CN217461225U - BIPV guiding gutter and guiding gutter fixing assembly - Google Patents

BIPV guiding gutter and guiding gutter fixing assembly Download PDF

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Publication number
CN217461225U
CN217461225U CN202123066148.XU CN202123066148U CN217461225U CN 217461225 U CN217461225 U CN 217461225U CN 202123066148 U CN202123066148 U CN 202123066148U CN 217461225 U CN217461225 U CN 217461225U
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water
groove
plate
bipv
clamping
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CN202123066148.XU
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张明凯
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Abstract

A BIPV water chute and water chute fixing assembly comprises a first water flowing groove, a second water flowing groove, a connecting bridge and a water chute connecting ridge, wherein a clamping groove is formed in the upper end of the water chute connecting ridge, the free end parts of the first water flowing groove and the second water flowing groove are different in height, so that the water receiving grooves on the two sides of the first water flowing groove and the second water flowing groove are inclined towards the second water flowing groove, the water guiding groove has the functions of water guiding and cable routing, and meanwhile, the clamping groove can also be used for placing a U-shaped springboard, so that the operation and maintenance of a roof are facilitated; the fixed subassembly of guiding gutter includes guiding gutter, elastic pressing block, and elastic pressing block includes clamp plate, cardboard frame, cardboard, impales portion, dismounting hole, and the cardboard card is in the card groove of guiding gutter, and the clamp plate is pressed at both sides photovoltaic board face, guiding gutter connection spine face, impales the aluminium frame that the portion impaled the photovoltaic board, forms electric connection, need not to set up the earth connection in addition, and the roof face roughness after the installation is high, and pleasing to the eye degree is good.

Description

BIPV guiding gutter and guiding gutter fixing assembly
Technical Field
The utility model relates to the field of photovoltaic technology, specifically be a subassembly is fixed to BIPV guiding gutter and guiding gutter.
Background
Building Integrated Photovoltaic (PV) is a technology for integrating solar power (Photovoltaic) products into buildings.
The photovoltaic module can shield external light, wind, rainwater and granular sundries as a roof plate surface, can also provide clean electric energy for building users, and belongs to an environment-friendly building form. A water receiving groove and a water guiding groove are arranged below a gap between adjacent photovoltaic panels in the roof photovoltaic support system, and the water guiding groove is used for containing rainwater accumulated in the water receiving groove and guiding the rainwater out. In the prior art, the water chute has a single function and cannot be used with other structures of the BIPV roof; secondly the guiding gutter fixed subassembly still includes the elastic pressing block, and the guiding gutter fixed subassembly after the installation among the prior art makes photovoltaic roof face unsmooth, and pleasing to the eye degree is poor, the hydrophobicity is poor.
The utility model provides a subassembly is fixed to BIPV guiding gutter and guiding gutter solves above-mentioned technical problem.
SUMMERY OF THE UTILITY MODEL
A BIPV water guide groove comprises a first water flowing groove, a second water flowing groove, connecting bridges and a water guide groove connecting ridge, wherein the connecting bridges are arranged on two sides of the water guide groove connecting ridge, the connecting bridges on two sides are respectively connected with the first water flowing groove and the second water flowing groove, and a clamping groove is arranged at the position where the water guide groove connecting ridge is connected with the connecting bridges.
Preferably, in the BIPV water guiding trough, the upper end surface of the free end of the first water flowing trough far away from the connecting bridge is higher than the upper end surface of the free end of the second water flowing trough far away from the connecting bridge.
Preferably, the upper plate surface of the water guide groove connecting ridge of the BIPV water guide groove is provided with a clamping groove.
Preferably, the BIPV aqueduct further comprises a clamping plate, the clamping plate comprises a clamping plate connecting ridge and bending baffles, the two bending baffles are symmetrically arranged on two sides of the connecting ridge, a matching groove is formed in the upper end face of the clamping plate connecting ridge, and the clamping plate connecting ridge is arranged on the upper plate face of the aqueduct connecting ridge in a matching mode and is fixed through screws.
The working principle is as follows:
the BIPV roof comprises purlins, photovoltaic panels, adhesive tapes, a water chute fixing component and water receiving grooves, wherein the water receiving grooves and the water chutes are respectively arranged below transverse gaps and below longitudinal gaps between adjacent photovoltaic panels, two ends of each water receiving groove are respectively arranged on the upper end surfaces of a first water flowing groove and a second water flowing groove of the water chutes on two sides, and the free ends of the first water flowing groove and the second water flowing groove are different in height, so that the water receiving grooves supported by the first water flowing groove and the second water flowing groove are obliquely arranged, rainwater flowing down from the photovoltaic panel component can enter the second water flowing groove with lower height in the water guiding grooves from the water receiving grooves, and no water is accumulated in the first water flowing grooves on two sides of the water guiding grooves, so that the water receiving grooves can be used for placing and routing photovoltaic panel connecting wires without resetting a structure, furthermore, a clamping groove is processed on the upper plate surface of the water guiding groove connecting ridge, and a U-shaped jump panel can be placed between two adjacent or spaced water guiding grooves, the baffle of bending of cardboard both sides is used for blockking photovoltaic board and the U-shaped springboard of both sides, and the U-shaped springboard forms the guidance tape, satisfies the needs of roofing fortune dimension operation.
The utility model provides a BIPV guiding gutter fixed subassembly, includes the aforesaid guiding gutter, elastic pressing block includes clamp plate, cardboard frame, cardboard, the lower plate symmetry of clamp plate is provided with the cardboard frame, the cardboard frame is provided with the cardboard of inclination, the clamp plate is arranged in the last face of guiding gutter connection spine just cardboard frame clamping is in the both sides face of guiding gutter connection spine, the cardboard joint is in the cardboard inslot, the last face of both sides photovoltaic board is pressed to the both sides of clamp plate.
Preferably, the BIPV water chute fixing assembly further comprises a piercing part, wherein the piercing part is a piercing and protruding structure which is downward along the pressing plate; under the installation state of the water chute fixing component, the pressing plate is attached to the upper plate surface of the photovoltaic plate, and the puncturing part punctures the photovoltaic aluminum frame to form electric connection.
Preferably, the BIPV guiding gutter fixing component is characterized in that a dismounting hole is formed in the plate surface of the pressing plate.
Preferably, the BIPV water chute fixing assembly is characterized in that a buffer part is arranged at the free end part of the clamping plate, and the buffer part is an arc-shaped plate deviating from the direction of the clamping groove.
Preferably, in the BIPV water guide groove fixing assembly, the free ends of the first water flow groove and the second water flow groove far away from the connecting bridge are provided with extension edges.
Preferably, the BIPV aqueduct fixing assembly further comprises a hook, the outer extending edge is clamped on the inner side of the bending plate at one end of the hook, and the plate surface at the other end of the hook is fixed with a purline screw on a BIPV roof surface.
The working principle is as follows:
the clamping plate frame and the clamping plate of the elastic pressing block are fixed with the water chute in the water chute fixing assembly, and the pressing plate is fixed with the photovoltaic panels on two sides, so that the flatness of the whole BIPV roof surface can be ensured, the attractiveness is improved, and the rapid discharge of water on the roof surface is facilitated.
The advantages are as follows:
(1) the utility model relates to a BIPV aqueduct can satisfy the need of drainage and cable routing at the same time, and has diversified functions;
(2) the utility model relates to a BIPV aqueduct is provided with a clamping groove which can be used for placing a U-shaped springboard and meets the operation and maintenance of a roof;
(3) the utility model relates to a BIPV guiding gutter fixing component fixes the guiding gutter and photovoltaic panels at two sides through the elastic pressing block, completes the connection of the guiding gutter and the BIPV roof surface, is convenient and rapid to install and greatly improves the flatness of the BIPV roof surface;
(4) the utility model relates to a guiding gutter, elastic pressing block among BIPV guiding gutter fixed subassembly simple structure, with low costs.
Drawings
The embodiments are further described with reference to the accompanying drawings, in which:
fig. 1 is a schematic plan view of a BIPV flume according to the present invention;
fig. 2 is a schematic plan view of a BIPV gutter fixing assembly according to the present invention;
FIG. 3 is a schematic plan view of the elastic pressing block;
FIG. 4 is a schematic plan view of the U-shaped gangway, water chute, water receiving trough, hook and clamping plate;
the specific structure corresponding to the number is as follows:
a first flume 1, a second flume 2, a connecting bridge 3, a flume connecting ridge 4, a clamping groove 41, a clamping groove 42, an outer extension edge 5, a clamping plate 6, a clamping plate connecting ridge 61, a matching groove 611, a bending baffle 62, a water receiving tank 7, a U-shaped springboard 8, a hook 9, an elastic pressing block 10, a pressing plate 101, a clamping plate frame 102, a clamping plate 103, a dismounting hole 104, a piercing part 105 and a buffer part 106,
the following detailed description of the invention will be further described in conjunction with the above-identified drawings.
Detailed Description
Specific embodiment example 1:
a BIPV flume comprising: the water circulation tank comprises a first flowing water tank 1, a second flowing water tank 2, a connecting bridge 3 and a water guide groove connecting ridge 4, wherein the connecting bridge 3 is arranged on two sides of the water guide groove connecting ridge 4, the connecting bridge 3 on two sides is respectively connected with the first flowing water tank 1 and the second flowing water tank 2, and a clamping groove 41 is arranged at the position where the water guide groove connecting ridge 4 is connected with the connecting bridge 3.
Furthermore, the upper end surface of the free end of the first water flowing groove 1 far away from the connecting bridge 3 is higher than the upper end surface of the free end of the second water flowing groove 2 far away from the connecting bridge 3.
Furthermore, the free ends of the first running water tank 1 and the second running water tank 2 far away from the connecting bridge 3 are both provided with an extension edge 5.
Furthermore, a clamping groove 42 is formed on the upper plate surface of the water chute connecting ridge 4.
Further, the clamping plate 6 is further included, the clamping plate 6 comprises a clamping plate connecting ridge 61 and bending baffles 62, the two bending baffles 62 are symmetrically arranged on two sides of the clamping plate connecting ridge 61, a matching groove 611 is formed in the upper end face of the clamping plate connecting ridge 61, and the clamping plate connecting ridge 61 is arranged on the upper plate face of the water guide groove connecting ridge 4 in a matching mode and fixed through screws.
Specific embodiment example 2:
a BIPV gutter fixture assembly comprising: aqueduct, elastic pressing block 10 includes clamp plate 101, cardboard frame 102, cardboard 103, the lower plate symmetry of clamp plate 101 is provided with cardboard frame 102, cardboard frame 102 is provided with the cardboard 103 of inward sloping, clamp plate 101 is arranged in the last face of aqueduct joint spine 4 just cardboard frame 102 clamping is in the both sides face of aqueduct joint spine 4, cardboard 103 joint is in the card inslot 41, the both sides of clamp plate 101 press the last face at both sides photovoltaic board.
Further, the pressing plate 101 is provided with a dismounting hole 104 on the plate surface, and a dismounting tool is inserted into the dismounting hole 104 for clamping the elastic pressing block 10 to mount or separate the elastic pressing block from the water chute.
Further, the device also comprises a piercing part 105, wherein the piercing part 105 is a piercing structure which is downward along the pressure plate 101; under the fixed subassembly installation state of guiding gutter, clamp plate 101 pastes at photovoltaic board upper plate face, the portion 105 that impales the aluminium frame of photovoltaic forms the electric connection state, avoids setting up the earth connection alone, saves construction cost, makes roofing photovoltaic mounting system subassembly succinct, the planarization.
Further, a buffer portion 106 is disposed at a free end portion of the clamping plate 103, and the buffer portion 106 is an arc-shaped plate deviating from the direction of the clamping groove 41. The buffer part 106 can prevent the clamping plate 103 from directly abutting against the clamping groove 41, and the contact area is increased.
Furthermore, the extending edge is clamped on the inner side of the bending plate at one end of the hook 9, and the plate surface at the other end of the hook 9 is fixed with a purline screw on a BIPV roof surface, so that the fixing of the water chute is completed.
The structure of the water chute is partially or totally the same as that of embodiment 1.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (10)

1. A BIPV flume, comprising: the connecting bridge is connected with the first flume and the second flume respectively, and a clamping groove is arranged at the position where the water guiding groove connecting ridge is connected with the connecting bridge.
2. The BIPV gutter as claimed in claim 1, wherein: the upper end face of the free end of the first water flowing groove far away from the connecting bridge is higher than the upper end face of the free end of the second water flowing groove far away from the connecting bridge.
3. The BIPV flume of claim 1, wherein: and a clamping groove is formed in the upper plate surface of the water guide groove connecting ridge.
4. The BIPV flume of claim 1, wherein: the clamping plate comprises a clamping plate connecting ridge and two bending baffles, the two bending baffles are symmetrically arranged on two sides of the connecting ridge, a matching groove is formed in the upper end face of the clamping plate connecting ridge, and the clamping plate connecting ridge is matched with the upper plate face of the water guide groove connecting ridge and fixed through screws.
5. A BIPV aqueduct fixing component is characterized in that: the photovoltaic water guiding groove comprises the water guiding groove and the elastic pressing block, wherein the elastic pressing block comprises a pressing plate, a clamping plate frame and clamping plates, the clamping plate frame is symmetrically arranged on the lower plate surface of the pressing plate, the clamping plate frame is provided with the clamping plates which are inwards inclined, the pressing plate is arranged on the upper plate surface of the water guiding groove connecting ridge, the clamping plate frame is fixedly clamped on the two side plate surfaces of the water guiding groove connecting ridge, the clamping plates are clamped in the clamping groove, and the two sides of the pressing plate press the upper plate surfaces of the photovoltaic plates on the two sides.
6. The BIPV flume fixture assembly of claim 5, wherein: the pressing plate is provided with a pressing plate, and the pressing plate is provided with a pressing hole; under the installation state of the water chute fixing component, the pressing plate is attached to the upper plate surface of the photovoltaic plate, and the piercing part pierces the photovoltaic aluminum frame to form electric connection.
7. The BIPV flume fixture assembly of claim 5, wherein: the pressing plate surface is provided with a dismounting hole.
8. The BIPV flume fixture assembly of claim 5, wherein: the free end of the clamping plate is provided with a buffer part, and the buffer part is an arc-shaped plate deviating from the direction of the clamping groove.
9. The BIPV flume fixture assembly of claim 5, wherein: and the free ends of the first and second running water grooves far away from the connecting bridge are provided with extension edges.
10. The BIPV gutter fixing module according to claim 9, wherein: the solar cell module is characterized by further comprising a hook, the outer extending edge is clamped on the inner side of the bending plate at one end of the hook, and the plate surface at the other end of the hook is fixed with a purline screw of the BIPV roof surface.
CN202123066148.XU 2021-11-19 2021-12-08 BIPV guiding gutter and guiding gutter fixing assembly Active CN217461225U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2021229025638 2021-11-19
CN202122902563 2021-11-19

Publications (1)

Publication Number Publication Date
CN217461225U true CN217461225U (en) 2022-09-20

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ID=82306770

Family Applications (3)

Application Number Title Priority Date Filing Date
CN202123066198.8U Active CN216949166U (en) 2021-11-19 2021-12-08 Roofing photovoltaic mounting system of high roughness
CN202123066139.0U Active CN217461222U (en) 2021-11-19 2021-12-08 Elastic pressing block for fixing BIPV water guide groove
CN202123066148.XU Active CN217461225U (en) 2021-11-19 2021-12-08 BIPV guiding gutter and guiding gutter fixing assembly

Family Applications Before (2)

Application Number Title Priority Date Filing Date
CN202123066198.8U Active CN216949166U (en) 2021-11-19 2021-12-08 Roofing photovoltaic mounting system of high roughness
CN202123066139.0U Active CN217461222U (en) 2021-11-19 2021-12-08 Elastic pressing block for fixing BIPV water guide groove

Country Status (1)

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CN (3) CN216949166U (en)

Also Published As

Publication number Publication date
CN217461222U (en) 2022-09-20
CN216949166U (en) 2022-07-12

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