Pipeline heat dissipation device for increasing workshop temperature

By designing the pipeline heat dissipation device, adopting hot water circulation and precise temperature control, the problems of high energy consumption and uneven temperature of the traditional workshop heating system are solved, and efficient energy-saving heating and system stability are achieved.

CN223090734UActive Publication Date: 2025-07-11NINGXIA BAOFENG GROUP HONGSI COAL CO LTD
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Patent Information

Application Number
CN202422013793.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-07-11
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The traditional workshop heating system has high energy consumption, uneven temperature distribution and complex maintenance, which increases the operating costs of enterprises.

Method used

A pipeline heat dissipation device is designed, including a boiler, radiator, booster pump, heat exchanger and filter device, which can achieve efficient and energy-saving heating through hot water recycling and precise temperature control.

Benefits of technology

It improves the uniformity and comfort of the workshop temperature, reduces energy consumption, and enhances the stability and maintenance convenience of the system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The pipeline heat dissipation device for increasing the workshop temperature comprises a boiler and a heat dissipation device, a water outlet pipeline is arranged on one side of the boiler, the water outlet pipeline is connected with a booster pump and penetrates through the booster pump, a water outlet three-way valve is arranged at the other end of the water outlet pipeline, and a water inlet three-way valve is arranged at the other end of the water outlet pipeline. The water outlet three-way valve is connected with a first heat dissipation pipeline and a second heat dissipation pipeline; a water inlet is formed in one side of each radiator, a water outlet is formed in the other side of each radiator, the water inlets in the radiators are communicated with a first radiating pipeline and a second radiating pipeline, and the water outlet in the first radiator is communicated with a first recycling pipeline and a second recycling pipeline; one ends of the first recovery pipeline and the second recovery pipeline are connected with a backwater three-way valve, one end joint of the backwater three-way valve is connected with a recovery filtering pipeline, and one end of the recovery filtering pipeline is connected with a filtering device; the device is efficient, energy-saving, small in occupied area and convenient to use, and the comfort level of a production workshop is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of workshop heat preservation, and specifically relates to a pipeline heat dissipation device for increasing the temperature of a workshop. Background Art

[0002] In industrial production, maintaining an appropriate workshop temperature is crucial for improving production efficiency and ensuring the health of workers. Traditional workshop heating systems often have problems such as high energy consumption, uneven temperature distribution, and complex heating systems that usually require frequent maintenance, increasing the operating costs of enterprises. Therefore, workshop temperature regulation devices are of great significance.

[0003] To solve the above problems, there is an urgent need for a pipeline heat dissipation device for increasing the temperature of a workshop, which is efficient, energy-saving, has a small footprint, is convenient to use, and is beneficial to improving the comfort of the production workshop. Summary of the Invention

[0004] A pipeline heat dissipation device for increasing the temperature of a workshop, which is efficient, energy-saving, has a small footprint, is convenient to use, and improves the comfort of the production workshop.

[0005] A pipeline heat dissipation device for increasing the temperature of a workshop, comprising a boiler and a radiator, wherein:

[0006] One side of the boiler is provided with an outlet pipe, the outlet pipe is connected to a booster pump, the outlet pipe passes through the booster pump, the other end of the outlet pipe is provided with an outlet three-way valve, and the outlet three-way valve is connected to a first heat dissipation pipe and a second heat dissipation pipe;

[0007] On one side of several radiators are provided water inlets, and on the other side are provided water outlets. The water inlets on the radiators are communicated with the first heat dissipation pipe and the second heat dissipation pipe, and the water outlet on the first radiator is communicated with a first recovery pipe and a second recovery pipe;

[0008] One end of the first recovery pipe and the second recovery pipe is connected to a return water three-way valve, one end joint of the return water three-way valve is connected to a recovery filter pipe, one end of the recovery filter pipe is connected to a filtering device, and the filtering device is connected to a recovered water pipe;

[0009] One end of the recovered water pipe is connected to a heat exchanger. One side of the heat exchanger is provided with a first exchanger pipe, the other end of the first exchanger pipe is connected to one side of the boiler, the other side of the boiler is connected to a second exchanger pipe, one end of the second exchanger pipe is connected to the heat exchanger, and one side of the bottom of the heat exchanger is further provided with a third exchanger pipe, and the other end of the third exchanger pipe is connected to one side of the boiler.

[0010] Preferably, the radiator includes a plurality of heating pipes. One side of the heating pipe is provided with a connecting pipe which connects to the next heating pipe, and the other side is provided with a reinforcing rod whose two ends are fixedly connected to a pair of heating pipes.

[0011] Preferably, a radiator protection cover is provided outside the radiator, and a plurality of heat dissipation holes are provided on the radiator protection cover.

[0012] Preferably, a cleaning port is provided on the heating pipe, and a cleaning cover is provided on the cleaning port.

[0013] Preferably, temperature displays are provided on the first heat dissipation pipe, the second heat dissipation pipe and the heat exchanger.

[0014] Preferably, sealing rubber rings are provided on both the water inlet and the water outlet.

[0015] Preferably, a plurality of control valves are provided on the water outlet pipe and the recycled water pipe.

[0016] Preferably, a power pump is provided at a location on the recycled water pipe close to the filtering device.

[0017] The beneficial effects of the present utility model: A pipeline heat dissipation device for increasing the temperature of a workshop according to the present utility model adopts an integrated design. The hot water generated by the boiler is transported to the booster pump through the water outlet pipe, and after boosting, it is respectively sent into the first heat dissipation pipe and the second heat dissipation pipe, and heat exchange is carried out through the radiator, effectively increasing the temperature of the workshop. The hot water in the first and second heat dissipation pipes is recycled through the heat exchanger, realizing the recycling of heat and improving the system efficiency. The inside of the radiator is composed of multiple heating pipes, and its structural stability is enhanced through the connecting pipe and the reinforcing rod. At the same time, a cleaning port is provided for easy maintenance and cleaning. Sealing rubber rings are provided to ensure the sealing of the pipeline connection. At the same time, control devices are installed at key parts such as the temperature display and the control valve to achieve precise temperature control and management. The pipeline heat dissipation device provided by the present utility model not only improves the heating efficiency of the workshop, reduces energy consumption, but also improves the stability and maintenance convenience of the system through optimized design, and is applicable to the temperature requirements of various production environments. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic diagram of a pipeline heat dissipation device for increasing the temperature of a workshop according to the present utility model;

[0019] Figure 2 is a pipeline heat dissipation device for increasing the temperature of a workshop according to the present utility model Figure 1 schematic diagram of the radiator at A in.

[0020] In the figure: boiler 1, water outlet pipe 2, booster pump 3, water outlet three-way valve 4, first heat dissipation pipe 5, second heat dissipation pipe 6, radiator 7, water inlet 71, water outlet 72, heating pipe 73, connecting pipe 74, reinforcing rod 75, cleaning port 76, first recovery pipe 8, second recovery pipe 9, return water three-way valve 10, recovery filter pipe 11, filtering device 12, recovered water pipe 13, heat exchanger 14, first exchanger pipe 15, second exchanger pipe 16, radiator protective cover 17, power pump 18, third exchanger pipe 19. Detailed implementation manner

[0021] In order to make the technical solution of the present utility model easier to understand, the technical solution of the present utility model will be clearly and completely described by way of specific embodiments in combination with the accompanying drawings.

[0022] Embodiment 1:

[0023] As Figure 1-2 shown, the Figure 1-2 of this embodiment is a pipeline heat dissipation device for improving the temperature of a workshop of the present utility model, including a boiler 1 and a radiator 7, wherein:

[0024] A water outlet pipe 2 is provided on one side of the boiler 1, the water outlet pipe 2 is connected to a booster pump 3, the water outlet pipe 2 passes through the booster pump 3, and the other end of the water outlet pipe 2 is provided with a water outlet three-way valve 4, and a first heat dissipation pipe 5 and a second heat dissipation pipe 6 are connected to the water outlet three-way valve 4;

[0025] Water inlets 71 are provided on one side of several radiators 7, and water outlets 72 are provided on the other side thereof. The water inlets 71 on the radiators 7 are connected to the first heat dissipation pipe 5 and the second heat dissipation pipe 6, and the water outlets 72 on the first radiator 7 are connected to the first recovery pipe 8 and the second recovery pipe 9;

[0026] One ends of the first recovery pipe 8 and the second recovery pipe 9 are connected to a return water three-way valve 10, one end joint of the return water three-way valve 10 is connected to a recovery filter pipe 11, one end of the recovery filter pipe 11 is connected to a filtering device 12, and a recovered water pipe 13 is connected to the filtering device 12;

[0027] One end of the recovered water pipe 13 is connected to a heat exchanger 14. A first exchanger pipe 15 is provided on one side of the heat exchanger 14, the other end of the first exchanger pipe 15 is connected to one side of the boiler 1, the other side of the boiler 1 is connected to a second exchanger pipe 16, one end of the second exchanger pipe 16 is connected to the heat exchanger 14, and a third exchanger pipe 19 is further provided on one side of the bottom of the heat exchanger 14, and the other end of the third exchanger pipe 19 is connected to one side of the boiler 1.

[0028] The radiator 7 includes a number of heating water pipes 73. On one side of the heating water pipes 73, there is a connecting pipe 74 which connects to the next heating water pipe 73. On the other side, there is a reinforcing rod 75, and both ends of the reinforcing rod 75 are fixedly connected to a pair of heating water pipes 73.

[0029] Outside the radiator 7, there is a radiator protection cover 17, and the radiator protection cover 17 is provided with a number of heat dissipation holes.

[0030] On the heating water pipe 73, there is a cleaning port 76, and a cleaning cover is provided on the cleaning port 76.

[0031] Temperature displays are provided on the first heat dissipation pipe 5, the second heat dissipation pipe 6, and the heat exchanger 14.

[0032] Sealing rubber rings are provided on both the water inlet 71 and the water outlet 72.

[0033] A number of control valves are provided on the water outlet pipe 2 and the recycled water pipe 13.

[0034] A power pump 18 is provided at a location on the recycled water pipe 13 close to the filtering device 12.

[0035] Specific implementation steps:

[0036] When this device is in use, ensure that there is sufficient hot water in the boiler 1, and start the booster pump 3. The hot water is pressurized through the water outlet pipe 2 and then delivered to the water outlet three-way valve 4. The first part of the pressurized hot water flows into the first heat dissipation pipe 5 through the water outlet three-way valve 4; the other part enters the second heat dissipation pipe 6 through the water outlet three-way valve 4. The hot water in the first heat dissipation pipe 5 and the second heat dissipation pipe 6 respectively flow through the water inlets 71 of each radiator 7. Inside the radiator 7, the hot water exchanges heat with the air on both sides of the radiator 7 through the heating water pipes 73, and dissipates heat through the heat dissipation holes on the radiator protection cover 17 outside the radiator 7 to increase the temperature of the surrounding environment. The cooled hot water flows back to the first recovery pipe 8 and the second recovery pipe 9 through the water outlet 72 of the radiator 7. The water in the first recovery pipe 8 and the second recovery pipe 9 converges at the return water three-way valve 10, and enters the filtering device 12 through the connected recovery and filtering pipe 11 for purification. The filtered water enters the heat exchanger 14 through the recycled water pipe 13.

[0037] The heat exchanger 14 is composed of multiple metal plates. The hot and cold fluids flow between adjacent plates but do not come into direct contact. Heat is transferred from the hot fluid to the cold fluid through the metal plates. The heat exchanger 14 is installed at a position before the boiler 1 so that the cold water passes through the heat exchanger before entering the boiler.

[0038] The cold water returning from the radiator 7 enters the heat exchanger 14. Then, the cold water will flow and be heated inside the heat exchanger 14. Through heat exchange, the preheated hot water enters the boiler 1 from the third exchanger pipe 19; the hot water newly entering the system from the boiler 1 enters the heat exchanger 14 from the second exchanger pipe 16 and then is output from the first exchanger pipe 15. This can significantly reduce the energy consumption of the boiler 1, lower the working load of the boiler 1, extend the service life of the boiler 1, and reduce the heat loss of the system.

[0039] Temperature displays are installed at appropriate positions on the first heat dissipation pipe 5, the second heat dissipation pipe 6, and the heat exchanger 14 to display the temperature changes in the system in real time. The flow rates of the water outlet pipe 2 and the recycled water pipe 13 are adjusted through control valves to achieve precise control of the temperature of the entire system.

[0040] The setting of the cleaning port 76 facilitates the regular cleaning of the heating pipe 73. By opening the cleaning cover and flushing the inside of the heating pipe 73 with a cleaning agent or water, the heat exchange efficiency is ensured. The heat dissipation holes on the radiator shield 17 facilitate the dissipation of heat, improve the heat exchange efficiency, and can ensure that the staff will not directly contact the radiator 7 to avoid scalding.

[0041] It should be noted that the embodiments described herein are only partial embodiments of the present invention, rather than all implementation manners of the present invention. The embodiments are only exemplary, and their functions are only to provide a more intuitive and clear way to understand the content of the present invention, rather than a limitation on the technical solutions of the present invention. Without departing from the concept of the present invention, all other implementation manners that can be thought of by those of ordinary skill in the art without creative labor, as well as other simple replacements and various changes to the technical solutions of the present invention, all fall within the protection scope of the present invention.

Claims

1. A pipeline heat dissipation device for increasing the temperature of a workshop, characterized in that, Comprising a boiler (1) and a radiator (7), wherein: On one side of the boiler (1) there is a water outlet pipe (2), a booster pump (3) is connected to the water outlet pipe (2), at the other end of the water outlet pipe (2) there is a water outlet three-way valve (4), and a first heat dissipation pipe (5) and a second heat dissipation pipe (6) are connected to the water outlet three-way valve (4); On one side of several of the radiators (7) there are water inlets (71), and on the other side there are water outlets (72). The water inlets (71) on the radiators (7) are connected to the first heat dissipation pipe (5) and the second heat dissipation pipe (6), and the water outlets (72) on the radiators (7) are connected to a first recovery pipe (8) and a second recovery pipe (9); One end of the first recovery pipe (8) and the second recovery pipe (9) is connected to a return water three-way valve (10), one end joint of the return water three-way valve (10) is connected to a recovery and filtration pipe (11), one end of the recovery and filtration pipe (11) is connected to a filtration device (12), and a recovery water pipe (13) is connected to the filtration device (12); One end of the recovery water pipe (13) is connected to a heat exchanger (14). On one side of the heat exchanger (14) there is a first exchanger pipe (15), the other end of the first exchanger pipe (15) is connected to one side of the boiler (1). The other side of the boiler (1) is connected to a second exchanger pipe (16), one end of the second exchanger pipe (16) is connected to the heat exchanger (14), and on one side of the bottom of the heat exchanger (14) there is also a third exchanger pipe (19), and the other end of the third exchanger pipe (19) is connected to one side of the boiler (1).

2. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 1, characterized in that The radiator (7) comprises a number of heating pipes (73). On one side of the heating pipes (73) there is a connecting pipe (74), the connecting pipe (74) is connected to the next heating pipe (73), and on the other side there is a reinforcing rod (75), and both ends of the reinforcing rod (75) are fixedly connected to a pair of heating pipes (73).

3. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 1, characterized in that, Outside the radiator (7) there is a radiator protection cover (17), and a number of heat dissipation holes are provided on the radiator protection cover (17).

4. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 2, characterized in that, On the heating pipe (73) there is a cleaning port (76), and a cleaning cover is provided on the cleaning port (76).

5. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 1, characterized in that, Temperature displays are provided on the first heat dissipation pipe (5), the second heat dissipation pipe (6) and the heat exchanger (14).

6. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 1, characterized in that Sealing rubber rings are provided on both the water inlet (71) and the water outlet (72).

7. A pipeline heat dissipation device for increasing the temperature of a workshop according to claim 1, characterized in that, A number of control valves are provided on the water outlet pipe (2) and the recovery water pipe (13).

8. The pipeline heat dissipation device for increasing the temperature of the workshop according to claim 1, characterized in that, A power pump (18) is provided at a position on the recovery water pipe (13) close to the filtration device (12).