Sewage coil pipe recycling and discharging structure
By designing a sewage coil recycling and discharge structure, and using connecting pipes and connecting bolts to connect the upper conduit to the lower conduit, the problem of sewage flowing at will in the solar cell cleaning device is solved, and the directional lead-out and unified recycling of sewage is realized to keep the roof clean.
Patent Information
- Application Number
- CN202422280429.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-09-18
AI Technical Summary
The existing solar cell cleaning devices lack an effective sewage recycling structure, which causes sewage to flow at will and accumulate on the roof surface, affecting the appearance and use effect.
A sewage coil recycling and discharge structure is designed, including coil structure components, connecting pipes and connecting bolts. The upper conduit is connected to the lower conduit through the connecting pipe and connecting bolts to form a directional lead-out path of sewage. The lower conduit composed of bent pipes and straight pipes and the upper conduit composed of open bent pipes and straight pipes are used to achieve unified recycling of sewage.
Effectively prevent the arbitrary flow of sewage, realize the directional lead-out and unified recycling of sewage, avoid dust accumulation on the roof, and keep the roof clean.
Smart Images

Figure CN223214842U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of sewage coils for cleaning solar cells, and in particular relates to a sewage coil recovery and discharge structure. Background Art
[0002] A solar cell, also known as a photovoltaic cell, is a device that converts sunlight directly into electrical energy. Its operating principle is based on the photoelectric effect, or photovoltaic effect, and its primary material is semiconductors, such as silicon. Solar cells primarily generate electricity by receiving sunlight. Since solar cells are directly exposed to the air, dust accumulates on their surface after prolonged use, covering the solar cell surface and affecting its power generation. This requires regular cleaning of the solar cell surface to remove dust. However, most common rooftop solar power stations lack wastewater recovery structures. Instead, they are flushed directly with clean water. The resulting wastewater slides directly off the solar cell surface and accumulates on the rooftop. The dust it carries with it, due to gravity, covers the rooftop surface and prevents it from flowing down. This causes the rooftop to accumulate dust due to repeated exposure, impacting the rooftop. The flushed wastewater can flow freely, affecting the appearance of the building's exterior.
[0003] In summary, solar power stations without sewage recovery structures have some problems in use, so it is hoped to propose a new structure to solve the above technical problems. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a sewage coil recovery and discharge structure to solve the problems raised in the above background technology.
[0005] The utility model is realized through the following technical solutions: a sewage coil recovery and discharge structure, comprising: a coil structure component, a connecting pipe and a connecting bolt, the inner lower end of the inner component of the coil structure component is provided with several groups of photovoltaic frame legs for support, the outer side of the photovoltaic frame legs is provided with a lower coil for sewage recovery, the lower coil is composed of a bent pipe and a straight pipe, a photovoltaic panel mounting frame for installing photovoltaic panels is provided above the photovoltaic frame legs, an upper coil for receiving sewage is provided outside the photovoltaic panel mounting frame, a downpipe is provided above the downpipe, a downpipe flange is provided above the downpipe, a connecting pipe for sewage drainage is provided above the downpipe flange, and the lower end of the connecting pipe is fixed to the downpipe flange by a connecting bolt.
[0006] As a preferred embodiment, the downpipe is evenly distributed above the bend pipe and the straight pipe and the downpipe is interconnected with the bend pipe and the straight pipe. The bend pipe is located at the bend at the lower end of the coil structure assembly.
[0007] As a preferred embodiment, the straight pipe is located between two adjacent groups of curved pipes at the front and rear ends of the coil structure assembly. The upper coil is composed of an open curved pipe and an open straight pipe. The open curved pipe and the open straight pipe are both open structures on the outer side of the upper end, and can receive and collect flushing sewage through the upper coil.
[0008] As a preferred embodiment, upper conduits for draining sewage are evenly distributed below the open curved pipe and the open straight pipe, upper conduit flanges are provided below the upper conduits, and connecting flanges are provided at both upper and lower ends of the internal composition of the connecting pipe.
[0009] As a preferred embodiment, a connecting pipe is provided between the upper and lower groups of connecting flanges, the upper surface of the connecting flange at the upper end fits with the lower surface of the upper conduit flange and is connected by a connecting bolt, and the lower surface of the connecting flange at the lower end fits with the upper surface of the lower conduit flange and is connected by a connecting bolt. The upper conduit and the lower conduit can be connected to each other through the connecting pipe, so that the sewage inside the upper conduit is introduced into the inside of the lower conduit through the connecting pipe.
[0010] As a preferred embodiment, the open elbow and the open straight pipe are both connected to the upper conduit, and sewage outlet pipes are provided on the left and right ends of the elbow away from the center of the coil structure assembly;
[0011] The sewage outlet pipe is provided with an outlet pipe flange on one side away from the center of the coil structure component, and the outer side of the outlet pipe flange is connected to an external pipeline.
[0012] As a preferred embodiment, both ends of the bent pipe and the open bent pipe are provided with bent pipe docking flanges, and both ends of the straight pipe and the open straight pipe are provided with straight pipe docking flanges. The outer side surfaces of the bent pipe docking flanges and the outer side surfaces of the straight pipe docking flanges fit each other and are fixed by connecting bolts. The lower coil pipe is composed of a bent pipe and a straight pipe, and the upper coil pipe is composed of an open bent pipe and an open straight pipe, and both are connected to the straight pipe docking flanges through the bent pipe docking flanges, which facilitates the separate assembly of the lower coil pipe and the upper coil pipe.
[0013] After adopting the above technical scheme, the beneficial effect of the utility model is as follows: by adding coil structure components, connecting pipes and connecting bolts, the connecting pipes are used to form a connection between the upper conduit and the lower conduit during use, and are fixed with connecting bolts. The sewage enters the inner side of the upper coil through the upper end opening of the upper coil, and is drained out through the upper conduit, flows into the inner side of the lower coil through the connecting pipe, and is finally directed out through the sewage outlet pipe, which can prevent the sewage from flowing arbitrarily. By adding the lower coil and the upper coil, the lower coil is composed of a bent pipe and a straight pipe, and the upper coil is composed of an open bent pipe and an open straight pipe, all of which are connected to the straight pipe docking flange through the bent pipe docking flange, which facilitates the separate assembly of the lower coil and the upper coil. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0015] Figure 1 This is a schematic diagram of the overall structure of a sewage coil recovery and discharge structure of the utility model.
[0016] Figure 2 This is a schematic diagram of the rear structure of a coil structure component in a sewage coil recovery and discharge structure of the utility model.
[0017] Figure 3 This is a front structural schematic diagram of a coil structure component in a sewage coil recovery and discharge structure of the utility model.
[0018] Figure 4 This is a structural schematic diagram of the connecting pipe in a sewage coil recovery and discharge structure of the utility model.
[0019] In the figure, 100-coil structure assembly, 101-photovoltaic rack support leg, 102-photovoltaic panel mounting frame, 103-elbow pipe, 104-straight pipe, 105-straight pipe docking flange, 106-elbow pipe docking flange, 107-sewage outlet pipe, 108-outlet pipe flange, 109-downpipe, 110-downpipe flange, 111-open elbow, 112-open straight pipe, 113-upper pipe, 114-upper pipe flange;
[0020] 200-connecting pipe, 201-connecting flange, 202-connecting pipe fittings;
[0021] 300-Connecting bolt. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] See also Figures 1 to 4 The utility model provides a technical solution: a sewage coil recovery and discharge structure, comprising: a coil structure component 100, a connecting pipe 200 and a connecting bolt 300. The coil structure component 100 has a plurality of photovoltaic support legs 101 provided at the lower end thereof for supporting use;
[0024] A lower coil for sewage recovery is provided on the outside of the photovoltaic frame leg 101. The lower coil consists of a curved pipe 103 and a straight pipe 104. A photovoltaic panel mounting frame 102 for mounting photovoltaic panels is provided above the photovoltaic frame leg 101. An upper coil for collecting sewage is provided on the outside of the photovoltaic panel mounting frame 102.
[0025] A downcomer 109 is provided above the lower coil, a downcomer flange 110 is provided above the downcomer 109, a connecting pipe 200 for sewage drainage is provided above the downcomer flange 110, and the lower end of the connecting pipe 200 is connected and fixed to the downcomer flange 110 by a connecting bolt 300.
[0026] The downpipe 109 is evenly distributed above the bend pipe 103 and the straight pipe 104 and is interconnected with the bend pipe 103 and the straight pipe 104 . The bend pipe 103 is located at the lower end of the coil structure assembly 100 .
[0027] The straight pipe 104 is located between the two adjacent groups of curved pipes 103 at the front and rear ends of the coil structure assembly 100. The upper coil is composed of an open curved pipe 111 and an open straight pipe 112. The open curved pipe 111 and the open straight pipe 112 are both open structures on the outer side of the upper end, and can receive and collect flushing sewage through the upper coil.
[0028] There are evenly distributed upper conduits 113 below the open elbow 111 and the open straight pipe 112 for draining sewage. An upper conduit flange 114 is provided below the upper conduit 113. The connecting pipe 200 has connecting flanges 201 at both ends of its internal structure.
[0029] A connecting pipe 202 is provided between the upper and lower sets of connecting flanges 201. The upper surface of the upper connecting flange 201 fits with the lower surface of the upper conduit flange 114 and is connected by a connecting bolt 300. The lower surface of the lower connecting flange 201 fits with the upper surface of the lower conduit flange 110 and is connected by a connecting bolt 300. The upper conduit 113 and the lower conduit 109 can be connected to each other through the connecting pipe 200, so that the sewage inside the upper conduit 113 is introduced into the inner side of the lower conduit 109 through the connecting pipe 200.
[0030] The open elbow 111 and the open straight pipe 112 are both connected to the upper conduit 113. The left and right ends of the elbows 103 are both provided with sewage outlet pipes 107 on the side away from the center of the coil structure assembly 100.
[0031] A sewage outlet pipe 107 is provided with an outlet pipe flange 108 on a side away from the center of the coil structure assembly 100 , and the outer side of the outlet pipe flange 108 is connected to an external pipeline.
[0032] See also Figures 1-4 As the first embodiment of the present utility model: First, during use, the user uses the connecting pipe 200 to connect the upper conduit 113 with the lower conduit 109, and fixes it with the connecting bolt 300. Secondly, the sewage after flushing the solar cell enters the inner side of the upper coil through the upper end opening of the upper coil, and is drained out through several groups of upper conduits 113 of open elbows 111 and open straight pipes 112, and then flows into the inner side of the lower conduit 109 through the connecting pipe 200, and then enters the inner side of the lower coil, and finally is directed out through the four groups of sewage outlet pipes 107, thereby preventing the sewage from flowing arbitrarily and recovering and discharging the sewage in a unified manner.
[0033] Both ends of the curved pipe 103 and the open curved pipe 111 are provided with curved pipe docking flanges 106, and both ends of the straight pipe 104 and the open straight pipe 112 are provided with straight pipe docking flanges 105. The outer side surfaces of the curved pipe docking flanges 106 and the outer side surfaces of the straight pipe docking flanges 105 fit together and are connected and fixed by connecting bolts 300. The lower coil pipe is composed of the curved pipe 103 and the straight pipe 104, and the upper coil pipe is composed of the open curved pipe 111 and the open straight pipe 112, both of which are connected to the straight pipe docking flanges 105 through the curved pipe docking flanges 106, which facilitates the separate assembly of the lower coil pipe and the upper coil pipe.
[0034] See also Figure 1-Figure 3As the second embodiment of the present invention: Based on the above-mentioned first embodiment, the lower coil in the coil structure assembly 100 is composed of a curved pipe 103 and a straight pipe 104, and the upper coil is composed of an open curved pipe 111 and an open straight pipe 112. The user can splice different numbers of curved pipes 103 and straight pipes 104 for the lower coil according to actual installation needs, and splice the open curved pipes 111 and the open straight pipes 112 for the upper coil, and both are connected through the curved pipe docking flange 106 and the straight pipe docking flange 105, which can facilitate the separate assembly of the lower coil and the upper coil.
[0035] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A sewage coil recovery and discharge structure, comprising: The coil structure assembly (100), the connecting pipe (200) and the connecting bolt (300) are characterized in that: the inner lower end of the inner component of the coil structure assembly (100) is provided with a plurality of photovoltaic frame legs (101) for supporting use; A lower coil for sewage recovery is provided on the outside of the photovoltaic frame leg (101), the lower coil consisting of a curved pipe (103) and a straight pipe (104); a photovoltaic panel mounting frame (102) for mounting photovoltaic panels is provided above the photovoltaic frame leg (101); an upper coil for sewage collection is provided on the outside of the photovoltaic panel mounting frame (102); A downpipe (109) is provided above the downpipe coil, a downpipe flange (110) is provided above the downpipe (109), a connecting pipe (200) for sewage drainage is provided above the downpipe flange (110), and the lower end of the connecting pipe (200) is connected and fixed to the downpipe flange (110) via a connecting bolt (300); The lower conduit (109) is evenly distributed above the curved pipe (103) and the straight pipe (104), and the lower conduit (109) is interconnected with the curved pipe (103) and the straight pipe (104). The curved pipe (103) is located at the lower end of the coil structure assembly (100). The straight pipe (104) is located between two adjacent groups of curved pipes (103) at the front and rear ends of the coil structure assembly (100), and the upper coil is composed of an open curved pipe (111) and an open straight pipe (112), and both the open curved pipe (111) and the open straight pipe (112) are structures with open upper end outer side surfaces; The open curved pipe (111) and the open straight pipe (112) are both provided with evenly distributed upper conduits (113) for draining out sewage, and an upper conduit flange (114) is provided below the upper conduit (113). The upper and lower ends of the internal component of the connecting pipe (200) are both provided with connecting flanges (201); A connecting pipe (202) is provided between the upper and lower connecting flanges (201), the upper surface of the upper connecting flange (201) and the lower surface of the upper conduit flange (114) are in contact with each other and are connected via a connecting bolt (300), and the lower surface of the lower connecting flange (201) and the upper surface of the lower conduit flange (110) are in contact with each other and are connected via a connecting bolt (300).
2. The sewage coil recovery and discharge structure according to claim 1, characterized in that: The open curved pipe (111) and the open straight pipe (112) are both in communication with the upper conduit (113), and sewage outlet pipes (107) are provided on the left and right ends of the curved pipes (103) away from the center of the coil structure assembly (100); The sewage outlet pipe (107) is provided with an outlet pipe flange (108) on a side away from the center of the coil structure assembly (100), and the outer side of the outlet pipe flange (108) is connected to an external pipeline.
3. A sewage coil recovery and discharge structure according to claim 2, characterized in that: Both ends of the curved pipe (103) and the open curved pipe (111) are provided with curved pipe docking flanges (106), and both ends of the straight pipe (104) and the open straight pipe (112) are provided with straight pipe docking flanges (105). The outer side surfaces of the curved pipe docking flanges (106) and the outer side surfaces of the straight pipe docking flanges (105) are fitted together and fixedly connected via connecting bolts (300).