WO2024051417A1 - 收纳包和太阳能组合设备 - Google Patents

收纳包和太阳能组合设备 Download PDF

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Publication number
WO2024051417A1
WO2024051417A1 PCT/CN2023/111339 CN2023111339W WO2024051417A1 WO 2024051417 A1 WO2024051417 A1 WO 2024051417A1 CN 2023111339 W CN2023111339 W CN 2023111339W WO 2024051417 A1 WO2024051417 A1 WO 2024051417A1
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WO
WIPO (PCT)
Prior art keywords
package body
reflective layer
storage bag
reflective
ground
Prior art date
Application number
PCT/CN2023/111339
Other languages
English (en)
French (fr)
Inventor
何嘉进
白炜
于华君
严逸驹
Original Assignee
深圳市华宝新能源股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市华宝新能源股份有限公司 filed Critical 深圳市华宝新能源股份有限公司
Publication of WO2024051417A1 publication Critical patent/WO2024051417A1/zh

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Classifications

    • 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
    • H02S10/00PV power plants; Combinations of PV energy systems with other systems for the generation of electric power
    • H02S10/40Mobile PV generator systems
    • 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
    • H02S30/00Structural details of PV modules other than those related to light conversion
    • H02S30/20Collapsible or foldable PV modules
    • 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
    • H02S40/20Optical components
    • H02S40/22Light-reflecting or light-concentrating means

Definitions

  • This application relates to the technical field of solar energy equipment, in particular to storage bags and solar energy combination equipment.
  • both the light-receiving surface and the backlight surface of bifacial solar cells can generate electricity, their overall power generation efficiency is higher than that of single-facial solar cells. Therefore, more and more solar panels use bifacial solar cells. Since the luminous flux on the back of a double-sided solar panel is less, it is generally necessary to install a separate reflective piece to improve the power generation efficiency on the back of the double-sided solar panel.
  • the purpose of this application is to provide a storage bag and solar combination equipment that can improve the power generation efficiency of double-sided solar panels, while avoiding the need for users to carry a separate reflective device and improving the user experience.
  • a storage bag for storing double-sided solar panels.
  • the storage bag includes:
  • a first package body, a first reflective layer is provided on the inside of the first package body
  • a second package body is connected to the first package body.
  • a second reflective layer is provided on the inside of the second package body. Both the first package body and the second package body can be maintained at an angle inclined to the ground. state, so that the first reflective layer and the second reflective layer are disposed obliquely upward.
  • the storage bag further includes a reflective piece, one end of the reflective piece is connected to the first bag body and/or the second bag body, and the other end of the reflective piece is connected to the first bag body and/or the second bag body. One end extends to the side facing the first reflective layer and the second reflective layer.
  • the reflective member can be laid flat on the ground and carry the double-sided solar panel. The upward side of the reflective member is provided with a third Three reflective layers.
  • the reflective member is configured in a foldable structure; and/or the reflective member can be stored between the first bag body and the second bag body.
  • the reflective member is detachably connected to the first bag body and/or the second bag body.
  • the storage bag further includes a position maintaining component, which is used to maintain the angle between the first bag body and the second bag body and the ground.
  • the position maintaining component includes an opposite first end and a second end, and the first end is connected to the first bag body and the second bag body, so The second end is connected to one of the double-sided solar panel and the ground.
  • the distance between the second end and the first end is adjustable.
  • the position maintaining assembly further includes two limiting straps, and the two ends of the limiting straps are respectively set as the first end and the second end.
  • the first end is rotatably connected to the first package body and the second package body respectively, and the second end is connected to the double-sided solar panel; or the position maintaining assembly further includes a fastening nail. , the fastening nail is fixed on the ground, and the second end is connected to the fastening nail.
  • the position maintaining assembly includes fixing ears and a support rod.
  • the fixing ears are provided on the sides of the first bag body and the second bag body.
  • the support bar The upper end of the rod is inserted into the fixed ear, and the lower end of the support rod is pressed against the ground.
  • the position maintaining component includes a support member, and the support member is disposed when the first bag body faces away from the first reflective layer and when the second bag body faces away from the second reflective layer.
  • One side of the two reflective layers, one end of the support member, the first package body and the second package body are respectively connected to one end of at least one of the support members, and the other end of the support member is pressed against the ground .
  • a plurality of light trapping structures are provided on the first reflective layer and/or the second reflective layer.
  • a solar energy combination device including a double-sided solar panel and a storage bag as described above.
  • the double-sided solar panel includes a panel assembly and a bracket, and the upper end of the bracket is connected to the upper side of the panel assembly.
  • the double-sided solar panels are arranged in a foldable structure, and the panel area of the first package body and/or the second package body is smaller than that after the solar panels are unfolded.
  • the area of the first package body and/or the second package body is greater than the folded area of the solar panel.
  • a first reflective layer and a second reflective layer are respectively provided on the inside of the first bag body and the second bag body. After the storage bag is unfolded, both the first bag body and the second bag body can be kept in place.
  • the ground is tilted so that the first reflective layer and the second reflective layer provide a reflective structure for the double-sided solar panel that is tilted on the ground.
  • the first reflective layer and the second reflective layer emit sunlight to the downward-facing double-sided solar panel. on the back side, thereby improving the power generation efficiency of the double-sided solar panel, while avoiding the need for users to carry a separate reflective device, and improving the user experience.
  • Figure 1 is a schematic structural diagram of the solar energy combination device provided in Embodiment 1 of the present application in an unfolded state;
  • FIG. 2 is a schematic structural diagram of the solar combination equipment provided in Embodiment 1 of the present application in a stowed state;
  • FIG. 3 is a schematic structural diagram of the solar energy combination device provided in Embodiment 2 of the present application in an unfolded state;
  • FIG. 4 is a schematic structural diagram of the solar energy combination device provided in the third embodiment of the present application in an unfolded state
  • FIG. 5 is a schematic structural diagram of the solar energy combination device provided in the fourth embodiment of the present application in an unfolded state.
  • Solar energy combination equipment 1. Storage bag; 11. First package body; 111. First reflective layer; 112. Hook strap; 12. Second package body; 121. Second reflective layer; 13. Reflective parts; 131 , The third reflective layer; 141. Limiting belt; 142. Fastening nails; 143. Fixing ears; 144. Support rods; 145. Support parts; 2. Double-sided solar panels; 21. Panel components; 22. Brackets.
  • the solar energy combination device 100 includes a storage bag 1 and a double-sided solar panel 2 .
  • the storage bag 1 When the double-sided solar panel 2 is not in use, the storage bag 1 is closed and the double-sided solar panel 2 is stored in it; when the double-sided solar panel 2 is in use, the storage bag 1 can reflect sunlight to the double-sided solar panel. 2 to improve the power generation efficiency of the double-sided solar panel 2.
  • the storage bag 1 includes a first bag body 11 and a second bag body 12.
  • a first reflective layer 111 is provided on the inside of the first bag body 11; the second bag body 12 is rotatably connected to the first bag body 11. , so that the storage bag 1 can be switched between the unfolded state and the stowed state.
  • a second reflective layer 121 is provided on the inside of the second bag body 12. Both the first bag body 11 and the second bag body 12 can be maintained at an angle with the ground. state, so that the first reflective layer 111 and the second reflective layer 121 are disposed obliquely upward.
  • the first reflective layer 111 and the second reflective layer 121 are respectively provided inside the first bag body 11 and the second bag body 12. After the storage bag 1 is unfolded, the first bag 1 Both the body 11 and the second package body 12 can be maintained in a tilted state with the ground, so that the first reflective layer 111 and the second reflective layer 121 provide a reflective structure for the double-sided solar panel 2 that is diagonally supported on the ground.
  • the first reflective layer 111 and the second reflective layer 121 emit sunlight to the back of the downward-facing double-sided solar panel 2, thereby improving the power generation efficiency of the double-sided solar panel 2, while avoiding the need for users to carry separate reflective parts, and improving the user experience. .
  • the storage bag 1 also includes a reflective member 13.
  • One end of the reflective member 13 is connected to the first bag body 11 and/or the second bag body 12.
  • the other end of the optical member 13 extends to the side facing the first reflective layer 111 and the second reflective layer 121.
  • the reflective member 13 can be laid flat on the ground and carry the double-sided solar panel 2.
  • the upward side of the reflective member 13 is provided with a third Three reflective layers 131.
  • the third reflective layer 131 cooperates with the first reflective layer 111 and the second reflective layer 121 to reflect sunlight to the back of the double-sided solar panel 2 through one reflection or two reflections to further improve the efficiency of the double-sided solar panel. 2. Power generation efficiency.
  • the reflective member 13 can extend to the front of the double-sided solar panel 2 when unfolded, and the part of the third reflective layer 131 located in front of the double-sided solar panel 2 reflects sunlight to the front of the double-sided solar panel 2, thereby The power generation efficiency of the double-sided solar panel 2 is further improved.
  • the reflective member 13 is configured in a foldable structure so as to be easily stored between the first bag body 11 and the second bag body 12 .
  • the bottom surface of the reflective member 13 is made of fabric, and the third reflective layer 131 is disposed above the fabric.
  • the reflective member 13 is detachably connected to the first package body 11 and/or the second package body 12 .
  • the reflective member 13 is detachably connected to both the first bag body 11 and the second bag body 12.
  • the detachable connection can be realized through magic glue, a zipper structure, etc.
  • the first reflective layer 111 and/or the second reflective layer 121 are provided with multiple light trapping structures.
  • the third reflective layer 131 is provided with a plurality of light trapping structures.
  • the storage bag 1 also includes a position maintaining component, which is used to maintain the angle between the first bag body 11 and the second bag body 12 and the ground.
  • the position maintaining component includes opposite first and second ends, the first end is connected to the first package body 11 and the second package body 12, and the second end is connected to the double-sided solar panel 2 and the ground. On one of them.
  • the distance between the second end and the first end is adjustable.
  • the position-maintaining component is configured as a flexible structure.
  • the position-maintaining component also includes a body.
  • the first end and the second end are respectively located at opposite ends of the body.
  • the second end can be connected to the body to form an annular structure together with the body.
  • the annular structure can be placed on the double-sided solar panel 2, and the connection position between the second end and the main body is adjustable.
  • the position maintaining assembly includes two limiting straps 141.
  • the two ends of the limiting straps 141 are respectively set as first ends and second ends.
  • the two first ends are respectively connected with the first end.
  • the package body 11 and the second package body 12 are rotatably connected in one-to-one correspondence.
  • the second end is connected to the double-sided solar panel 2.
  • a male buckle is provided on the first end
  • a female buckle is provided on the body
  • a Magic Sticker is provided on one side of the second end.
  • one side of the body is provided with magic tape, the magic tape on the body extends to a certain length, and there is a certain distance between the magic tape and the female buckle.
  • the first ends of the two limiting straps 141 pass through the hook straps 112 of the first bag body 11 and the second bag body 12 respectively, and are matched with the female buckles on the body of the limiting straps 141 through the male buckles at the first ends. , so that one end of the two limiting straps 141 is connected to the first package body 11 and the second package body 12 respectively, and the second end of the limiting strap 141 passes through the double-sided solar panel 2 and passes through the magic adhesive on the second end. Cooperate with the magic glue on the body to connect the second end to the double-sided solar panel 2, so that the first package body 11 and the second package body 12 are at a certain angle with the ground. Ideally, the first package body The body 11 and the second package body 12 are parallel to the panel assembly 21 .
  • the Magic Stick on the body has a certain length on the body
  • the connection position of the Magic Stick on the second end and the Magic Stick on the body the position is adjusted to maintain the distance between the second end of the component and the first end. Then, adjust the inclination angle of the first package body 11 and the second package body 12 relative to the ground, so that the first package body 11 and the second package body 12 are parallel to the panel assembly 21 .
  • a male buckle can also be provided on the second end, and a plurality of male buckles can be provided at intervals on the side of the body close to the second end.
  • the female buckle by adjusting the matching position of the male buckle on the second end and the female buckle on the body, the distance between the second end of the limiting strap 141 and the first end is adjustable.
  • the position maintaining assembly may also include a first part and a second part connected to each other, the first end is formed on the first part and is away from the second part, and the second end is formed on the second part. and away from the first part, and the second part can slide along the length direction of the first part to adjust the distance of the second end relative to the first end.
  • the double-sided solar panel 2 mainly includes a panel assembly 21 and a bracket 22 .
  • the panel assembly 21 is provided with double-sided solar cells.
  • the bracket 22 is located on the back of the panel assembly 21.
  • the upper end of the bracket 22 is rotationally connected to the upper end of the panel assembly 21.
  • the lower end of the bracket 22 is a free end, and the lower end of the bracket 22 can abut against the panel assembly 21.
  • the first package body 11 and the second package body 12 can also be in contact with the reflective member 13 , and the bracket 22 has a hollow structure to reduce the blocking of light from the back of the panel assembly 21 .
  • the double-sided solar panel 2 is arranged in a foldable structure, the panel area of the first package body 11 and/or the second package body 12 is smaller than the expanded area of the solar panel, and the first package body 11 and/or the second package body 12 are smaller than the expanded area of the solar panel.
  • the panel area of the package body 12 is larger than the folded area of the solar panel.
  • the panel areas of the first package body 11 and the second package body 12 are both smaller than the expanded area of the solar panel, and the panel areas of the first package body 11 and the second package body 12 are both larger than the folded solar panel.
  • the latter area can increase the panel area of the double-sided solar panel 2 while the volume of the storage bag 1 remains unchanged, thereby further improving the power generation efficiency.
  • the solar energy combination equipment 100 provided by this application has the following beneficial effects:
  • the inside of the storage bag 1 is provided with a first reflective layer 111, a second reflective layer 121 and a detachably connected reflective member 13. While improving the power generation efficiency of the double-sided solar panel 2, the user does not need to carry a separate reflective device. , improve user experience;
  • the first package body 11 and the second package body 12 are maintained at a preset tilt angle through the position maintaining assembly, thereby making the first package body 11 , the second package body 12 and the panel assembly 21 of the double-sided solar panel 2 parallel. , improving the power generation efficiency on the back side of the double-sided solar panel 2;
  • the position maintaining component is flexible.
  • the limiting strap 141 can be wrapped/folded to save space.
  • the distance between the second end of the position maintaining component and the first end is adjustable, so that the inclination angles of the first bag body 11 and the second bag body 12 relative to the ground can be adjusted, thereby making the first bag body 11 and the second bag body
  • the inclination angle of the body 12 can be adjusted along with the adjustment of the angle of the panel assembly 21 of the double-sided solar panel 2, further improving the power generation efficiency of the double-sided solar panel 2.
  • the difference between the solar energy combination equipment 100 provided in this embodiment and the storage bag 1 provided in this embodiment and Embodiment 1 is that: two sets of position maintaining components are provided, and two hook straps 112 are respectively provided on On the two separated sides of the first bag body 11 and the second bag body 12, the position maintaining assembly also includes two fastening nails 142.
  • the two fastening nails 142 are respectively fixed to the first bag body 11 and the second bag body.
  • the two first ends are connected to two hook straps 112 respectively, and the two second ends are connected to two fastening nails 142 in one-to-one correspondence.
  • the position maintaining assembly includes fixed ears 143 and a support rod 144.
  • the two fixed ears 143 is provided on the two separated sides of the first package body 11 and the second package body 12.
  • the upper end of the support rod 144 is inserted into the fixed ear 143, and the lower end of the support rod 144 is pressed against the ground to define the first The angle between the package body 11, the second package body 12 and the ground.
  • the two fixing ears 143 are respectively connected with the corresponding first package body 11 or the second package body 12 to rotate around the horizontal axis, and the support rod 144 is set as a telescopic rod structure, or the connection position between the support rod 144 and the fixed ears 143 It is adjustable, thereby making it easy to adjust the angle between the first bag body 11, the second bag body 12 and the ground.
  • this embodiment provides another solar energy combination device 100 and a storage bag 1.
  • the position maintaining assembly includes a support member 145, and the support member 145 is disposed on The first package body 11 faces away from the first reflective layer 111 and the second package body 12 faces away from the second reflective layer 121 .
  • One end of the support member 145 is connected to the first package body 11 and the second package body 12 respectively.
  • the support member 145 The other end is pressed against the ground, thereby defining the angle between the first package body 11, the second package body 12 and the ground.
  • the support member 145 is rotatably connected to the corresponding first package body 11 or the second package body 12 around a horizontal axis, and the angle between the support member 145 and the corresponding first package body 11 or the second package body 12 can be It is fixed at multiple angles, such as 30 degrees, 45 degrees, 60 degrees, 90 degrees, etc., so as to facilitate the adjustment of the angle between the first bag body 11, the second bag body 12 and the ground.

Abstract

一种收纳包(1)包括第一包体(11)及第二包体(12),第一包体(11)设有第一反光层(111);第二包体(12)连接于第一包体(11),第二包体(12)设有第二反光层(121),第一包体(11)和第二包体(12)均能够保持于与地面倾斜的状态,以使第一反光层(111)和第二反光层(121)朝斜上方设置。

Description

收纳包和太阳能组合设备
优先权信息
本申请请求2022年09月06日向中国国家知识产权局提交的、专利申请号为202211096116.0的专利申请的优先权和权益,并且通过参照将其全文并入此处。
技术领域
本申请涉及太阳能设备技术领域,尤其涉及收纳包和太阳能组合设备。
背景技术
双面太阳能电池片由于其受光面和背光面均可以发电,因此其综合发电效率高于单面太阳能电池片,因此越来越多的太阳能板采用双面太阳能电池片。双面太阳能板由于其背面的光通量较少,一般需要设置单独的反光件来提高双面太阳能板背面的发电效率。
发明内容
基于以上所述,本申请的目的在于提供收纳包和太阳能组合设备,能够提高双面太阳能板发电效率,同时避免用户需要携带单独的反光装置,改善用户的使用体验。
为达上述目的,本申请采用以下技术方案:
提供收纳包,用于收纳双面太阳能板,所述收纳包包括:
第一包体,所述第一包体的内侧设置有第一反光层;
第二包体,连接于所述第一包体,所述第二包体的内侧设置有第二反光层,所述第一包体和所述第二包体均能够保持于与地面倾斜的状态,以使所述第一反光层和所述第二反光层朝斜上方设置。
作为收纳包的一个可选的技术方案,所述收纳包还包括反光件,所述反光件的一端连接于所述第一包体和/或所述第二包体,所述反光件的另一端向所述第一反光层和所述第二反光层朝向的一侧延伸,所述反光件能够平铺于地面并承载所述双面太阳能板,所述反光件朝上的一面设有第三反光层。
作为收纳包的一个可选的技术方案,所述反光件设置为可折叠结构;和/或所述反光件能够收纳于所述第一包体与所述第二包体之间。
作为收纳包的一个可选的技术方案,所述反光件与所述第一包体和/或所述第二包体可拆卸连接。
作为收纳包的一个可选的技术方案,所述收纳包还包括位置保持组件,所述位置保持组件用于保持所述第一包体和所述第二包体与地面之间的夹角。
作为收纳包的一个可选的技术方案,所述位置保持组件包括相对的第一端和第二端,所述第一端连接于所述第一包体和所述第二包体上,所述第二端连接于所述双面太阳能板和地面中的其中一个上。
作为收纳包的一个可选的技术方案,所述第二端与所述第一端之间的距离可调节。
作为收纳包的一个可选的技术方案,所述位置保持组件还包括两根限位带,所述限位带的两端分别设置为所述第一端和所述第二端,两个所述第一端分别与所述第一包体和所述第二包体一一对应转动连接,所述第二端与所述双面太阳能板连接;或者所述位置保持组件还包括紧固钉,所述紧固钉固定于地面,所述第二端与所述紧固钉连接。
作为收纳包的一个可选的技术方案,所述位置保持组件包括固定耳和支撑杆,所述第一包体和所述第二包体的侧边均设有所述固定耳,所述支撑杆的上端插设于所述固定耳中,所述支撑杆的下端压抵于地面。
作为收纳包的一个可选的技术方案,所述位置保持组件包括支撑件,所述支撑件设置于所述第一包体背离所述第一反光层以及所述第二包体背离所述第二反光层的一面,所述支撑件的一端与所述第一包体和所述第二包体分别与至少一个所述支撑件的一端对应连接,所述支撑件的另一端压抵于地面。
作为收纳包的一个可选的技术方案,所述第一反光层和/或所述第二反光层上设有多个陷光结构。
第二方面,提供太阳能组合设备,包括双面太阳能板和如上所述的收纳包,所述双面太阳能板包括面板组件和支架,所述支架的上端连接于所述面板组件的上侧。
作为太阳能组合设备的一个可选的技术方案,所述双面太阳能板设置为可折叠结构,所述第一包体和/或所述第二包体的板面面积小于所述太阳能板展开后的面积,且所述第一包体和/或所述第二包体的板面面积大于所述太阳能板折叠后的面积。
本申请的有益效果为:
本申请提供的收纳包中,第一包体和第二包体的内侧分别设置第一反光层和第二反光层,收纳包展开后,第一包体和第二包体均可保持于与地面倾斜的状态,使第一反光层和第二反光层为斜撑于地上的双面太阳能板提供反光结构,第一反光层和第二反光层将太阳光发射至朝下方的双面太阳能板的背面,从而提高双面太阳能板发电效率,同时避免了用户需要携带单独的反光装置,改善了用户的使用体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对本申请实施例描述中所需要使用的附图作简单的介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普 通技术人员来讲,在不付出创造性劳动的前提下,还可以根据本申请实施例的内容和这些附图获得其他的附图。
图1是本申请实施例一提供的太阳能组合设备在展开状态下的结构示意图;
图2是本申请实施例一提供的太阳能组合设备在收起状态下的结构示意图;
图3是本申请实施例二提供的太阳能组合设备在展开状态下的结构示意图;
图4是本申请实施例三提供的太阳能组合设备在展开状态下的结构示意图;
图5是本申请实施例四提供的太阳能组合设备在展开状态下的结构示意图。
图中:
100、太阳能组合设备;1、收纳包;11、第一包体;111、第一反光层;112、钩带;12、第二包体;121、第二反光层;13、反光件;131、第三反光层;141、限位带;142、紧固钉;143、固定耳;144、支撑杆;145、支撑件;2、双面太阳能板;21、面板组件;22、支架。
具体实施方式
为使本申请解决的技术问题、采用的技术方案和达到的技术效果更加清楚,下面将结合附图对本申请实施例的技术方案作进一步的详细描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
实施例1:
如图1和图2所示,为本实施例提供的太阳能组合设备100,该太阳能组合设备100包括收纳包1和双面太阳能板2。在双面太阳能板2不使用的时候,收纳包1合起并将双面太阳能板2收纳于其中;在双面太阳能板2使用的时候,收纳包1能够将太阳光反射到双面太阳能板2的背面,以提高双面太阳能板2的发电效率。
如图1所示,收纳包1包括第一包体11和第二包体12,第一包体11的内侧设置有第一反光层111;第二包体12转动连接于第一包体11,使得收纳包1能够在展开状态和收起状态之间切换,第二包体12的内侧设置有第二反光层121,第一包体11和第二包体12均能够保持于与地面倾斜的状态,以使第一反光层111和第二反光层121朝斜上方设置。
具体而言,本实施例提供的收纳包1中,第一包体11和第二包体12的内侧分别设置第一反光层111和第二反光层121,收纳包1展开后,第一包体11和第二包体12均可保持于与地面倾斜的状态,使第一反光层111和第二反光层121为斜撑于地上的双面太阳能板2提供反光结构,第一反光层111和第二反光层121将太阳光发射至朝下方的双面太阳能板2的背面,从而提高双面太阳能板2的发电效率,同时避免了用户需要携带单独的反光件,改善了用户的使用体验。
进一步的,收纳包1还包括反光件13,反光件13的一端连接于第一包体11和/或第二包体12,反 光件13的另一端向第一反光层111和第二反光层121朝向的一侧延伸,反光件13能够平铺于地面并承载双面太阳能板2,反光件13朝上的一面设有第三反光层131。具体地,第三反光层131与第一反光层111和第二反光层121配合,通过一次反射或两次反射,将太阳光反射至双面太阳能板2的背面,以进一步提高双面太阳能板2发电效率。
更优的,反光件13展开平铺时能够延伸至双面太阳能板2的前方,第三反光层131位于双面太阳能板2前方的部分将太阳光反射至双面太阳能板2的正面,从而更进一步提高双面太阳能板2发电效率。
可选的,反光件13设置为可折叠结构,以便于收纳于第一包体11和第二包体12之间。在本实施例中,反光件13的底面为布料,第三反光层131设于布料的上方。
可选的,反光件13与第一包体11和/或第二包体12可拆卸连接。在本实施例中,反光件13与第一包体11和第二包体12均可拆卸连接,具体地,可拆卸连接的方式可以通过魔术粘、拉链结构等实现。
优选的,第一反光层111和/或第二反光层121上设有多个陷光结构。
优选的,第三反光层131上均设有多个陷光结构。
可选的,收纳包1还包括位置保持组件,位置保持组件用于保持第一包体11和第二包体12与地面之间的夹角。
可选的,位置保持组件包括相对的第一端和第二端,第一端连接于第一包体11和第二包体12上,第二端连接于双面太阳能板2和地面中的其中一个上。
优选的,第二端与第一端之间的距离可调节。
具体地,位置保持组件设置为柔性结构,位置保持组件还包括本体,第一端和第二端分别位于本体的相对两端,第二端能够连接于本体,以与本体共同构成一环形结构,环形结构能够套设于双面太阳能板2上,第二端与本体的连接位置可调节。在本实施例中,如图1所示,位置保持组件包括两根限位带141,限位带141的两端分别设置为第一端和第二端,两个第一端分别与第一包体11和第二包体12一一对应转动连接,第二端与双面太阳能板2连接,第一端上设置公扣,本体上设置有母扣,第二端的一侧设置有魔术粘,本体的一侧设置有魔术粘,本体上的魔术粘上延伸有一定的长度,魔术粘和母扣之间具有一定距离。
两个限位带141的第一端分别穿经第一包体11和第二包体12的钩带112,并通过第一端的公扣和限位带141的本体上的母扣相配合,使得两个限位带141的一端分别连接于第一包体11和第二包体12上,限位带141的第二端穿经双面太阳能板2,通过第二端上的魔术粘和本体上的魔术粘相配合,使得第二端连接于双面太阳能板2上,进而使得第一包体11和第二包体12与地面呈一定的角度,理想情况下,使得第一包体11和第二包体12与面板组件21平行。
进一步的,由于本体上的魔术粘在本体上有一定的长度,通过调整第二端的魔术粘与本体上的魔术粘的连接位置,从而调整位置保持组件的第二端相对第一端的距离,进而调整第一包体11和第二包体12相对地面的倾斜角度,使得第一包体11和第二包体12与面板组件21平行。
可以理解的是,为了使得第二端相对第一端的距离可调节,在一些其他实施例中,也可以在第二端上设置公扣,在本体上靠近第二端的一侧间隔设置多个母扣,通过调整第二端上的公扣与本体上的母扣的适配位置,从而使得限位带141的第二端相对第一端的距离可调。
可以理解的是,在一些其他实施例中,位置保持组件也可以包括相互连接的第一部和第二部,第一端形成于第一部且远离第二部,第二端形成于第二部且远离第一部,第二部可沿第一部的长度方向滑动,以调节第二端相对于第一端的距离。
双面太阳能板2主要包括面板组件21和支架22。面板组件21内设置有双面太阳能电池片,支架22位于面板组件21的背面,支架22的上端与面板组件21的上端转动连接,支架22的下端为自由端,支架22的下端可以抵接于第一包体11和第二包体12上,也可以抵接于反光件13上,支架22为镂空结构,以减少对面板组件21背面的光的遮挡。
优选的,双面太阳能板2设置为可折叠结构,第一包体11和/或第二包体12的板面面积小于太阳能板展开后的面积,且第一包体11和/或第二包体12的板面面积大于太阳能板折叠后的面积。在本实施例中,第一包体11和第二包体12的板面面积均小于太阳能板展开后的面积,第一包体11和第二包体12的板面面积均大于太阳能板折叠后的面积,在收纳包1体积不变的情况下,能够增大双面太阳能板2的板面面积,从而进一步提高发电效率。
本申请提供的太阳能组合设备100具有以下有益效果:
1、收纳包1的内侧设置有第一反光层111、第二反光层121和可拆卸连接的反光件13,在提升双面太阳能板2的发电效率的同时,用户不需要携带单独的反光装置,提高了用户体验;
2、通过位置保持组件使得第一包体11和第二包体12保持在预设的倾斜角度,进而使得第一包体11、第二包体12和双面太阳能板2的面板组件21平行,提高了双面太阳能板2背面的发电效率;
3、位置保持组件为柔性,当双太阳能板不使用的时候,限位带141可以缠绕/折叠,节省空间。
4、位置保持组件的第二端相对第一端的距离可调节,从而使得第一包体11、第二包体12相对地面的倾斜角度可调节,进而使得第一包体11和第二包体12的倾斜角度可以随着双面太阳能板2的面板组件21的角度的调整而调整,进一步提高了双面太阳能板2的发电效率。
实施例2:
如图3所示,本实施例所提供的太阳能组合设备100,本实施例所提供的收纳包1与实施例1的区别在于:位置保持组件设置有两组,两个钩带112分别设置于第一包体11和第二包体12相离的两个侧边,位置保持组件还包括两个紧固钉142,两个紧固钉142分别固定于第一包体11和第二包体12两侧的地面上,两个第一端分别与两个钩带112连接,两个第二端分别与两个紧固钉142一一对应连接。
实施例3:
如图4所示,本实施例所提供的太阳能组合设备100,本实施例所提供的收纳包1与实施例1的区别在于:位置保持组件包括固定耳143和支撑杆144,两个固定耳143设置于第一包体11和第二包体12相离的两个侧边,支撑杆144的上端插设于固定耳143中,支撑杆144的下端压抵于地面,以此限定第一包体11、第二包体12与地面之间的夹角。
优选的,两个固定耳143分别与对应第一包体11或第二包体12绕水平轴线转动连接,支撑杆144设置为伸缩杆结构,或者支撑杆144与固定耳143之间的连接位置可调,从而便于调整第一包体11、第二包体12与地面之间的夹角。
实施例4:
如图5所示,本实施例提供另太阳能组合设备100和收纳包1,本实施例所提供的收纳包1与实施例1的区别在于:位置保持组件包括支撑件145,支撑件145设置于第一包体11背离第一反光层111以及第二包体12背离第二反光层121的一面,支撑件145的一端与第一包体11和第二包体12分别对应连接,支撑件145的另一端压抵于地面,以此限定第一包体11、第二包体12与地面之间的夹角。
优选的,支撑件145与对应的第一包体11或第二包体12绕水平轴线转动连接,且支撑件145与对应的第一包体11或第二包体12之间的夹角可固定于多个角度,如30度、45度、60度、90度等等,以便于调整第一包体11、第二包体12与地面之间的夹角。
在本说明书的描述中,参考术语“一个实施例”、“另一个实施例”等的描述意指结合该实施例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例中。在本说明书中,对上述术语的示意性表述不必须针对的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任一个或多个实施例或示例中以合适的方式结合。此外,在不相互矛盾的情况下,本领域的技术人员可以将本说明书中描述的不同实施例或示例以及不同实施例或示例的特征进行结合和组合。另外,需要说明的是,本说明书中,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。
尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (23)

  1. 一种收纳包,用于收纳双面太阳能板,其中,所述收纳包包括:
    第一包体,所述第一包体的内侧设置有第一反光层;
    第二包体,连接于所述第一包体,所述第二包体的内侧设置有第二反光层,所述第一包体和所述第二包体均能够保持于与地面倾斜的状态,以使所述第一反光层和所述第二反光层朝斜上方设置。
  2. 根据权利要求1所述的收纳包,其中,所述收纳包还包括反光件,所述反光件的一端连接于所述第一包体和/或所述第二包体,所述反光件的另一端向所述第一反光层和所述第二反光层朝向的一侧延伸,所述反光件能够平铺于地面并承载所述双面太阳能板,所述反光件朝上的一面设有第三反光层。
  3. 根据权利要求2所述的收纳包,其中,所述反光件设置为可折叠结构;和/或所述反光件能够收纳于所述第一包体与所述第二包体之间。
  4. 根据权利要求2所述的收纳包,其中,所述反光件与所述第一包体和/或所述第二包体可拆卸连接。
  5. 根据权利要求1所述的收纳包,其中,所述收纳包还包括位置保持组件,所述位置保持组件用于保持所述第一包体和所述第二包体与地面之间的夹角。
  6. 根据权利要求5所述的收纳包,其中,所述位置保持组件包括相对的第一端和第二端,所述第一端连接于所述第一包体和所述第二包体上,所述第二端连接于所述双面太阳能板和地面中的其中一个上。
  7. 根据权利要求6所述的收纳包,其中,所述第二端与所述第一端之间的距离可调节。
  8. 根据权利要求6所述的收纳包,其中,所述位置保持组件还包括两根限位带,所述限位带的两端分别设置为所述第一端和所述第二端,两个所述第一端分别与所述第一包体和所述第二包体一一对应转动连接,所述第二端与所述双面太阳能板连接;或者所述位置保持组件还包括紧固钉,所述紧固钉固定于地面,所述第二端与所述紧固钉连接。
  9. 根据权利要求5所述的收纳包,其中,所述位置保持组件包括固定耳和支撑杆,所述第一包体和所述第二包体的侧边均设有所述固定耳,所述支撑杆的上端插设于所述固定耳中,所述支撑杆的下端压抵于地面。
  10. 根据权利要求5所述的收纳包,其中,所述位置保持组件包括支撑件,所述支撑件设置于所述第一包体背离所述第一反光层的一面以及所述第二包体背离所述第二反光层的一面,所述支撑件的一端与所述第一包体和所述第二包体分别对应连接,所述支撑件的另一端压抵于地面。
  11. 根据权利要求1-10任一项所述的收纳包,其中,所述第一反光层和/或所述第二反光层上设有多个陷光结构。
  12. 一种太阳能组合设备,其中,包括双面太阳能板和收纳包,所述收纳包包括:
    第一包体,所述第一包体的内侧设置有第一反光层;
    第二包体,连接于所述第一包体,所述第二包体的内侧设置有第二反光层,所述第一包体和所述第二包体均能够保持于与地面倾斜的状态,以使所述第一反光层和所述第二反光层朝斜上方设置;
    所述双面太阳能板包括面板组件和支架,所述支架的上端连接于所述面板组件的上侧。
  13. 根据权利要求12所述的太阳能组合设备,其中,所述双面太阳能板设置为可折叠结构,所述第一包体和/或所述第二包体的板面面积小于所述太阳能板展开后的面积,且所述第一包体和/或所述第二包体的板面面积大于所述太阳能板折叠后的面积。
  14. 根据权利要求12所述的太阳能组合设备,其中,所述收纳包还包括反光件,所述反光件的一端连接于所述第一包体和/或所述第二包体,所述反光件的另一端向所述第一反光层和所述第二反光层朝向的一侧延伸,所述反光件能够平铺于地面并承载所述双面太阳能板,所述反光件朝上的一面设有第三反光层。
  15. 根据权利要求14所述的太阳能组合设备,其中,所述反光件设置为可折叠结构;和/或所述反光件能够收纳于所述第一包体与所述第二包体之间。
  16. 根据权利要求12所述的太阳能组合设备,其中,所述反光件与所述第一包体和/或所述第二包体可拆卸连接。
  17. 根据权利要求12所述的太阳能组合设备,其中,所述收纳包还包括位置保持组件,所述位置保持组件用于保持所述第一包体和所述第二包体与地面之间的夹角。
  18. 根据权利要求17所述的太阳能组合设备,其中,所述位置保持组件包括相对的第一端和第二端,所述第一端连接于所述第一包体和所述第二包体上,所述第二端连接于所述双面太阳能板和地面中的其中一个上。
  19. 根据权利要求18所述的太阳能组合设备,其中,所述第二端与所述第一端之间的距离可调节。
  20. 根据权利要求18所述的太阳能组合设备,其中,所述位置保持组件还包括两根限位带,所述限位带的两端分别设置为所述第一端和所述第二端,两个所述第一端分别与所述第一包体和所述第二包体一一对应转动连接,所述第二端与所述双面太阳能板连接;或者所述位置保持组件还包括紧固钉,所述紧固钉固定于地面,所述第二端与所述紧固钉连接。
  21. 根据权利要求17所述的太阳能组合设备,其中,所述位置保持组件包括固定耳和支撑杆,所述第一包体和所述第二包体的侧边均设有所述固定耳,所述支撑杆的上端插设于所述固定耳中,所述支撑杆的下端压抵于地面。
  22. 根据权利要求17所述的太阳能组合设备,其中,所述位置保持组件包括支撑件,所述支撑件设置于所述第一包体背离所述第一反光层的一面以及所述第二包体背离所述第二反光层的一面,所述支撑件的一端与所述第一包体和所述第二包体分别对应连接,所述支撑件的另一端压抵于地面。
  23. 根据权利要求12-22任一项所述的太阳能组合设备,其中,所述第一反光层和/或所述第二反光层上设有多个陷光结构。
PCT/CN2023/111339 2022-09-06 2023-08-04 收纳包和太阳能组合设备 WO2024051417A1 (zh)

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