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Zigzag slope installation solar photovoltaic module height difference installation structure

A solar photovoltaic and photovoltaic module technology, applied in the support structure of photovoltaic modules, photovoltaic power generation, photovoltaic modules and other directions, can solve the problems of glass breakage and non-parallel of solar photovoltaic modules, and achieve the effect of easy installation and reliable structure

Active Publication Date: 2017-12-12
SUZHOU AIKANG LOW CARBON TECH INST
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Because the general solar photovoltaic modules are fixed by two rows of four-point compaction method at the front and back, that is, one solar photovoltaic module needs to be fixed with four pressing blocks on the same plane. The two beams are not parallel, so that the four blocks will not be on the same plane. When the height difference between the blocks is greater than 3~4mm, the glass of the solar photovoltaic module will be broken after forcibly pressing the blocks.

Method used

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  • Zigzag slope installation solar photovoltaic module height difference installation structure
  • Zigzag slope installation solar photovoltaic module height difference installation structure
  • Zigzag slope installation solar photovoltaic module height difference installation structure

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Embodiment Construction

[0022] see Figure 1~Figure 5 , the present invention relates to a zigzag slope installation solar photovoltaic module system, which includes a front beam 101 and a rear beam 102 arranged in a non-parallel front and back, and a left photovoltaic module 103 and a right photovoltaic module 104 arranged adjacently.

[0023] The front section of the right frame of the left photovoltaic module 103 and the front section of the left frame of the right photovoltaic module 104 have the same height, and the front section of the right frame of the left photovoltaic module 103 and the front section of the left frame of the right photovoltaic module 104 are fixed to the front beam 101 by a front pressure block 105 Above, the left pressing tongue and the right pressing tongue of the front pressing block 105 are respectively pressed on the front section of the right frame of the left photovoltaic module 103 and the top of the front section of the left frame of the right photovoltaic module 10...

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Abstract

The invention relates to a zigzag height difference installation structure for installing a solar energy photovoltaic assembly on a slope, which is characterized by comprising a back crossbeam (102), a left photovoltaic assembly (103) and a right photovoltaic assembly (104), wherein the left photovoltaic assembly (103) and the right photovoltaic assembly (104) are next to each other; the height of the rear part of the right side frame of the left photovoltaic assembly (103) is smaller than the height of the rear part of the left side frame of the right photovoltaic assembly (104); the rear part of the right side frame of the left photovoltaic assembly (103) and the rear part of the left side frame of the right photovoltaic assembly (104) are fixed on a back crossbeam (102) through a back pressing block (107) and a pressing block regulation assembly; and the pressing block regulation assembly is a zigzag pressing block regulation assembly. The zigzag height difference installation structure disclosed by the invention can be constructed on the terrain having the slope, guarantee the structure and is easy to install.

Description

technical field [0001] The invention relates to a height difference installation structure of a solar photovoltaic module installed on a zigzag slope. Background technique [0002] With the scarcity of land resources, there are fewer and fewer lands with better sunlight conditions in the west, while a large number of hills and mountains have been neglected due to high construction costs. Because the general solar photovoltaic modules are fixed by two rows of four-point compaction method at the front and back, that is, one solar photovoltaic module needs to be fixed with four pressing blocks on the same plane. The two beams are not parallel, so the four pressing blocks will not be on the same plane. When the height difference between the pressing blocks is greater than 3~4mm, the glass of the solar photovoltaic module will be broken after forcibly pressing down the pressing blocks. [0003] Therefore, it is particularly important to seek a zigzag-shaped slope-mounted solar p...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02S20/10
CPCY02E10/50
Inventor 査超麟季马贵
Owner SUZHOU AIKANG LOW CARBON TECH INST
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