Integrated gas-fired boiler heat energy conversion equipment
By designing smoke exhaust pipes, circulation pipes and solenoid valve systems in an integrated gas boiler, the effective utilization of high-temperature steam in the flue gas is achieved, the problems of energy waste and high disinfection costs are solved, and efficient disinfection and heating functions are achieved.
Patent Information
- Application Number
- CN202422363517.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing integrated gas boiler thermal energy conversion equipment cannot effectively utilize the high-temperature steam in the flue gas for disinfection, resulting in energy waste and increased operating costs of disinfection.
The flue gas is transported into the circulation pipe through the smoke exhaust pipe, and the steam and particles are separated by a particle separator. The cleaning steam is sprayed through the steam nozzle to disinfect the objects placed on the net, and the flow direction of the smoke gas is controlled through the solenoid valve to achieve the switching of heating liquid or disinfection.
It improves energy utilization efficiency, reduces energy waste, reduces operating costs, and meets the disinfection needs of the medical, catering and pharmaceutical industries.
Smart Images

Figure CN223204370U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heat energy conversion of gas boilers, in particular to an integrated gas boiler heat energy conversion device. Background Art
[0002] The integrated gas boiler is a highly efficient and compact thermal energy device that is widely used in residential, commercial buildings and industrial facilities for heating and hot water supply. It is a heat energy conversion device that integrates gas combustion, heat energy conversion, control systems and related auxiliary equipment to form a compact and efficient unit. The gas and air are mixed and ignited through the combustion chamber to generate heat energy. The heat exchanger is used to transfer the heat energy generated by combustion to water or other heat media, thereby heating the water.
[0003] Common integrated gas boiler heat energy conversion equipment does not effectively utilize the waste heat of flue gas generated by combustion. In the medical, catering and pharmaceutical industries, there is a great demand for disinfection, and the high-temperature steam in the flue gas can effectively disinfect items, which leads to the waste of energy in the flue gas. This not only causes energy waste, but also increases the operating cost of disinfection.
[0004] Therefore, for the above-mentioned integrated gas boiler heat energy conversion equipment, it is impossible to use the high-temperature steam in the flue gas to disinfect items, which not only causes energy waste, but also increases the disinfection operation cost. An integrated gas boiler heat energy conversion equipment can be designed. The smoke is transported into the circulation pipe through the exhaust pipe, and the steam and particle mixture are separated by the particle separator. The clean steam enters the pipeline through the circulation pipe and is sprayed out through the steam nozzle, so that the high-temperature steam is used to disinfect the objects placed on the net. This structure can not only use steam to provide hot water, but also use steam for disinfection. In the medical, catering and pharmaceutical industries, this device can effectively meet the disinfection needs to solve the above problems. Utility Model Content
[0005] In order to overcome the problem that common integrated gas boiler heat energy conversion equipment cannot use the high-temperature steam in the flue gas to disinfect items, it not only causes energy waste, but also increases the disinfection operation cost.
[0006] The technical solution of the present utility model is: an integrated gas boiler heat energy conversion device, including a base plate; also including a boiler body, a smoke exhaust pipe, a circulation pipe, a disinfection box, a pipeline, a steam nozzle and a solenoid valve. The upper end surface of the base plate is fixedly provided with an installation box, the upper end surface of the installation box is fixedly provided with a disinfection box, the front of the disinfection box is provided with a box door, the upper end surface of the base plate is fixedly provided with a boiler body, the upper end surface of the boiler body is fixedly connected to one end of the smoke exhaust pipe, the outer surface of the smoke exhaust pipe is fixedly connected to one end of the circulation pipe, the outer surface of the circulation pipe is installed with a solenoid valve one, the outer surface of the circulation pipe is installed with a particle separator, the interior of the installation box is installed with a pipeline, the other end of the circulation pipe is fixedly connected to the pipeline, the outer surface of the pipeline is installed with a steam nozzle, the installation box and the disinfection box are interconnected, the interior of the disinfection box is installed with a placement net, and the outer surface of the smoke exhaust pipe is installed with a solenoid valve two.
[0007] Preferably, the smoke exhausted by the boiler body can not only utilize the heat in the smoke to heat liquid water for personnel use, but also utilize the hot steam in the smoke to disinfect objects. The solenoid valve 2 is closed and the solenoid valve 1 is opened, and the smoke is transported into the circulation pipe through the smoke exhaust pipe, and the steam and particle mixture are separated by the particle separator. The clean steam enters the pipeline through the circulation pipe and is sprayed out through the steam nozzle, so that the high-temperature steam is used to disinfect the objects placed on the net. By controlling the solenoid valve 1 and the solenoid valve 2, the switching of the smoke flow direction is realized, and the operator can choose whether to heat the liquid or disinfect according to the needs, which increases the flexibility and practicality of the equipment. The structure can not only use steam to provide hot water, but also use steam for disinfection, which greatly improves the energy utilization efficiency. At the same time, by recovering the heat energy in the smoke, energy waste is reduced and the operating cost is reduced. In the medical, catering and pharmaceutical industries, the device can effectively meet the disinfection needs.
[0008] Preferably, two mounting brackets are fixedly provided on the upper end surface of the bottom plate, a hot water tank is installed on the upper surfaces of the two mounting brackets, and a heating pipe is installed on the inner surface of the hot water tank. The provision of the mounting brackets improves the stability of the hot water tank.
[0009] Preferably, the other end of the smoke exhaust pipe is fixedly connected to one end of the heating pipe, and the other end of the heating pipe is fixedly connected to the smoke exhaust head. Open solenoid valve two and close solenoid valve one. The smoke flows into the heating pipe through the smoke exhaust pipe, and the water in the hot water tank is heated by the heating pipe.
[0010] Preferably, a water replenishment tank is fixedly provided on the upper end surface of the bottom plate, and a water pump 2 is fixedly installed on the surface of the water replenishment tank close to the hot water tank. The output end of the water pump 2 is fixedly connected to one end of the delivery pipe 2, and the other end of the delivery pipe 2 extends to the interior of the hot water tank through the left end surface of the hot water tank. When the water in the hot water tank needs to be replenished, the water pump 2 can be started to deliver the water in the water replenishment tank through the delivery pipe 2 into the hot water tank for heating treatment.
[0011] Preferably, an insulation box is fixedly provided on the upper end surface of the bottom plate, and a water pump 1 is fixedly installed on the surface of the insulation box on one side close to the hot water tank. The output end of the water pump 1 is fixedly connected to a delivery pipe 1, and the other end of the delivery pipe 1 extends to the interior of the hot water tank through the right end surface of the hot water tank. When the water in the hot water tank reaches the required temperature, the water in the hot water tank is delivered into the insulation box through the delivery pipe 1 by the water pump 1.
[0012] Preferably, a water level detection module is installed on the inner left end surface of the hot water tank, and a water temperature detection module is installed on the inner right end surface of the hot water tank. Water pump 2 is controlled by the water level detection module. When the water in the hot water tank does not reach a certain height, water pump 2 is controlled to replenish water into the hot water tank. When the water in the hot water tank reaches a certain temperature, water pump 1 is controlled to transport the water in the hot water tank into the insulation box for storage.
[0013] Preferably, the outer surfaces of the hot water tank and the insulation tank are both provided with an insulation layer. Providing the insulation layer on the outer surfaces of the hot water tank and the insulation tank can reduce heat dissipation, so that the water in the hot water tank is heated faster and the hot water in the insulation tank is kept longer.
[0014] Beneficial effects of the utility model:
[0015] 1. The smoke is transported into the circulation pipe through the smoke exhaust pipe, and the steam and particle mixture are separated by the particle separator. The clean steam enters the pipeline through the circulation pipe and is ejected through the steam nozzle, so that the objects placed on the net are disinfected with high-temperature steam. By controlling the solenoid valve 1 and the solenoid valve 2, the switching of the flue gas flow direction is realized. The operator can choose whether to heat the liquid or disinfect as needed, which increases the flexibility and practicality of the equipment. This structure can not only use steam to provide hot water, but also use steam for disinfection, which greatly improves the energy utilization efficiency. At the same time, by recovering the heat energy in the flue gas, energy waste is reduced and the operating cost is reduced. In the medical, catering and pharmaceutical industries, this device can effectively meet the disinfection needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a schematic diagram of the three-dimensional structure of an integrated gas boiler heat energy conversion device of the present utility model;
[0017] Figure 2Shown is a schematic diagram of the cross-sectional three-dimensional structure of an integrated gas boiler heat energy conversion device of the present utility model;
[0018] Figure 3 Shown is a three-dimensional structural diagram of the hot water tank of an integrated gas boiler heat energy conversion device of the present invention;
[0019] Figure 4 What is shown is a schematic diagram of the three-dimensional cross-sectional structure of the disinfection box of an integrated gas boiler heat energy conversion equipment of the present invention.
[0020] Explanation of the accompanying symbols: 1. Base plate; 2. Boiler body; 3. Smoke exhaust pipe; 4. Mounting frame; 5. Circulation pipe; 6. Particle separator; 7. Mounting box; 8. Disinfection box; 9. Box door; 10. Pipeline; 11. Steam nozzle; 12. Placement net; 13. Delivery pipe 1; 14. Solenoid valve 1; 15. Solenoid valve 2; 16. Smoke exhaust head; 17. Hot water tank; 18. Heating pipe; 19. Water pump 1; 20. Water temperature detection module; 21. Water level detection module; 22. Water supply tank; 23. Water pump 2; 24. Delivery pipe 2; 25. Insulation box. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figure 1-Figure 4 The utility model provides an embodiment: an integrated gas boiler heat energy conversion device, including a bottom plate 1; also including a boiler body 2, an exhaust pipe 3, a circulation pipe 5, a disinfection box 8, a pipe 10, a steam nozzle 11 and a solenoid valve 14. The upper end surface of the bottom plate 1 is fixedly provided with an installation box 7, the upper end surface of the installation box 7 is fixedly provided with a disinfection box 8, the front of the disinfection box 8 is provided with a box door 9, the upper end surface of the bottom plate 1 is fixedly provided with a boiler body 2, the upper end surface of the boiler body 2 is fixedly connected with one end of the exhaust pipe 3, the outer surface of the exhaust pipe 3 is fixedly connected with one end of the circulation pipe 5, the outer surface of the circulation pipe 5 is installed with a solenoid valve 14, the outer surface of the circulation pipe 5 is installed with a particle separator 6, the interior of the installation box 7 is installed with a pipe 10, the other end of the circulation pipe 5 is fixedly connected to the pipe 10, the outer surface of the pipe 10 is installed with a steam nozzle 11, the installation box 7 and the disinfection box 8 are interconnected, the interior of the disinfection box 8 is installed with a placement net 12, and the outer surface of the exhaust pipe 3 is installed with a solenoid valve 2 15.
[0023] See also Figure 1-Figure 3In this embodiment, two mounting brackets 4 are fixedly provided on the upper end surface of the bottom plate 1. A hot water tank 17 is installed on the upper surface of the two mounting brackets 4. A heating pipe 18 is installed on the inner surface of the hot water tank 17. The arrangement of the mounting brackets 4 improves the stability of the hot water tank 17. The other end of the exhaust pipe 3 is fixedly connected to one end of the heating pipe 18. The other end of the heating pipe 18 is fixedly connected to the exhaust head 16. When the solenoid valve 2 15 is opened and the solenoid valve 1 14 is closed, the smoke flows through the exhaust pipe 3 into the heating pipe 18, and the hot water is heated by the heating pipe 18. The water in the tank 17 is heated, and a water replenishment tank 22 is fixedly provided on the upper end surface of the bottom plate 1. A water pump 23 is fixedly installed on the surface of the water replenishment tank 22 on one side close to the hot water tank 17. The output end of the water pump 23 is fixedly connected to one end of the delivery pipe 24, and the other end of the delivery pipe 24 extends to the interior of the hot water tank 17 through the left end surface of the hot water tank 17. When the water in the hot water tank 17 needs to be replenished, the water pump 23 can be started to transport the water in the water replenishment tank 22 into the hot water tank 17 through the delivery pipe 24 for heating treatment.
[0024] See also Figure 1-Figure 3 In this embodiment, an insulation box 25 is fixedly provided on the upper end surface of the bottom plate 1. A water pump 19 is fixedly installed on the surface of the insulation box 25 near the side of the hot water tank 17. The output end of the water pump 19 is fixedly connected to the delivery pipe 13. The other end of the delivery pipe 13 extends to the inside of the hot water tank 17 through the right end surface of the hot water tank 17. When the water in the hot water tank 17 reaches the required temperature, the water in the hot water tank 17 is delivered to the insulation box 25 through the delivery pipe 13 by the water pump 19. A water level detection module 21 is installed on the left end surface of the interior of the hot water tank 17, and a water level detection module 21 is installed on the right end surface of the interior of the hot water tank 17. The temperature detection module 20 controls the water pump 2 23 through the water level detection module 21. When the water in the hot water tank 17 does not reach a certain height, the water pump 2 23 is controlled to replenish water into the hot water tank 17. When the water in the hot water tank 17 reaches a certain temperature, the water pump 1 19 is controlled to transport the water in the hot water tank 17 into the insulation tank 25 for storage. The outer surfaces of the hot water tank 17 and the insulation tank 25 are both provided with an insulation layer. Providing the insulation layer on the outer surfaces of the hot water tank 17 and the insulation tank 25 can reduce heat dissipation, so that the water in the hot water tank 17 is heated faster and the hot water in the insulation tank 25 can be stored longer.
[0025] During operation, the smoke exhausted by the boiler body 2 can not only use the heat in the smoke to heat liquid water for use by personnel, but also use the hot steam in the smoke to disinfect objects. The solenoid valve 2 15 is closed and the solenoid valve 1 14 is opened. The smoke is transported into the circulation pipe 5 through the smoke exhaust pipe 3, and the steam and particle mixture are separated by the particle separator 6. The clean steam enters the pipe 10 through the circulation pipe 5 and is sprayed out through the steam nozzle 11, so that the high-temperature steam is used to disinfect the objects on the placement net 12. By controlling the solenoid valve 1 14 and the solenoid valve 2 15, the switching of the smoke flow direction is achieved. The operator can choose whether to heat liquid or disinfect as needed, which increases the flexibility and practicality of the equipment. This structure can not only use steam to provide hot water, but also use steam for disinfection, which greatly improves the energy utilization efficiency. At the same time, by recovering the heat energy in the smoke, energy waste is reduced and the operating cost is reduced. In the medical, catering and pharmaceutical industries, this device can effectively meet the disinfection needs. The inner surface of the hot water tank 17 is equipped with a heating The arrangement of the pipe 18 and the mounting frame 4 improves the stability of the hot water tank 17. The electromagnetic valve 2 15 is opened and the electromagnetic valve 1 14 is closed. The smoke flows into the heating pipe 18 through the exhaust pipe 3, and the water in the hot water tank 17 is heated by the heating pipe 18. When the water in the hot water tank 17 needs to be replenished, the water pump 2 23 can be started to transport the water in the water supply tank 22 into the hot water tank 17 through the delivery pipe 2 24 for heating. When the water in the hot water tank 17 reaches the required temperature, the water in the hot water tank 17 is transported to the hot water tank 17 through the delivery pipe 1 through the water pump 19. 13 is transported into the insulation box 25, and the water level detection module 21 controls the water pump 2 23. When the water in the hot water tank 17 does not reach a certain height, the water pump 2 23 is controlled to replenish water into the hot water tank 17. When the water in the hot water tank 17 reaches a certain temperature, the water pump 1 19 is controlled to transport the water in the hot water tank 17 into the insulation box 25 for storage. Insulation layers are provided on the outer surfaces of the hot water tank 17 and the insulation box 25 to reduce heat dissipation, so that the water in the hot water tank 17 is heated faster and the hot water in the insulation box 25 can be stored longer.
[0026] Through the above steps, the solenoid valve 2 15 is closed, the solenoid valve 1 14 is opened, the smoke is transported into the circulation pipe 5 through the smoke exhaust pipe 3, the steam and particle mixture are separated by the particle separator 6, the clean steam enters the pipe 10 through the circulation pipe 5, and the steam is sprayed out through the steam nozzle 11, so that the objects placed on the net 12 are disinfected with high-temperature steam. By controlling the solenoid valve 14 and the solenoid valve 2 15, the switching of the flue gas flow direction is realized. The operator can choose whether to heat the liquid or disinfect as needed, which increases the flexibility and practicality of the equipment. The structure can not only use steam to provide hot water, but also use steam for disinfection, which greatly improves the energy utilization efficiency. At the same time, by recovering the heat energy in the flue gas, energy waste is reduced and the operating cost is reduced. In the medical, catering and pharmaceutical industries, the device can effectively meet the disinfection needs to solve the problem that the common integrated gas boiler heat energy conversion equipment cannot use the high-temperature steam in the flue gas to disinfect objects, which not only causes energy waste but also increases the disinfection operating cost.
Claims
1. An integrated gas boiler heat energy conversion device, comprising a bottom plate (1); characterized in that: The invention also includes a boiler body (2), a smoke exhaust pipe (3), a circulation pipe (5), a disinfection box (8), a pipeline (10), a steam nozzle (11) and a solenoid valve (14). The upper end surface of the bottom plate (1) is fixedly provided with an installation box (7), the upper end surface of the installation box (7) is fixedly provided with a disinfection box (8), the front of the disinfection box (8) is provided with a box door (9), the upper end surface of the bottom plate (1) is fixedly provided with a boiler body (2), the upper end surface of the boiler body (2) is fixedly connected to one end of the smoke exhaust pipe (3), and the outer surface of the smoke exhaust pipe (3) is fixedly connected to the outer surface of the steam exhaust pipe (3). One end of a circulation pipe (5) is provided, an outer surface of the circulation pipe (5) is provided with a solenoid valve (14), an outer surface of the circulation pipe (5) is provided with a particle separator (6), a pipe (10) is provided inside the installation box (7), the other end of the circulation pipe (5) is fixedly connected to the pipe (10), a steam nozzle (11) is provided on the outer surface of the pipe (10), the installation box (7) and the disinfection box (8) are interconnected, a placement net (12) is provided inside the disinfection box (8), and a solenoid valve (15) is provided on the outer surface of the smoke exhaust pipe (3).
2. The integrated gas boiler heat energy conversion device according to claim 1, characterized in that: Two mounting frames (4) are fixedly provided on the upper end surface of the bottom plate (1), a hot water tank (17) is installed on the upper surface of the two mounting frames (4), and a heating pipe (18) is installed on the inner surface of the hot water tank (17).
3. The integrated gas boiler heat energy conversion device according to claim 1, characterized in that: The other end of the smoke exhaust pipe (3) is fixedly connected to one end of the heating pipe (18), and the other end of the heating pipe (18) is fixedly connected to the smoke exhaust head (16).
4. The integrated gas boiler heat energy conversion device according to claim 2, characterized in that: A water supply tank (22) is fixedly provided on the upper end surface of the bottom plate (1), and a second water pump (23) is fixedly installed on a surface of the water supply tank (22) close to the hot water tank (17). The output end of the second water pump (23) is fixedly connected to one end of the second delivery pipe (24), and the other end of the second delivery pipe (24) extends to the interior of the hot water tank (17) through the left end surface of the hot water tank (17).
5. The integrated gas boiler heat energy conversion device according to claim 4, characterized in that: An insulation box (25) is fixedly provided on the upper end surface of the bottom plate (1), and a water pump (19) is fixedly installed on the surface of the insulation box (25) on one side close to the hot water tank (17). The output end of the water pump (19) is fixedly connected to a delivery pipe (13), and the other end of the delivery pipe (13) extends to the interior of the hot water tank (17) through the right end surface of the hot water tank (17).
6. The integrated gas boiler heat energy conversion device according to claim 5, characterized in that: A water level detection module (21) is installed on the inner left end surface of the hot water tank (17), and a water temperature detection module (20) is installed on the inner right end surface of the hot water tank (17).
7. The integrated gas boiler heat energy conversion device according to claim 6, characterized in that: The outer surfaces of the hot water tank (17) and the insulation tank (25) are both provided with insulation layers.