Multifunctional efficient heat preservation water storage equipment of heating system
By combining vacuum insulation panels and ceramic coating materials with temperature control and pressure control components, the problem of heat loss in water storage equipment is solved, achieving a highly efficient, heat-insulating, safe, and stable heating system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-13
AI Technical Summary
The insulation performance of the rock wool layer in existing water storage equipment decreases after absorbing water, resulting in a large amount of heat loss and reducing the insulation effect of the water storage equipment.
By combining vacuum insulation panels and ceramic coating materials with temperature control and pressure control components, heat loss is reduced and temperature and pressure are stabilized.
This improves the insulation effect of the water storage equipment, maintains a stable temperature, and ensures the safe operation of the equipment.
Smart Images

Figure CN223992291U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of heating systems, and in particular to a multifunctional, high-efficiency heat-insulating water storage device for heating systems. Background Technology
[0002] A heating system is an engineering system that provides heat to a building to ensure a certain indoor temperature and create a comfortable indoor environment.
[0003] A heating system mainly consists of three parts: a heat source, a heat circulation system, and heat dissipation equipment. Generally, the low-temperature heat medium absorbs heat at the heat source, rises in temperature, and then flows into a storage tank. The high-temperature heat medium is stored and regulated in the storage tank before being transported to the heat dissipation equipment in each building via the heat circulation system. In the heat dissipation equipment, the heat medium exchanges heat with the indoor air, transferring heat to the indoor air and raising the indoor temperature. The cooled heat medium, after dissipating heat, then flows back to the heat source through the heat circulation system.
[0004] In existing technologies, water storage equipment relies on a layer of rock wool wrapped around its surface for insulation. However, due to the high water absorption of the rock wool layer, its insulation performance will decrease significantly when the rock wool layer becomes damp, causing a large amount of heat to dissipate outward from the water storage equipment, thus reducing the insulation effect of the water storage equipment. Utility Model Content
[0005] This utility model provides a multifunctional and efficient heat-insulating water storage device for a heating system to solve the technical problems mentioned in the background art.
[0006] This utility model provides a multifunctional and efficient heat-insulating water storage device for a heating system. The device includes a main body, a sealing cover, a vacuum insulation plate, an inlet pipe, an outlet pipe, a temperature regulating component, and a pressure control component. The main body includes an outer shell and an inner liner, with the inner liner disposed within the outer shell. The sealing cover is located at the top opening of the inner liner. The vacuum insulation plate is disposed between the outer shell and the inner liner. The inlet pipe passes through the side wall of the main body and is located at the upper part of the main body. The outlet pipe is located at the lower part of the main body and communicates with the interior of the inner liner. The temperature regulating component is disposed on the main body and is used to regulate the temperature of the heat transfer medium. The pressure control component is disposed on the main body and is used to regulate the pressure value within the main body.
[0007] Optionally, the sidewalls of the inner liner are coated with a ceramic coating material.
[0008] Optionally, the temperature control assembly includes a temperature sensor, a temperature controller, and an intelligent temperature regulating valve. Multiple temperature sensors are provided, all of which are located inside the inner tank and at different positions within the inner tank. The temperature controller is located on the outer wall of the outer shell near the water inlet pipe and is electrically connected to all of the multiple temperature sensors. The intelligent temperature regulating valve is located on the water inlet pipe and is electrically connected to the temperature controller.
[0009] Optionally, the pressure control assembly includes a water supply pipe, a pressure relief pipe, a water supply pump, a water tank, a pressure sensor, a pressure controller, and a pressure control valve. One end of the water supply pipe passes through the side wall of the main body and is located at the upper part of the main body. One end of the pressure relief pipe is connected to the water supply pipe, and the other end is connected to the outside air. The water supply pump is located inside the water tank and is connected to the end of the water supply pipe away from the main body. The pressure sensor is located inside the inner liner. The pressure controller is located outside the outer shell and is electrically connected to the pressure sensor. The pressure control valve is located on the pressure relief pipe and is electrically connected to the pressure controller.
[0010] Optionally, a top plate is provided at the top opening between the outer shell and the inner liner, and the top plate is detachably connected to the outer shell and the inner liner.
[0011] Optionally, both the sealing cover and the top plate are provided with sealing strips.
[0012] Optionally, a filter layer is also provided inside the inner tank, the filter layer is located at the connection between the inner tank and the water outlet pipe, and the filter layer is detachably connected to the inner tank.
[0013] The beneficial effects of this utility model are as follows:
[0014] This multifunctional and efficient heat-insulating water storage device for a heating system includes a main body, a sealing cover, a vacuum insulation plate, an inlet pipe, an outlet pipe, a temperature regulating component, and a pressure control component. The main body includes an outer shell and an inner tank, with the inner tank located inside the outer shell. The sealing cover is located at the top opening of the inner tank, and the vacuum insulation plate is located between the outer shell and the inner tank. The temperature regulating component is located on the main body and is used to regulate the temperature of the heat transfer medium. The pressure control component is located on the main body and is used to regulate the pressure value inside the main body. This multifunctional and efficient heat-insulating water storage device for a heating system reduces the heat loss of the heat transfer medium inside the water storage device through the design of various structures, thereby improving the heat preservation effect of the water storage device. At the same time, the temperature regulating component monitors the temperature of the heat transfer medium in real time to maintain the temperature stability inside the water storage device, and the pressure control component monitors the internal pressure of the inner tank, thereby ensuring the safety of the water storage device. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the structure of a multifunctional and efficient heat-insulating water storage device for a heating system provided by this utility model;
[0017] Figure 2 This is a schematic diagram intended to illustrate the internal structure of the main body;
[0018] Figure 3 This is a schematic diagram intended to illustrate the structure of the water supply pump.
[0019] Explanation of reference numerals in the attached figures:
[0020] 1. Main body; 11. Outer shell; 12. Inner liner; 13. Top plate; 2. Sealing cover; 3. Vacuum insulation plate; 4. Water inlet pipe; 5. Water outlet pipe; 6. Temperature control component; 61. Temperature sensor; 62. Temperature controller; 63. Intelligent temperature regulating valve; 7. Pressure control component; 71. Water supply pipe; 72. Pressure relief pipe; 73. Water supply pump; 74. Water tank; 75. Pressure sensor; 76. Pressure controller; 77. Pressure control valve; 8. Filter layer. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. It should be understood that the specific embodiments described herein are only for explaining the present utility model and not for limiting it. Furthermore, it should be noted that, for ease of description, only the parts related to the present utility model are shown in the drawings, not all of the structures. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.
[0022] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0023] Please see Figures 1 to 3The present invention provides a multi-functional and efficient heat-insulating water storage device for a heating system, comprising a main body 1, a sealing cover 2, a vacuum insulation plate 3, an inlet pipe 4, an outlet pipe 5, a temperature regulating component 6, and a pressure control component 7.
[0024] The main body 1 includes an outer shell 11 and an inner liner 12. The inner liner 12 is disposed inside the outer shell 11. The sealing cap 2 is disposed at the top opening of the inner liner 12. The vacuum insulation plate 3 is disposed between the outer shell 11 and the inner liner 12. The water inlet pipe 4 passes through the side wall of the main body 1 and is located at the upper part of the main body 1. The water outlet pipe 5 is disposed at the lower part of the main body 1 and communicates with the interior of the inner liner 1. The temperature regulating component 6 is disposed on the main body 1 and is used to regulate the temperature of the heat medium. The pressure control component 7 is disposed on the main body 1 and is used to regulate the pressure value inside the main body 1.
[0025] In this process, after the heat medium absorbs heat and heats up at the heat source, it flows into the inner tank 12 from the water inlet pipe 4. The heat of the heat medium is dissipated outward along the side wall of the inner tank 12. The vacuum layer of the vacuum insulation plate 3 greatly reduces heat conduction and heat convection, thereby reducing the outward loss of heat. The outer shell 11 further prevents the loss of heat, thus achieving efficient heat preservation of the water storage equipment.
[0026] Meanwhile, the temperature control component 6 monitors the water temperature in real time, keeping the temperature inside the water storage device stable, and the pressure control component 7 ensures that the water storage device operates within a stable pressure range, thus preventing the water storage device from posing safety hazards due to excessively high or low pressure values.
[0027] In this embodiment, the sidewall of the inner liner 12 is coated with a ceramic coating material;
[0028] Among them, the ceramic coating material forms a heat insulation layer on the side wall of the inner tank 12. The ceramic coating can effectively reflect heat, making it difficult for the heat medium to lose heat, thereby further improving the heat preservation capacity of the water storage equipment.
[0029] In this embodiment, the temperature control component 6 includes a temperature sensor 61, a temperature controller 62, and an intelligent temperature regulating valve 63. Multiple temperature sensors 61 are provided, all located inside the inner liner 12 at different positions. The temperature controller 62 is located on the outer wall of the outer shell 11 near the water inlet pipe 4, and is electrically connected to all the temperature sensors 61. The intelligent temperature regulating valve 63 is located on the water inlet pipe 4 and is electrically connected to the temperature controller 62.
[0030] Among them, multiple temperature sensors 61 at different positions in the inner liner 12 monitor the temperature of the heat medium in real time and feed the temperature data back to the temperature controller 62. The temperature controller 62 controls the intelligent temperature regulating valve 63. When the temperature of the heat medium is too high, the intelligent temperature regulating valve 63 reduces the flow rate of the heat medium. When the temperature of the heat medium is too low, the intelligent temperature regulating valve 63 increases the flow rate of the heat medium, thereby stabilizing the heat of the heat medium in the inner liner 12.
[0031] In this embodiment, the pressure control component 7 includes a water supply pipe 71, a pressure relief pipe 72, a water supply pump 73, a water tank 74, a pressure sensor 75, a pressure controller 76, and a pressure control valve 77. One end of the water supply pipe 71 passes through the side wall of the main body 1 and is located at the upper part of the main body 1. One end of the pressure relief pipe 72 is connected to the water supply pipe 71, and the other end is connected to the external air. The water supply pump 73 is located inside the water tank 74 and is connected to the end of the water supply pipe 71 away from the main body 1. The pressure sensor 75 is located inside the inner tank 12. The pressure controller 76 is located outside the outer shell 11 and is electrically connected to the pressure sensor 75. The pressure control valve 77 is located on the pressure relief pipe 72 and is electrically connected to the pressure controller 76.
[0032] The pressure sensor 75 monitors the pressure inside the inner tank 12 in real time. At the same time, the pressure sensor 75 transmits the pressure data to the pressure controller 76. The pressure controller 76 analyzes the data. When the pressure inside the inner tank 12 is too high, the pressure controller 76 controls the pressure control valve 77 to operate. The pressure control valve 77 opens to release part of the pressure inside the inner tank. When the pressure is too low, the water pump 73 operates, allowing the heat transfer medium in the water tank 74 to flow into the inner tank 12 through the water supply pipe 71, thereby ensuring that the water storage equipment operates within a stable pressure range.
[0033] In this embodiment, a top plate 13 is provided at the top opening between the outer shell 11 and the inner liner 12. The top plate 13 is detachably connected to the outer shell 11 and detachably connected to the inner liner 12.
[0034] The top plate 13 is detachably connected to the outer shell 11 and the inner liner 12, making it easy for staff to observe the status of the vacuum insulation plate 3 and replace it.
[0035] In this embodiment, both the sealing cover 2 and the top plate 13 are provided with sealing strips.
[0036] The sealing strips at the sealing cover 2 and the top plate 13 effectively prevent heat loss from the water storage equipment, thereby further improving the heat preservation performance of the water storage equipment.
[0037] In this embodiment, a filter layer 8 is also provided inside the inner liner 12. The filter layer 8 is located at the point where the inner liner 12 connects to the water outlet pipe 5, and the filter layer 8 is detachably connected to the inner liner 12.
[0038] The filter layer 8 prevents impurities and rust from entering the outlet pipe 5 from the inner tank 12, thus ensuring the normal operation of the heating system.
[0039] This multifunctional and efficient heat-insulating water storage device for a heating system includes a main body 1, a sealing cover 2, a vacuum insulation plate 3, an inlet pipe 4, an outlet pipe 5, a temperature regulating component 6, and a pressure control component 7. The main body 1 includes an outer shell 11 and an inner tank 12, with the inner tank 12 located inside the outer shell 11. The sealing cover 2 is located at the top opening of the inner tank 12. The vacuum insulation plate 3 is located between the outer shell 11 and the inner tank 12. The temperature regulating component 6 is located on the main body 1 and is used to regulate the temperature of the heat medium. The pressure control component 7 is located on the main body 1 and is used to regulate the pressure value inside the main body 1. This multifunctional and efficient heat-insulating water storage device for a heating system reduces the heat loss of the heat medium inside the water storage device through the design of various structures, thereby improving the heat preservation effect of the water storage device. At the same time, the temperature regulating component 6 monitors the temperature of the heat medium in real time to maintain the temperature stability inside the water storage device, and the pressure control component 7 monitors the internal pressure of the inner tank, thereby ensuring the safety of the water storage device.
[0040] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A multifunctional high-efficiency heat preservation water storage device for a heating system, characterized in that, The utility model relates to a kind of vacuum heat preservation plate type water heater, including Body, the body includes shell and inner bag, the inner bag is arranged in the shell inside; Sealing cover, the sealing cover is arranged at the top opening of the inner bag; Vacuum heat insulation plate, the vacuum heat insulation plate is arranged between the shell and the inner bag; Water inlet pipe, the water inlet pipe is arranged on the sidewall of the body, and located in the upper portion of the body; Water outlet pipe, the water outlet pipe is arranged in the lower portion of the body, and is communicated with the inside of the inner bag; Temperature regulating assembly; The temperature regulating assembly is arranged on the body, and is used for adjusting the temperature of heat medium; Pressure control assembly, the pressure control assembly is arranged on the body, and is used for adjusting the pressure value in the body.
2. The multifunctional high-efficiency heat preservation and water storage device for a heating system according to claim 1, characterized in that, The sidewall of the inner bag is sprayed with ceramic coating material.
3. The multi-functional and high-efficient heat-preserving and water-storing device for heating system according to claim 1, characterized in that, The temperature regulating assembly includes temperature sensor, temperature controller and intelligent temperature regulating valve, the temperature sensor is provided with multiple, multiple temperature sensors are arranged in the inside of the inner bag, and are located at different positions of the inner bag respectively, the temperature controller is arranged on the outer sidewall of the shell close to the water inlet pipe, the temperature controller is electrically connected with multiple temperature sensors, and the intelligent temperature regulating valve is arranged on the water inlet pipe and is electrically connected with the temperature controller.
4. The multi-functional and high-efficient heat-preserving and water-storing device of a heating system according to claim 1, characterized in that, The pressure control assembly includes water replenishing pipe, pressure relief pipe, water replenishing pump, water tank, pressure sensor, pressure controller and pressure control valve, one end of the water replenishing pipe is arranged on the sidewall of the body, and located in the upper portion of the body, one end of the pressure relief pipe is communicated with the water replenishing pipe, and the other end is communicated with external air, the water replenishing pump is arranged in the inside of the water tank, and is communicated with the end of the water replenishing pipe away from the body, the pressure sensor is arranged in the inside of the inner bag, the pressure controller is arranged outside the shell and is electrically connected with the pressure sensor, and the pressure control valve is arranged on the pressure relief pipe and is electrically connected with the pressure controller.
5. The multi-functional and high-efficient heat-preserving and water-storing device of a heating system according to claim 1, characterized in that, Top opening between the shell and the inner bag is provided with top plate, the top plate is detachably connected with the shell, and is detachably connected with the inner bag.
6. The multi-functional and high-efficient heat-preserving and water-storing device of a heating system according to claim 5, characterized in that, Sealing strip is arranged on the sealing cover and the top plate.
7. The multi-functional and high-efficient heat-preserving and water-storing device of a heating system according to claim 1, characterized in that, Filter layer is further arranged in the inner bag, and the filter layer is located at the position where the inner bag is connected with the water outlet pipe, and the filter layer is detachably connected with the inner bag.