Highway bridge pavement snow melting and deicing equipment based on deep buried pipe energy pile
By introducing a collection bucket and oblique filtering structure into the snow melting ice-melting equipment, the impurity blockage problem is solved, the water collection effect is improved and the cleaning process is simplified.
Patent Information
- Application Number
- CN202421314345.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-11
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-06-11
AI Technical Summary
When existing snow melting and ice-removing equipment collects snow and melting water, the filter plates are easily blocked by impurities on the surface of highway bridges, affecting the water collection effect.
A snow melting and ice-removing equipment based on deep buried pipe energy piles is designed, and a collection bucket, a collection device, a first and second oblique filtering structure are used. Impurities are collected into the collection box through the inclined surface, and water is secondary filtered through an oblique filter to reduce the risk of blockage.
Effectively reduce the situation of impurities blocking the filter net, improve the water collection effect, and simplify the disassembly and assembly of the filter structure and impurity cleaning process.
Smart Images

Figure CN223118789U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of snow melting equipment, in particular to a snow melting and ice melting equipment for highway bridge pavement based on a deep buried pipe energy pile. Background Technique
[0002] Snow melting and ice melting equipment refers to equipment that can melt snow and ice layers to prevent the impacts caused by the accumulation of snow and ice. It has a wide range of applications. Among them, energy piles use pile foundations for heat exchange. When the energy pile generates heat, the heat spreads around, causing the temperature of the rock and soil mass to rise. When refrigerating, it causes the temperature of the surrounding rock and soil mass to drop. Using energy piles to melt snow on highways can save a lot of manpower and material resources.
[0003] Chinese Utility Model Application No. CN202110953631.5 discloses a snow melting and ice melting equipment for highway bridge pavement based on a deep buried pipe energy pile, which relates to the field of snow melting equipment and solves the problem that the existing device does not have a structure that can compensate for the evaporated water in the overall pipeline and cannot save water resources. A snow melting and ice melting equipment for highway bridge pavement based on a deep buried pipe energy pile includes a surface layer; precipitation recovery structures are arranged on the left and right sides of the surface layer. The present invention also arranges precipitation recovery structures. After precipitation in the high temperature season, the precipitation on the surface layer flows into the water collecting tank through the inner slope. After the precipitation is collected by the water collecting tanks on the left and right sides of the surface layer, the precipitation passes through the top cover at the inner bottom of the water collecting tank for secondary filtration and then can flow into the storage bucket below through the liquid collecting funnel for storage and collection. After starting the bilateral control pump for reflux heating, the storage bucket can compensate for the evaporated water in the overall pipeline, which can save water resources. However, there are still some disadvantages in the use of this device: this device collects the water generated by snow melting and ice melting or rainfall through a filter plate, but there will be a large amount of impurities on the surface of the highway bridge, which will fall on the surface of the filter plate along with the water, so it is easy to accumulate on the surface of the filter plate and cause blockage of the filter plate, thus affecting the collection effect. Content of the Utility Model
[0004] The purpose of the present utility model aims to solve at least one of the above technical defects.
[0005] Therefore, an object of the present utility model is to provide a snow melting and ice melting equipment for highway bridge pavement based on a deep buried pipe energy pile to solve the problems mentioned in the background technique and overcome the deficiencies existing in the prior art.
[0006] To achieve the above object, an embodiment of one aspect of the present utility model provides a snow melting and ice thawing device for a highway bridge pavement based on a deep-buried pipe energy pile, including a surface layer. Collection hoppers are arranged on both sides of the surface layer. A collection device is connected to the bottom of the collection hopper. A snow melting structure is arranged on one side of the collection device. A plurality of first inclined filtering structures are fixedly installed on the top of the collection hopper. A second inclined filtering structure is fixedly installed on the top of the plurality of first inclined filtering structures. The technical effect achieved by adopting the above solution is that through the operation of the pump, water flows inside the snow melting pipeline. Then, the geothermal exchange pipe absorbs geothermal energy and then melts the snow and thaws the ice on the highway bridge through the heating pipe. Then, the water flows along the surface of the inclined guiding plate. The water falls through the second inclined filter screen. At the same time, impurities fall on the surface of the second inclined filter screen and into the second collection box. Then, the water falls on the surface of the first inclined filter screen for secondary filtration. At the same time, impurities fall on the surface of the first inclined filter screen and into the first collection box. When collecting the water for snow melting and ice removal, the filtered impurities can be collected into the collection box along the inclined plane, thereby reducing the occurrence of impurity blockage of the filter screen and making the water collection effect better.
[0007] Preferably, from any of the above solutions, the collection hopper includes a collection frame. A plurality of first slots are equidistantly arranged on the top of the collection frame. A collection port is arranged on the inner wall of the collection frame. The collection port is communicated with the collection device. The technical effect achieved by adopting the above solution is that the collected water can enter the interior of the collection device through the collection port through the collection frame for collection operation. At the same time, the position of the first inclined filtering structure can be conveniently positioned and installed through the first slots.
[0008] Preferably, from any of the above solutions, the collection device includes a collection pipe. The collection pipe is fixedly installed at the bottom of the collection frame. The collection pipe is communicated with the collection port. A collection box is fixedly installed at the bottom of the collection pipe. An electromagnetic valve is arranged on the surface of the collection pipe. The technical effect achieved by adopting the above solution is that the water collected by the collection hopper enters the interior of the collection box for collection operation through the opening and closing of the electromagnetic valve.
[0009] Preferably, from any of the above solutions, the snow melting structure includes a pumping pipe. The pumping pipe is communicated with the collection box. A pump is fixedly installed at one end of the pumping pipe. A snow melting pipeline is fixedly installed on one side of the pump. One end of the snow melting pipeline is connected to the collection box. The snow melting pipeline is composed of a plurality of geothermal exchange pipes and heating pipes. The technical effect achieved by adopting the above solution is that through the operation of the pump, water flows inside the snow melting pipeline. Then, the geothermal exchange pipe absorbs geothermal energy and then melts the snow and thaws the ice on the highway bridge through the heating pipe.
[0010] Preferably, according to any of the above solutions, the first inclined filtering structure includes a first inclined filter screen. Both ends of the first inclined filter screen are fixedly connected with a connecting plate and a first collection box respectively. One side of the first collection box is fixedly connected with a bracket. Both the bottom of the connecting plate and the bottom of the bracket are fixedly installed with first insertion blocks adapted to the first slots. Second slots are provided at the tops of the connecting plate and the bracket. The technical effect achieved by adopting the above solution is that by aligning the first insertion blocks with the first slots and inserting them, and then connecting the bracket and the collection hopper with bolts, the position of the first inclined filtering structure can be fixed, facilitating the installation and disassembly operations.
[0011] Preferably, according to any of the above solutions, the second inclined filtering structure includes an inclined guiding plate. One end of the inclined guiding plate is fixedly connected with a second inclined filter screen. One end of the second inclined filter screen is fixedly connected with a second collection box. Second insertion blocks adapted to the second slots are fixedly connected to the bottoms of the inclined guiding plate and the second collection box. The technical effect achieved by adopting the above solution is that by aligning the second insertion blocks with the second slots and inserting them, and then connecting the second insertion blocks and the connecting plate with bolts, the position of the second inclined filtering structure can be fixed, facilitating the disassembly and assembly operations.
[0012] Preferably, according to any of the above solutions, a first sealing plate is fixedly connected to one side of the first inclined filter screen, the inclined guiding plate, and the second inclined filter screen. A second sealing plate is fixedly connected to the other side of the first inclined filter screen, the inclined guiding plate, and the second inclined filter screen. A sealing block is fixedly connected to one side of the first sealing plate. A sealing groove adapted to the sealing block is provided on one side of the second sealing plate. The technical effect achieved by adopting the above solution is that when assembling adjacent first inclined filtering structures and second inclined filtering structures, the sealing block is inserted into the slot, preventing the leakage of impurities.
[0013] Compared with the prior art, the advantages and beneficial effects of the present utility model are as follows:
[0014] 1. For this highway bridge pavement snow melting and ice melting device based on a deep-buried pipe energy pile, through the cooperation among the surface layer, the collection hopper, the collection device, the snow melting structure, the first inclined filtering structure, and the second inclined filtering structure, when collecting the water for snow melting and ice melting, the filtered impurities can be collected along the inclined plane into the collection box, reducing the occurrence of impurity blockage of the filter screen and making the water collection effect better.
[0015] 2. The snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles can facilitate the disassembly and assembly operations of the first inclined filtering structure and the second inclined filtering structure through the cooperation among the first slot, the first plug, the second slot, the second plug and a plurality of bolts, with simple and convenient operation, which is convenient for cleaning impurities. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the first perspective structure of Embodiment 1 of the present utility model;
[0017] Figure 2 It is a schematic diagram of the second perspective structure of Embodiment 1 of the present utility model;
[0018] Figure 3 For Embodiment 1 of the present utility model Figure 2 Schematic diagram of the structure at position A;
[0019] Figure 4 It is a schematic diagram of the third perspective structure of Embodiment 1 of the present utility model;
[0020] Figure 5 For Embodiment 1 of the present utility model Figure 4 Schematic diagram of the structure at position B;
[0021] Figure 6 It is a schematic diagram of the fourth perspective structure of Embodiment 1 of the present utility model.
[0022] Wherein: 1 - surface layer, 2 - collecting hopper, 201 - collecting frame, 202 - first slot, 203 - collecting port, 3 - collecting device, 301 - collecting pipe, 302 - collecting box, 303 - solenoid valve, 4 - snow melting structure, 401 - extraction pipe, 402 - pump, 403 - snow melting pipeline, 40301 - geothermal exchange pipe, 40302 - heating pipe, 5 - first inclined filtering structure, 501 - first inclined filter screen, 502 - connecting plate, 503 - first collecting box, 504 - bracket, 505 - first plug, 506 - second slot, 6 - second inclined filtering structure, 601 - inclined guiding plate, 602 - second inclined filter screen, 603 - second collecting box, 604 - second plug, 7 - first sealing plate, 8 - second sealing plate, 9 - sealing block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The following further describes the present utility model with reference to the drawings, but the protection scope of the present utility model is not limited to the following.
[0024] Embodiment 1: As Figures 1 to 6As shown in the figure, a snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles includes a surface layer 1. Collection hoppers 2 are arranged on both sides of the surface layer 1. A collection device 3 is connected to the bottom of the collection hopper 2. A snow melting structure 4 is arranged on one side of the collection device 3. A number of first inclined filtering structures 5 are fixedly installed at the top of the collection hopper 2. A second inclined filtering structure 6 is fixedly installed at the top of the number of first inclined filtering structures 5. Through the operation of the pump 402, water flows inside the snow melting pipeline 403. Then, the geothermal exchange pipe 40301 absorbs geothermal energy and then melts snow and thaws ice on the highway bridge through the heating pipe 40302. Then, the water flows along the surface of the inclined guiding plate 601. The water falls through the second inclined filter screen 602. At the same time, impurities fall on the surface of the second inclined filter screen 602 and land inside the second collection box 603. Then, the water falls on the surface of the first inclined filter screen 501 for secondary filtration. At the same time, impurities fall on the surface of the first inclined filter screen 501 and land inside the first collection box 503. When collecting the water for snow melting and ice removal, the filtered impurities can be collected along the inclined plane into the collection box, so as to reduce the occurrence of impurity blockage of the filter screen, and thus make the water collection effect better.
[0025] As an alternative technical solution of the present utility model, the collection hopper 2 includes a collection frame 201. A number of first slots 202 are equidistantly arranged at the top of the collection frame 201. A collection port 203 is arranged on the inner wall of the collection frame 201. The collection port 203 is communicated with the collection device 3. Through the collection frame 201, the collected water can enter the interior of the collection device 3 through the collection port 203 for collection operation. At the same time, the position of the first inclined filtering structure 5 can be conveniently positioned and installed through the first slots 202.
[0026] As an alternative technical solution of the present utility model, the collection device 3 includes a collection pipe 301. The collection pipe 301 is fixedly installed at the bottom of the collection frame 201. The collection pipe 301 is communicated with the collection port 203. A collection box 302 is fixedly installed at the bottom of the collection pipe 301. A solenoid valve 303 is arranged on the surface of the collection pipe 301. Through the opening and closing of the solenoid valve 303, the water collected by the collection hopper 2 enters the interior of the collection box 301 for collection operation.
[0027] As an alternative technical solution of the present utility model, the snow melting structure 4 includes a suction pipe 401 which is communicated with the collection box 302. One end of the suction pipe 401 is fixedly installed with a pump 402. One side of the pump 402 is fixedly installed with a snow melting pipeline 403. One end of the snow melting pipeline 403 is connected to the collection box 302. The snow melting pipeline 403 is composed of a plurality of geothermal exchange pipes 40301 and heating pipes 40302. Through the operation of the pump 402, water flows inside the snow melting pipeline 403. Then, the geothermal exchange pipes 40301 absorb geothermal energy and then use the heating pipes 40302 to perform snow melting and ice melting operations on the highway bridge.
[0028] As an alternative technical solution of the present utility model, the first inclined filtering structure 5 includes a first inclined filter screen 501. Two ends of the first inclined filter screen 501 are respectively fixedly connected with a connecting plate 502 and a first collection box 503. One side of the first collection box 503 is fixedly connected with a bracket 504. Bottoms of the connecting plate 502 and the bracket 504 are both fixedly installed with first insertion blocks 505 adapted to the first slots 202. Second slots 506 are arranged on tops of the connecting plate 502 and the bracket 504. By aligning the first insertion blocks 505 with the first slots 202 and inserting them, and then connecting the bracket 504 with the collection hopper 2 through bolts, the position of the first inclined filtering structure 5 can be fixed, facilitating installation and disassembly operations.
[0029] As an alternative technical solution of the present utility model, the second inclined filtering structure 6 includes an inclined guiding plate 601. One end of the inclined guiding plate 601 is fixedly connected with a second inclined filter screen 602. One end of the second inclined filter screen 602 is fixedly connected with a second collection box 603. Bottoms of the inclined guiding plate 601 and the second collection box 603 are both fixedly connected with second insertion blocks 604 adapted to the second slots 506. By aligning the second insertion blocks 604 with the second slots 506 and inserting them, and then connecting the second insertion blocks 604 with the connecting plate 502 through bolts, the position of the second inclined filtering structure 6 can be fixed, facilitating disassembly and assembly operations.
[0030] As an alternative technical solution of the present utility model, one side of each of the first inclined filter screen 501, the inclined guiding plate 601 and the second inclined filter screen 602 is fixedly connected with a first sealing plate 7. The other side of each of the first inclined filter screen 501, the inclined guiding plate 601 and the second inclined filter screen 602 is fixedly connected with a second sealing plate 8. One side of the first sealing plate 7 is fixedly connected with a sealing block 9. A sealing groove adapted to the sealing block 9 is arranged on one side of the second sealing plate 8. When assembling adjacent first inclined filtering structures 5 and second inclined filtering structures 6, the sealing block 9 is inserted into the inside of the slot, thereby preventing leakage of impurities.
[0031] A snow melting and ice thawing device for highway bridge pavement based on deep buried pipe energy piles has the following working principle: The pump 402 operates to make water flow inside the snow melting pipeline 403. Then, the geothermal exchange pipe 40301 absorbs geothermal energy and melts and thaws the highway bridge through the heating pipe 40302. Then, the water flows along the surface of the inclined guiding plate 601, and the water falls through the second inclined filter screen 602. At the same time, impurities fall onto the surface of the second inclined filter screen 602 and into the interior of the second collection box 603. Then, the water falls onto the surface of the first inclined filter screen 501 for secondary filtration. At the same time, impurities fall onto the surface of the first inclined filter screen 501 and into the interior of the first collection box 503. When collecting the water for snow melting and ice thawing, the filtered impurities can be collected along the inclined plane into the interior of the collection box, which can reduce the occurrence of impurity blockage of the filter screen, thereby making the water collection effect better.
[0032] In summary, for the snow melting and ice thawing device for highway bridge pavement based on deep buried pipe energy piles, through the cooperation between the surface layer 1, the collection hopper 2, the collection device 3, the snow melting structure 4, the first inclined filtering structure 5 and the second inclined filtering structure 6, when collecting the water for snow melting and ice thawing, the filtered impurities can be collected along the inclined plane into the interior of the collection box, which can reduce the occurrence of impurity blockage of the filter screen, thereby making the water collection effect better. Through the cooperation between the first slot 202, the first plug 505, the second slot 506, the second plug 604 and several bolts, it is convenient to disassemble and assemble the first inclined filtering structure 5 and the second inclined filtering structure 6, and the operation is simple and convenient, facilitating the cleaning of impurities.
[0033] Embodiment 2: A snow melting and ice thawing device for highway bridge pavement based on deep buried pipe energy piles. In this embodiment, a heating pipe, a liquid level sensor and a temperature sensor are fixedly installed inside the collection box 302 on the basis of the above embodiment. The water can be assisted in heating through the stability sensor and the heating pipe.
Claims
1. A snow melting and ice thawing device for highway bridge pavement based on deep buried pipe energy piles, including a surface layer (1), characterized in that: On both sides of the surface layer (1), collection hoppers (2) are provided. The bottom of the collection hoppers (2) is connected to a collection device (3). On one side of the collection device (3), a snow melting structure (4) is provided. At the top of the collection hoppers (2), a number of first inclined filtering structures (5) are fixedly installed. At the top of the number of first inclined filtering structures (5), a second inclined filtering structure (6) is fixedly installed.
2. The snow melting and ice thawing device for highway bridge pavement based on deep buried pipe energy piles according to claim 1, characterized in that: The collection hopper (2) includes a collection frame (201). At the top of the collection frame (201), a number of first slots (202) are equidistantly arranged. The inner wall of the collection frame (201) is provided with a collection port (203). The collection port (203) is communicated with the collection device (3).
3. The snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles according to claim 2, characterized in that: The collection device (3) includes a collection pipe (301). The collection pipe (301) is fixedly installed at the bottom of the collection frame (201). The collection pipe (301) is communicated with the collection port (203). At the bottom of the collection pipe (301), a collection box (302) is fixedly installed. An electromagnetic valve (303) is arranged on the surface of the collection pipe (301).
4. The snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles according to claim 3, characterized in that: The snow melting structure (4) includes an extraction pipe (401). The extraction pipe (401) is communicated with the collection box (302). At one end of the extraction pipe (401), a pump (402) is fixedly installed. On one side of the pump (402), a snow melting pipeline (403) is fixedly installed. One end of the snow melting pipeline (403) is connected to the collection box (302). The snow melting pipeline (403) is composed of a number of geothermal exchange pipes (40301) and heating pipes (40302).
5. The snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles according to claim 4, characterized in that: The first inclined filtering structure (5) includes a first inclined filter screen (501). The two ends of the first inclined filter screen (501) are respectively fixedly connected to a connecting plate (502) and a first collection box (503). On one side of the first collection box (503), a bracket (504) is fixedly connected. At the bottoms of the connecting plate (502) and the bracket (504), first insertion blocks (505) adapted to the first slots (202) are fixedly installed. Second slots (506) are arranged at the tops of the connecting plate (502) and the bracket (504).
6. The snow melting and ice thawing device for highway bridge pavement based on deep buried energy piles according to claim 5, characterized in that: The second inclined filtering structure (6) includes an inclined guiding plate (601). One end of the inclined guiding plate (601) is fixedly connected to a second inclined filter screen (602). One end of the second inclined filter screen (602) is fixedly connected to a second collection box (603). At the bottoms of the inclined guiding plate (601) and the second collection box (603), second insertion blocks (604) adapted to the second slots (506) are fixedly connected.
7. An ice and snow melting device for highway bridge pavement based on a deep-buried energy pile according to claim 6, characterized in that: One side of the first inclined filter screen (501), the inclined guide plate (601) and the second inclined filter screen (602) is fixedly connected with a first sealing plate (7), the other side of the first inclined filter screen (501), the inclined guide plate (601) and the second inclined filter screen (602) is fixedly connected with a second sealing plate (8), one side of the first sealing plate (7) is fixedly connected with a sealing block (9), and a sealing groove adapted to the sealing block (9) is arranged on one side of the second sealing plate (8).
Citation Information
Patent Citations
Highway bridge pavement snow melting and deicing equipment for deep buried pipe energy piles
CN113529532A