagonal braces 12 on the inner frame 2 are six waist-shaped holes 15, and the diagonal braces 12 can be fixed to different waist-shaped holes 15, so that the photovoltaic curtain wall 3 forms different inclination angles and obtains more energy. The two braces 12 on the inner frame 2 are made of stainless steel, and the outer surface is also stretched with reinforcing ribs 13, which increases the bearing capacity of the bracket. Due to the enhanced bearing capacity and stability of the adjustable bracket, the photovoltaic curtain wall 3 is a double-glass component with high photoelectric conversion efficiency, good light transmission, and increased weight.
本实用新型的工作原理:光伏幕墙3上侧通过上悬窗的方式与内框2合页连接,可以向室外开启。内框2通过内平开窗的方式与外框1合页连接,可以向室内开启。电机7通过第一传动轴8驱动主动轮9,主动轮9通过皮带11带动从动轮10旋转,从而使得第二传动轴14旋转,进而调节固定架6,从而带动光伏幕墙3的旋转,得到更合适的倾角。内框2上固定斜撑12的孔为六个腰型孔15,可将斜撑12固定于不同的腰型孔15,可通过手动操作使得光伏幕墙3形成不同的倾角。The working principle of the utility model: the upper side of the photovoltaic curtain wall 3 is hingedly connected with the inner frame 2 through a top-hung window, and can be opened to the outside. The inner frame 2 is hingedly connected with the outer frame 1 by means of an inner casement window, and can be opened indoors. The motor 7 drives the driving wheel 9 through the first transmission shaft 8, and the driving wheel 9 drives the driven wheel 10 to rotate through the belt 11, so that the second transmission shaft 14 rotates, and then the fixing frame 6 is adjusted, thereby driving the rotation of the photovoltaic curtain wall 3 to obtain a more Appropriate inclination. The holes for fixing the diagonal braces 12 on the inner frame 2 are six waist-shaped holes 15, and the diagonal braces 12 can be fixed to different waist-shaped holes 15, and the photovoltaic curtain wall 3 can form different inclination angles by manual operation.
Claims (9)
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112267602A (en) * | 2020-10-14 | 2021-01-26 | 湖南昊宇幕墙门窗有限公司 | Multifunctional intelligent curtain wall based on clean energy |
| CN117905205A (en) * | 2024-01-29 | 2024-04-19 | 浙江新银百幕墙装饰有限公司 | Building energy-saving photoelectric quantum curtain wall and construction method thereof |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112267602A (en) * | 2020-10-14 | 2021-01-26 | 湖南昊宇幕墙门窗有限公司 | Multifunctional intelligent curtain wall based on clean energy |
| CN117905205A (en) * | 2024-01-29 | 2024-04-19 | 浙江新银百幕墙装饰有限公司 | Building energy-saving photoelectric quantum curtain wall and construction method thereof |
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Address after: 100160 Beijing, Fengtai District Automobile Museum Road, No. 6, Ying Kun century A block, floor 11 Co-patentee after: HUADIAN ZHONGGUANG NEW ENERGY TECHNOLOGY CO.,LTD. Patentee after: CHINA HUADIAN ENGINEERING Co.,Ltd. Address before: 100160 Beijing, Fengtai District Automobile Museum Road, No. 6, Ying Kun century A block, floor 11 Co-patentee before: BEIJING HUADIAN ZHONGGUANG NEW ENERGY TECHNOLOGY Co.,Ltd. Patentee before: CHINA HUADIAN ENGINEERING Co.,Ltd. |
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Granted publication date: 20161207 |