CN115528993A - Off-grid photovoltaic power generation system based on solar energy - Google Patents

Off-grid photovoltaic power generation system based on solar energy Download PDF

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CN115528993A
CN115528993A CN202210418033.2A CN202210418033A CN115528993A CN 115528993 A CN115528993 A CN 115528993A CN 202210418033 A CN202210418033 A CN 202210418033A CN 115528993 A CN115528993 A CN 115528993A
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赵拓
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S40/00Components or accessories in combination with PV modules, not provided for in groups H02S10/00 - H02S30/00
    • H02S40/40Thermal components
    • H02S40/42Cooling means
    • H02S40/425Cooling means using a gaseous or a liquid coolant, e.g. air flow ventilation, water circulation

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Abstract

本发明公开了一种基于太阳能离网光伏发电系统,属于太阳能离网光伏技术领域,包括发电系统主体和主体支撑架,所述发电系统主体的底部四周设置有主体支撑架,所述发电系统主体的内壁上设置有保护透明外板,所述保护透明外板用于对内部的机构进行保护,所述发电系统主体的内部设置有外壳加固内层,所述外壳加固内层用于提高装置外壳的坚硬度。本发明通过采用外壳加固外层、加固下直板、中心支撑板、加固上直板、外壳加固内层结合,方便解决现有的发电系统在使用时,外壳在长时间阳光照射下,表面容易变得脆弱,导致外壳会发生损裂的问题,通过以上结构结合以达到使发电系统在使用时,能够提高装置外壳的坚硬度,避免被阳光照射表面变得脆弱。

Figure 202210418033

The invention discloses a solar off-grid photovoltaic power generation system, which belongs to the field of solar off-grid photovoltaic technology, and includes a power generation system main body and a main body support frame. The main body support frame is arranged around the bottom of the power generation system main body. The inner wall of the power generation system is provided with a protective transparent outer plate, the protective transparent outer plate is used to protect the internal mechanism, the inside of the main body of the power generation system is provided with a shell reinforcement inner layer, and the shell reinforcement inner layer is used to improve the device shell of hardness. The present invention adopts the combination of shell reinforced outer layer, reinforced lower straight plate, central support plate, reinforced upper straight plate, and shell reinforced inner layer to solve the problem that when the existing power generation system is in use, the outer shell is easily exposed to sunlight for a long time. Fragility leads to the problem that the shell will be damaged. Through the combination of the above structures, when the power generation system is in use, the hardness of the shell of the device can be improved to prevent the surface from becoming fragile when exposed to sunlight.

Figure 202210418033

Description

一种基于太阳能离网光伏发电系统An off-grid photovoltaic power generation system based on solar energy

技术领域technical field

本发明涉及一种发电系统,涉及太阳能离网光伏技术领域,特别是涉及一种基于太阳能离网光伏发电系统。The invention relates to a power generation system, relates to the field of solar off-grid photovoltaic technology, in particular to a solar off-grid photovoltaic power generation system.

背景技术Background technique

在光伏发电技术中,都会在光伏组件上设置接线盒,将太阳能电池产生的电力与外部线路连接,传导光伏组件所产生的电流,同时接线盒可以将光伏组件串联,增大电压和电流,通常将接线盒设置在光伏组件的电池片交汇处,接线盒之间通过连接器连接。针对现有技术存在以下问题:In the photovoltaic power generation technology, a junction box is installed on the photovoltaic module to connect the power generated by the solar cell with the external circuit and conduct the current generated by the photovoltaic module. At the same time, the junction box can connect the photovoltaic module in series to increase the voltage and current. The junction box is set at the intersection of the cells of the photovoltaic module, and the junction boxes are connected by connectors. There are following problems at prior art:

1、现有技术中,存在现有的发电系统在使用时,外壳在长时间阳光照射下,表面容易变得脆弱,导致外壳会发生损裂的问题;1. In the prior art, when the existing power generation system is in use, the shell is exposed to sunlight for a long time, and the surface tends to become fragile, causing the shell to be damaged and cracked;

2、现有技术中,现有的发电系统在使用时,装置内部容易受到外界物件掉落造成重击,导致内部机构受到损害的问题,进而达不到发电系统的使用初衷,该发电系统的适用性变差,因此需要进行结构创新来解决具体问题。2. In the existing technology, when the existing power generation system is in use, the inside of the device is vulnerable to heavy blows caused by falling external objects, resulting in damage to the internal mechanism, which fails to achieve the original intention of the power generation system. The power generation system Applicability becomes poor, so structural innovation is required to solve specific problems.

发明内容Contents of the invention

为解决上述技术问题,本发明所采用的技术方案是:In order to solve the problems of the technologies described above, the technical solution adopted in the present invention is:

一种基于太阳能离网光伏发电系统,包括发电系统主体和主体支撑架,所述发电系统主体的底部四周设置有主体支撑架,所述发电系统主体的内壁上设置有保护透明外板,所述保护透明外板用于对内部的机构进行保护。An off-grid photovoltaic power generation system based on solar energy, comprising a main body of the power generation system and a main body support frame, a main body support frame is arranged around the bottom of the main body of the power generation system, a protective transparent outer plate is arranged on the inner wall of the main body of the power generation system, and the The protective transparent outer panel is used to protect the internal mechanism.

所述发电系统主体的内部设置有外壳加固内层,所述外壳加固内层用于提高装置外壳的坚硬度。The inside of the main body of the power generation system is provided with a shell reinforcement inner layer, and the shell reinforcement inner layer is used to improve the hardness of the device shell.

本发明技术方案的进一步改进在于:所述保护透明外板的表面四周固定安装在发电系统主体的内壁上,所述主体支撑架的顶部固定安装在发电系统主体的底部四周,所述发电系统主体的内部设置有外壳加固外层,所述外壳加固外层的表面四周固定安装在发电系统主体的内部。The further improvement of the technical solution of the present invention lies in: the surrounding surface of the protective transparent outer plate is fixedly installed on the inner wall of the main body of the power generation system, the top of the main body support frame is fixedly installed around the bottom of the main body of the power generation system, and the main body of the power generation system The interior of the casing is provided with a reinforced outer layer of the casing, and the surface of the reinforced outer layer of the casing is fixedly installed inside the main body of the power generation system.

本发明技术方案的进一步改进在于:所述发电系统主体的内部且位于外壳加固外层的内侧设置有中心支撑板,所述中心支撑板的表面四周固定安装在外壳加固外层的内侧,且所述中心支撑板的底部设置有加固下直板,所述加固下直板的顶部固定安装在中心支撑板的底部,且所述加固下直板的表面四周固定安装在外壳加固外层的内侧,所述中心支撑板的顶部设置有加固上直板,所述加固上直板的底部固定安装在中心支撑板的顶部。The further improvement of the technical solution of the present invention lies in: a central support plate is arranged inside the main body of the power generation system and located on the inner side of the reinforced outer layer of the shell, and the surface of the central support plate is fixedly installed on the inner side of the reinforced outer layer of the shell, and the The bottom of the central support plate is provided with a reinforced lower straight plate, the top of the reinforced lower straight plate is fixedly installed on the bottom of the central support plate, and the surface of the reinforced lower straight plate is fixedly installed on the inner side of the reinforced outer layer of the shell. The top of the support plate is provided with a reinforced upper straight plate, and the bottom of the reinforced upper straight plate is fixedly installed on the top of the central support plate.

本发明技术方案的进一步改进在于:所述发电系统主体的内部且位于加固上直板的顶部设置有外壳加固内层,所述外壳加固内层的底部固定安装在加固上直板的顶部,且所述外壳加固内层的表面四周固定安装在发电系统主体的内部。The further improvement of the technical solution of the present invention lies in that: the inside of the main body of the power generation system and the top of the reinforced upper straight plate are provided with a shell reinforced inner layer, the bottom of the shell reinforced inner layer is fixedly installed on the top of the reinforced upper straight plate, and the The surrounding surface of the reinforced inner layer of the shell is fixedly installed inside the main body of the power generation system.

采用上述技术方案,该方案中的发电系统主体内部的外壳加固外层与外壳加固内层结合使发电系统主体更加坚韧,避免发电系统主体发生断裂。By adopting the above technical solution, in this solution, the shell-reinforced outer layer and the shell-reinforced inner layer inside the main body of the power generation system are combined to make the main body of the power generation system tougher and prevent the main body of the power generation system from breaking.

本发明技术方案的进一步改进在于:所述发电系统主体的内壁上且位于保护透明外板的底部设置有热能光伏板,所述热能光伏板的顶部固定安装在保护透明外板的底部,且所述热能光伏板的表面四周固定安装在发电系统主体的内壁上,所述热能光伏板的底部固定安装有传输器,所述传输器的表面四周固定安装在发电系统主体的内壁上。The further improvement of the technical solution of the present invention is that: a thermal photovoltaic panel is installed on the inner wall of the main body of the power generation system and at the bottom of the protective transparent outer plate, the top of the thermal photovoltaic panel is fixedly installed on the bottom of the protective transparent outer plate, and the The surface of the thermal photovoltaic panel is fixedly installed on the inner wall of the main body of the power generation system, the bottom of the thermal photovoltaic panel is fixedly installed with a transmitter, and the surface of the transmitter is fixed on the inner wall of the main body of the power generation system.

采用上述技术方案,该方案中的发电系统主体内壁上的热能光伏板可以对太阳能进行吸收。With the above technical solution, the thermal photovoltaic panel on the inner wall of the main body of the power generation system in this solution can absorb solar energy.

本发明技术方案的进一步改进在于:所述发电系统主体的内壁上且位于传输器的底部设置有热能转换主体,所述热能转换主体的外侧固定安装在发电系统主体的内壁上,所述热能转换主体的内壁上设置有电力储存器,所述电力储存器的底固定安装在热能转换主体的内壁上,且所述电力储存器的顶部设置有电力转换器,所述电力转换器的底部固定安装在电力储存器的顶部,且所述电力转换器的顶部四周设置有输送缆线,所述输送缆线的底部固定安装在电力转换器的顶部四周,且所述输送缆线的顶部固定安装在热能转换主体的内壁上。The further improvement of the technical solution of the present invention lies in that: the inner wall of the main body of the power generation system and the bottom of the transmitter are provided with a thermal energy conversion body, the outer side of the thermal energy conversion body is fixedly installed on the inner wall of the main body of the power generation system, and the thermal energy conversion The inner wall of the main body is provided with a power storage, the bottom of the power storage is fixedly installed on the inner wall of the thermal energy conversion main body, and the top of the power storage is provided with a power converter, and the bottom of the power converter is fixedly installed On the top of the power storage, and the top of the power converter is provided with a transmission cable, the bottom of the transmission cable is fixed around the top of the power converter, and the top of the transmission cable is fixed on the On the inner wall of the heat energy conversion body.

采用上述技术方案,该方案中的热能转换主体内部的电力转换器可以将热量转换成电能,再利用电力储存器将电力进行储存。By adopting the above technical solution, the power converter inside the thermal energy conversion body in this solution can convert heat into electric energy, and then use the electric power storage to store the electric power.

本发明技术方案的进一步改进在于:所述保护透明外板的内壁上设置有第一保护层,所述第一保护层的外侧固定安装在保护透明外板的内壁上,且所述第一保护层的表面四周固定安装在保护透明外板的内壁上。The further improvement of the technical solution of the present invention lies in that: the inner wall of the protective transparent outer panel is provided with a first protective layer, the outer side of the first protective layer is fixedly installed on the inner wall of the protective transparent outer panel, and the first protective layer The surface of the layer is fixedly installed on the inner wall of the protective transparent outer plate.

本发明技术方案的进一步改进在于:所述保护透明外板的内壁上且位于第一保护层的内侧设置有第二保护层,所述第二保护层的外侧固定安装在第一保护层的内侧,且所述第二保护层的表面四周固定安装在保护透明外板的内壁上。The further improvement of the technical solution of the present invention lies in that: a second protective layer is provided on the inner wall of the protective transparent outer panel and located on the inner side of the first protective layer, and the outer side of the second protective layer is fixedly installed on the inner side of the first protective layer , and the surrounding surface of the second protective layer is fixedly installed on the inner wall of the protective transparent outer panel.

采用上述技术方案,该方案中的保护透明外板内部的第一保护层与第二保护层结合在一起能够使保护透明外板整体更加坚韧,使保护透明外板更好地对发电系统主体内部机构进行保护。With the above technical solution, the combination of the first protective layer and the second protective layer inside the protective transparent outer panel can make the protective transparent outer panel tougher as a whole, so that the protective transparent outer panel can better protect the inside of the main body of the power generation system. Institutions are protected.

由于采用了上述技术方案,本发明相对现有技术来说,取得的技术进步是:Owing to adopting above-mentioned technical scheme, relative to the prior art, the technical progress of the present invention is:

1、本发明提供一种基于太阳能离网光伏发电系统,通过设计精妙,采用外壳加固外层、加固下直板、中心支撑板、加固上直板、外壳加固内层结合,方便解决现有的发电系统在使用时,外壳在长时间阳光照射下,表面容易变得脆弱,导致外壳会发生损裂的问题,通过以上结构结合以达到使发电系统在使用时,能够提高装置外壳的坚硬度,避免被阳光照射表面变得脆弱。1. The present invention provides an off-grid photovoltaic power generation system based on solar energy. Through exquisite design, the outer layer of the shell is reinforced, the lower straight plate is reinforced, the central support plate is combined, the upper straight plate is reinforced, and the outer shell is reinforced with the inner layer, which is convenient to solve the existing power generation system. When in use, the surface of the shell is easy to become fragile under long-term sunlight exposure, resulting in the problem of cracks in the shell. Through the combination of the above structures, the hardness of the shell of the device can be improved when the power generation system is in use, and avoid being damaged. Surfaces exposed to sunlight become brittle.

2、本发明提供一种基于太阳能离网光伏发电系统,通过采用保护透明外板、第一保护层、第二保护层组合设置,可以实现解决现有的发电系统在使用时,装置内部容易受到外界物件掉落造成重击,导致内部机构受到损害的问题,通过以上结构结合以达到使发电系统在使用时,能够加强对内部的机构进行保护,避免受到外界物件撞击,防止内部机构受到损害。2. The present invention provides an off-grid photovoltaic power generation system based on solar energy. By adopting a combination of a protective transparent outer panel, a first protective layer and a second protective layer, it can solve the problem that the inside of the device is easily damaged when the existing power generation system is in use. The external objects fall and cause heavy impact, resulting in damage to the internal mechanism. Through the combination of the above structures, when the power generation system is in use, it can strengthen the protection of the internal mechanism, avoid being hit by external objects, and prevent the internal mechanism from being damaged.

附图说明Description of drawings

图1为本发明的立体结构示意图;Fig. 1 is the three-dimensional structure schematic diagram of the present invention;

图2为本发明的部分剖视结构示意图;Fig. 2 is a partial sectional structure schematic diagram of the present invention;

图3为本发明的发电系统主体剖视结构示意图;Fig. 3 is a schematic cross-sectional structure diagram of the main body of the power generation system of the present invention;

图4为本发明的热能转换主体剖视结构示意图;Fig. 4 is a schematic cross-sectional structure diagram of the thermal energy conversion main body of the present invention;

图5为本发明的保护透明外板剖视结构示意图;Fig. 5 is a schematic cross-sectional structure diagram of a protective transparent outer panel of the present invention;

其中,1、发电系统主体;2、保护透明外板;3、主体支撑架;4、外壳加固外层;5、加固下直板;6、中心支撑板;7、加固上直板;8、外壳加固内层;9、热能光伏板;10、传输器;11、热能转换主体;12、电力储存器;13、电力转换器;14、输送缆线;15、第一保护层;16、第二保护层。Among them, 1. The main body of the power generation system; 2. The protective transparent outer plate; 3. The main body support frame; 4. The outer layer of the shell reinforcement; 5. The reinforced lower straight plate; Inner layer; 9. Thermal photovoltaic panel; 10. Transmitter; 11. Thermal energy conversion body; 12. Power storage; 13. Power converter; 14. Transmission cable; 15. First protective layer; 16. Second protection layer.

具体实施方式detailed description

下面结合实施例对本发明做进一步详细说明:Below in conjunction with embodiment the present invention is described in further detail:

实施例1Example 1

如图1-图5所示,本发明提供了一种基于太阳能离网光伏发电系统,包括发电系统主体1和主体支撑架3,发电系统主体1的底部四周设置有主体支撑架3,发电系统主体1的内壁上设置有保护透明外板2,保护透明外板2用于对内部的机构进行保护,发电系统主体1的内部设置有外壳加固内层8,外壳加固内层8用于提高装置外壳的坚硬度,保护透明外板2的表面四周固定安装在发电系统主体1的内壁上,主体支撑架3的顶部固定安装在发电系统主体1的底部四周,发电系统主体1的内部设置有外壳加固外层4,外壳加固外层4的表面四周固定安装在发电系统主体1的内部,发电系统主体1的内部且位于外壳加固外层4的内侧设置有中心支撑板6,中心支撑板6的表面四周固定安装在外壳加固外层4的内侧,且中心支撑板6的底部设置有加固下直板5,加固下直板5的顶部固定安装在中心支撑板6的底部,且加固下直板5的表面四周固定安装在外壳加固外层4的内侧,中心支撑板6的顶部设置有加固上直板7,加固上直板7的底部固定安装在中心支撑板6的顶部,发电系统主体1的内部且位于加固上直板7的顶部设置有外壳加固内层8,发电系统主体1内部的外壳加固外层4与外壳加固内层8结合使发电系统主体1更加坚韧,避免发电系统主体1发生断裂,外壳加固内层8的底部固定安装在加固上直板7的顶部,且外壳加固内层8的表面四周固定安装在发电系统主体1的内部。As shown in Figures 1 to 5, the present invention provides an off-grid photovoltaic power generation system based on solar energy, including a power generation system main body 1 and a main body support frame 3, the main body support frame 3 is arranged around the bottom of the power generation system main body 1, and the power generation system The inner wall of the main body 1 is provided with a protective transparent outer plate 2, which is used to protect the internal mechanism, and the inside of the main body 1 of the power generation system is provided with a shell reinforcement inner layer 8, which is used to improve the device The hardness of the shell protects the surface of the transparent outer plate 2 and is fixedly installed on the inner wall of the main body 1 of the power generation system. The top of the main body support frame 3 is fixedly installed around the bottom of the main body 1 of the power generation system. Reinforce the outer layer 4, and the surrounding surface of the reinforced outer layer 4 is fixedly installed inside the main body 1 of the power generation system. A central support plate 6 is arranged inside the main body 1 of the power generation system and on the inner side of the reinforced outer layer 4 of the outer shell. The center support plate 6 The periphery of the surface is fixedly installed on the inner side of the reinforced outer layer 4 of the shell, and the bottom of the central support plate 6 is provided with a reinforced lower straight plate 5, and the top of the reinforced lower straight plate 5 is fixedly installed on the bottom of the central support plate 6, and the surface of the reinforced lower straight plate 5 The four sides are fixedly installed on the inner side of the reinforced outer layer 4 of the shell, the top of the central support plate 6 is provided with a reinforced upper straight plate 7, and the bottom of the reinforced upper straight plate 7 is fixedly installed on the top of the central support plate 6, and the main body of the power generation system 1 is located inside the reinforced The top of the upper straight plate 7 is provided with a shell reinforcement inner layer 8, and the shell reinforcement outer layer 4 inside the power generation system main body 1 is combined with the shell reinforcement inner layer 8 to make the power generation system main body 1 tougher and prevent the power generation system main body 1 from breaking. The bottom of the layer 8 is fixedly installed on the top of the reinforced upper straight plate 7 , and the surface of the shell reinforced inner layer 8 is fixedly installed inside the main body 1 of the power generation system.

实施例2Example 2

如图1-5所示,在实施例1的基础上,本发明提供一种技术方案:发电系统主体1的内壁上且位于保护透明外板2的底部设置有热能光伏板9,发电系统主体1内壁上的热能光伏板9可以对太阳能进行吸收,热能光伏板9的顶部固定安装在保护透明外板2的底部,且热能光伏板9的表面四周固定安装在发电系统主体1的内壁上,热能光伏板9的底部固定安装有传输器10,传输器10的表面四周固定安装在发电系统主体1的内壁上,发电系统主体1的内壁上且位于传输器10的底部设置有热能转换主体11,热能转换主体11的外侧固定安装在发电系统主体1的内壁上,热能转换主体11的内壁上设置有电力储存器12,电力储存器12的底固定安装在热能转换主体11的内壁上,且电力储存器12的顶部设置有电力转换器13,热能转换主体11内部的电力转换器13可以将热量转换成电能,再利用电力储存器12将电力进行储存,电力转换器13的底部固定安装在电力储存器12的顶部,且电力转换器13的顶部四周设置有输送缆线14,输送缆线14的底部固定安装在电力转换器13的顶部四周,且输送缆线14的顶部固定安装在热能转换主体11的内壁上,保护透明外板2的内壁上设置有第一保护层15,第一保护层15的外侧固定安装在保护透明外板2的内壁上,且第一保护层15的表面四周固定安装在保护透明外板2的内壁上,保护透明外板2的内壁上且位于第一保护层15的内侧设置有第二保护层16,保护透明外板2内部的第一保护层15与第二保护层16结合在一起能够使保护透明外板2整体更加坚韧,使保护透明外板2更好地对发电系统主体1内部机构进行保护,第二保护层16的外侧固定安装在第一保护层15的内侧,且第二保护层16的表面四周固定安装在保护透明外板2的内壁上。As shown in Figures 1-5, on the basis of Embodiment 1, the present invention provides a technical solution: a thermal photovoltaic panel 9 is provided on the inner wall of the power generation system main body 1 and at the bottom of the protective transparent outer panel 2, and the power generation system main body 1 The thermal photovoltaic panel 9 on the inner wall can absorb solar energy, the top of the thermal photovoltaic panel 9 is fixedly installed on the bottom of the protective transparent outer panel 2, and the surface of the thermal photovoltaic panel 9 is fixed on the inner wall of the main body 1 of the power generation system, A transmitter 10 is fixedly installed on the bottom of the thermal photovoltaic panel 9, and the surface of the transmitter 10 is fixedly installed on the inner wall of the main body 1 of the power generation system. The outer side of the thermal energy conversion main body 11 is fixedly installed on the inner wall of the power generation system main body 1, the inner wall of the thermal energy conversion main body 11 is provided with a power storage device 12, and the bottom of the power storage device 12 is fixedly installed on the inner wall of the thermal energy conversion main body 11, and The top of the power storage 12 is provided with a power converter 13. The power converter 13 inside the thermal energy conversion body 11 can convert heat into electrical energy, and then use the power storage 12 to store the power. The bottom of the power converter 13 is fixedly installed on the The top of the power storage 12, and the top of the power converter 13 is provided with transmission cables 14 around, the bottom of the transmission cables 14 is fixedly installed around the top of the power converter 13, and the top of the transmission cables 14 is fixedly installed on the thermal energy On the inner wall of the conversion body 11, the inner wall of the protective transparent outer panel 2 is provided with a first protective layer 15, the outer side of the first protective layer 15 is fixedly installed on the inner wall of the protective transparent outer panel 2, and the surface of the first protective layer 15 The surroundings are fixedly installed on the inner wall of the transparent outer panel 2 to protect the inner wall of the transparent outer panel 2 and the inner side of the first protective layer 15 is provided with a second protective layer 16 to protect the first protective layer 15 inside the transparent outer panel 2 Combining with the second protective layer 16 can make the protective transparent outer panel 2 tougher as a whole, so that the protective transparent outer panel 2 can better protect the internal mechanism of the main body 1 of the power generation system. The outer side of the second protective layer 16 is fixedly installed on the second The inner side of the first protective layer 15 and the surrounding surface of the second protective layer 16 are fixedly installed on the inner wall of the protective transparent outer panel 2 .

下面具体说一下该基于太阳能离网光伏发电系统的工作原理。Let's talk about the working principle of the off-grid photovoltaic power generation system based on solar energy.

如图1-5所示,在使用时,通过发电系统主体1内部的外壳加固外层4与外壳加固内层8结合使发电系统主体1更加坚韧,避免发电系统主体1发生断裂,随后通过发电系统主体1内壁上的热能光伏板9对太阳能进行吸收,然后通过传输器10输送给热能转换主体11,最后通过热能转换主体11内部的电力转换器13将热量转换成电能,再利用电力储存器12将电力进行储存。As shown in Figures 1-5, when in use, the combination of the shell reinforcement outer layer 4 inside the power generation system main body 1 and the shell reinforcement inner layer 8 makes the power generation system main body 1 tougher, avoiding the breakage of the power generation system main body 1, and then through the power generation system. The thermal photovoltaic panel 9 on the inner wall of the system main body 1 absorbs solar energy, and then transmits it to the thermal energy conversion main body 11 through the transmitter 10, and finally converts the heat into electrical energy through the power converter 13 inside the thermal energy conversion main body 11, and then uses the power storage 12 Store electricity.

上文一般性的对本发明做了详尽的描述,但在本发明基础上,可以对之做一些修改或改进,这对于技术领域的一般技术人员是显而易见的。因此,在不脱离本发明思想精神的修改或改进,均在本发明的保护范围之内。The above has generally described the present invention in detail, but some modifications or improvements can be made on the basis of the present invention, which are obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims (8)

1. The utility model provides a based on solar energy is from net photovoltaic power generation system, includes power generation system main part (1) and main part support frame (3), the bottom of power generation system main part (1) is provided with main part support frame (3), its characterized in that all around: a protective transparent outer plate (2) is arranged on the inner wall of the power generation system main body (1), and the protective transparent outer plate (2) is used for protecting internal mechanisms;
the power generation system is characterized in that a shell reinforcing inner layer (8) is arranged inside the power generation system main body (1), and the shell reinforcing inner layer (8) is used for improving the rigidity of a device shell.
2. The solar-based off-grid photovoltaic power generation system of claim 1, wherein: the surface of the transparent outer plate (2) is fixedly arranged on the inner wall of the power generation system main body (1) all around, the top of the main body supporting frame (3) is fixedly arranged on the periphery of the bottom of the power generation system main body (1), the outer layer (4) of the shell reinforcement is arranged in the power generation system main body (1), and the surface of the outer layer (4) of the shell reinforcement is fixedly arranged on the periphery of the inside of the power generation system main body (1).
3. The solar-based off-grid photovoltaic power generation system of claim 1, wherein: the inside of power generation system main part (1) and the inboard that is located shell reinforcement skin (4) are provided with center support board (6), fixed mounting is in the inboard of shell reinforcement skin (4) around the surface of center support board (6), just the bottom of center support board (6) is provided with under the reinforcement straight board (5), the top fixed mounting of reinforcing down straight board (5) is in the bottom of center support board (6), just the surface of reinforcing down straight board (5) is fixed mounting all around in the inboard of shell reinforcement skin (4), the top of center support board (6) is provided with and consolidates straight board (7), the bottom fixed mounting who consolidates straight board (7) is at the top of center support board (6).
4. The solar-based off-grid photovoltaic power generation system of claim 1, wherein: the inside of power generation system main part (1) and the top that is located and consolidates straight board (7) are provided with shell reinforcement inlayer (8), the bottom fixed mounting of shell reinforcement inlayer (8) is at the top of consolidating straight board (7), just fixed mounting is around the surface of shell reinforcement inlayer (8) in the inside of power generation system main part (1).
5. The off-grid solar-based photovoltaic power generation system of claim 1, wherein: the bottom that just is located protection transparent planking (2) on the inner wall of power generation system main part (1) is provided with heat energy photovoltaic board (9), the top fixed mounting of heat energy photovoltaic board (9) is in the bottom of protection transparent planking (2), just the fixed mounting is all around on the inner wall of power generation system main part (1) on the surface of heat energy photovoltaic board (9), the bottom fixed mounting of heat energy photovoltaic board (9) has transmitter (10), the fixed mounting is all around on the inner wall of power generation system main part (1) on the surface of transmitter (10).
6. The solar-based off-grid photovoltaic power generation system of claim 1, wherein: the power generation system comprises a power generation system main body (1), wherein a heat energy conversion main body (11) is arranged on the inner wall of the power generation system main body (1) and located at the bottom of a transmitter (10), the outer side of the heat energy conversion main body (11) is fixedly arranged on the inner wall of the power generation system main body (1), an electric power storage device (12) is arranged on the inner wall of the heat energy conversion main body (11), the bottom of the electric power storage device (12) is fixedly arranged on the inner wall of the heat energy conversion main body (11), a power converter (13) is arranged at the top of the electric power storage device (12), the bottom of the power converter (13) is fixedly arranged on the top of the electric power storage device (12), a transmission cable (14) is arranged on the periphery of the top of the power converter (13), and the top of the transmission cable (14) is fixedly arranged on the inner wall of the heat energy conversion main body (11).
7. The solar-based off-grid photovoltaic power generation system of claim 1, wherein: be provided with first protective layer (15) on the inner wall of protection transparent planking (2), the outside fixed mounting of first protective layer (15) is on the inner wall of protection transparent planking (2), just fixed mounting is all around on the inner wall of protection transparent planking (2) in the surface of first protective layer (15).
8. The off-grid solar-based photovoltaic power generation system of claim 1, wherein: the inner side of the first protection layer (15) on the inner wall of the transparent protection outer plate (2) is provided with a second protection layer (16), the outer side of the second protection layer (16) is fixedly arranged on the inner side of the first protection layer (15), and the periphery of the surface of the second protection layer (16) is fixedly arranged on the inner wall of the transparent protection outer plate (2).
CN202210418033.2A 2022-04-20 2022-04-20 Off-grid photovoltaic power generation system based on solar energy Withdrawn CN115528993A (en)

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Publication number Priority date Publication date Assignee Title
JP2013122960A (en) * 2011-12-09 2013-06-20 Crystal System:Kk Photovoltaic power generator
CN104682850A (en) * 2013-11-26 2015-06-03 西安联控电气有限责任公司 Light photovoltaic solar panel for roof
CN106452284A (en) * 2016-10-31 2017-02-22 十堰市扬天节能环保工程有限公司 Solar photovoltaic power generation device of frame through-conductor type
CN107257224A (en) * 2017-07-27 2017-10-17 长兴澳蓝电力科技有限公司 A kind of solar energy roof generating equipment of high safety
KR20200124451A (en) * 2019-04-24 2020-11-03 임명수 Heat release apparatus for combiner box in solar power generating system
CN214799408U (en) * 2021-04-22 2021-11-19 王忠铭 Junction box for solar energy transmission

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013122960A (en) * 2011-12-09 2013-06-20 Crystal System:Kk Photovoltaic power generator
CN104682850A (en) * 2013-11-26 2015-06-03 西安联控电气有限责任公司 Light photovoltaic solar panel for roof
CN106452284A (en) * 2016-10-31 2017-02-22 十堰市扬天节能环保工程有限公司 Solar photovoltaic power generation device of frame through-conductor type
CN107257224A (en) * 2017-07-27 2017-10-17 长兴澳蓝电力科技有限公司 A kind of solar energy roof generating equipment of high safety
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Application publication date: 20221227