CN217274421U - Solar heating intelligent system - Google Patents

Solar heating intelligent system Download PDF

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Publication number
CN217274421U
CN217274421U CN202221143237.1U CN202221143237U CN217274421U CN 217274421 U CN217274421 U CN 217274421U CN 202221143237 U CN202221143237 U CN 202221143237U CN 217274421 U CN217274421 U CN 217274421U
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heat
water tank
pipeline
water outlet
heat storage
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CN202221143237.1U
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王强
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Beijing Xinhua Gaoke New Energy Technology Co ltd
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Beijing Xinhua Gaoke New Energy Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/70Hybrid systems, e.g. uninterruptible or back-up power supplies integrating renewable energies

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Abstract

The utility model discloses a solar heating intelligent system relates to solar heating technical field. The solar heating system comprises a solar heat collector, a heat storage and heat exchange water tank, a fan coil, a fresh air and heat recovery system and a photo-thermal heating controller, wherein a heat tracing band is arranged on the outer wall of the heat storage and heat exchange water tank, a water inlet of the solar heat collector, a water outlet of the solar heat collector is connected with a first water outlet of the heat storage and heat exchange water tank through a water inlet pipeline, the fan coil is arranged in a room, a water inlet of the fan coil, a water outlet of the fan coil is connected with a second water outlet of the heat storage and heat exchange water tank through a water inlet pipeline, a pipeline type electric auxiliary heater is arranged between pipelines of the first water outlet and the second water outlet of the heat storage and heat exchange water tank, an air outlet of the indoor part of the fresh air and heat recovery system is connected with an air inlet pipeline of the fan coil through a pipeline, the photo-thermal heating controller is arranged in the room, and the fresh air and heat recovery system, the pipeline type electric auxiliary heater and the heat tracing band are electrically connected with the photo-thermal heating controller. The utility model discloses can make full use of solar energy realize the intelligent heating in house.

Description

Solar heating intelligent system
Technical Field
The utility model belongs to the technical field of solar energy heating, specifically be a solar energy heating intelligent system.
Background
At present, energy shortage and serious environmental pollution in China are caused, solar heat utilization is an important way for relieving energy shortage, the technology for supplying domestic hot water by utilizing solar energy is popularized at present, but the technology for heating by utilizing solar energy is not complete, only a few demonstration projects are built, particularly in areas with scarce resources such as coal, petroleum, natural gas and the like, the problem of how to utilize abundant solar energy resources to supply heat and heat is more worthy of research, the prior art is that a solar energy collector converts light energy into heat energy for heating, a heating device is connected between a water tank and the heat collector, a medium is circulated in a heating circulation loop among the heat collector, the water tank and the heat radiator, and the heat radiator is utilized to control the indoor temperature, on the one hand, the solar heat utilization equipment and the technology have the defects of no sunlight or even unavailable use in cold weather, solar energy collection effect is poor, and the system operation can not be intelligent, can not satisfy the demand of building continuous heating, and on the other hand, often can not high-efficient cooperation between each system of heating system, has also increased various costs intangibly.
Therefore, how to develop a heating system with complementary solar energy and electric energy is a very urgent need, and meanwhile, reasonable energy utilization and excessive waste avoidance are needed, which is a problem to be solved by the technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a solar energy heating intelligent system, which can fully utilize solar energy to realize intelligent heating of houses, and effectively relieve the problems of pollution, high operation cost, substandard heating and the like in the prior art; meanwhile, the problem of high load pressure brought to a power grid by power utilization in winter is solved.
In order to achieve the purpose, the utility model provides a solar heating intelligent system, which comprises a solar heat collector, a heat storage and heat exchange water tank, a fan coil, a fresh air and heat recovery system and a light and heat heating controller, wherein the outer wall of the heat storage and heat exchange water tank is provided with a heat tracing band, the water inlet of the solar heat collector is connected with a first water outlet pipeline of the heat storage and heat exchange water tank, the water outlet of the solar heat collector is connected with a first water inlet pipeline of the heat storage and heat exchange water tank, the fan coil is arranged in a room, the water inlet of the fan coil is connected with a second water outlet pipeline of the heat storage and heat exchange water tank, the water outlet of the fan coil is connected with a second water inlet pipeline of the heat storage and heat exchange water tank, a pipeline type electric auxiliary heater is arranged between the pipeline of the first water outlet pipeline and the pipeline of the second water outlet pipeline, the air inlet of the indoor part of the fresh air and heat recovery system is arranged at the top end of the room, the indoor part of the fresh air and heat recovery system is connected with an air inlet pipeline of the fan coil, the photo-thermal heating controller is arranged in a room, and the fresh air and heat recovery system, the pipeline type electric auxiliary heater and the heat tracing band are all electrically connected with the photo-thermal heating controller.
Further, still include level sensor, first temperature sensor, second temperature sensor, third temperature sensor and fourth temperature sensor, level sensor sets up in heat accumulation heat transfer water tank, first temperature sensor sets up in solar collector's delivery port, second temperature sensor sets up in the water tank, third temperature sensor sets up on heat accumulation heat transfer water tank's second inlet pipe way, fourth temperature sensor sets up in the room, temperature sensor, first temperature sensor, second temperature sensor, third temperature sensor and fourth temperature sensor all are connected with light and heat heating controller electricity.
Further, still include the heating circulating pump, the heating circulating pump sets up on the pipeline of heat accumulation heat exchange water tank's second delivery port, the heating circulating pump is connected with light and heat heating controller electricity.
The solar heat collector further comprises a heat collection circulating pump, wherein the heat collection circulating pump is arranged on a pipeline of a first water outlet of the heat storage heat exchange water tank and is electrically connected with the photo-thermal heating controller.
And the heat storage and heat exchange water tank further comprises a check valve, and the check valve is arranged on the pipeline of the first water outlet and the second water outlet of the heat storage and heat exchange water tank.
Further, still include coil heater, coil heater sets up on fan coil, coil heater is connected with light and heat heating controller electricity.
Further, still include the moisturizing solenoid valve, the moisturizing solenoid valve sets up in heat accumulation heat transfer water tank's moisturizing mouth, the moisturizing solenoid valve is connected with light and heat heating controller electricity.
Further, the heat storage and heat exchange water tank further comprises a drain valve, and the drain valve is arranged at the first water outlet of the heat storage and heat exchange water tank.
Furthermore, the peripheral sides of the external pipelines are wrapped with heat-insulating layers.
Further, the water inlet and the water outlet of each pipeline are provided with electric valves, and the electric valves are electrically connected with the photo-thermal heating controller.
The beneficial effects of the utility model are that:
the utility model discloses can realize intelligent heating, the setting of solar collector can effectively utilize solar energy to heat water, the setting of heat accumulation heat transfer water tank collects unnecessary heat source, and release when heating at night, the utilization ratio of the energy is improved, the setting of fan coil, utilize hot water constantly to heat the air inlet of new trend heat recovery system, the running noise is little, when low-grade operation, its noise is generally at 30 ~ 40db (A), can nimble regulation each room's temperature, economy and energy saving, new trend heat recovery system can preheat the air that gets into the room through the mode of heat exchange, the consumption of the energy is saved, the setting of new trend heat recovery system and fan coil, make each room can adjust the room temperature alone, the control is nimble, save the working costs, the setting of pipeline formula electricity auxiliary heater, can prevent heat accumulation heat transfer water tank from freezing, the heat storage and exchange water tank is well protected.
Drawings
Fig. 1 is a schematic view of the frame structure of the present invention.
Fig. 2 is the wiring schematic diagram of the photo-thermal heating controller of the present invention.
Wherein, 1, the solar energy heat collector; 2. a heat storage and exchange water tank; 3. a fan coil; 4. a fresh air heat recovery system; 5. a water level sensor; 6. a first temperature sensor; 7. a second temperature sensor; 8. a third temperature sensor; 9. a fourth temperature sensor; 10. a heating circulating pump; 11. a heat collection circulating pump; 12. a check valve; 13. a water replenishing electromagnetic valve; 14. a blowoff valve; 15. a pipeline type electric auxiliary heater; 16. a heat tracing band; 17. a coil heater.
Detailed Description
To achieve the above objects and advantages, the present invention provides a technical means and a structure thereof, which are combined with the accompanying drawings to explain the features and functions of the preferred embodiment of the present invention in detail.
In the description of the present invention, it should be noted that the terms "upper", "lower", "left", "right", "one side", "inner", "outer", "side", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention; the terms "mounted," "connected," and "coupled" are to be construed broadly and may include, for example, fixed connections, removable connections, or integral connections; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example 1
As shown in fig. 1-2, the utility model provides a solar heating intelligent system, including solar collector 1, heat accumulation heat exchange water tank 2, fan coil 3, new trend heat recovery system 4, pipeline formula electricity assist heater 15 and light and heat heating controller, light and heat heating controller arranges in the room, and new trend heat recovery system 4 and pipeline formula electricity assist heater 15 all are connected with light and heat heating controller electricity, and there are 3 rooms in this embodiment, and fan coil 3 is provided with 3 sets.
The outer wall of the heat storage and exchange water tank 2 is provided with a heat tracing band 16, a water replenishing solenoid valve 13 is arranged at a water replenishing port of the heat storage and exchange water tank 2, a water level sensor 5 and a second temperature sensor 7 are arranged in the heat storage and exchange water tank 2, a water inlet of the solar heat collector 1 is connected with a first water outlet pipeline of the heat storage and exchange water tank 2, a blowoff valve 14 is arranged at a first water outlet of the heat storage and exchange water tank 2, the blowoff valve 14 is arranged to facilitate the discharge of water in the heat storage and exchange water tank 2 and facilitate the cleaning of the heat storage and exchange water tank 2, when a heating system is not used for a long time, the pipeline is prevented from freezing by emptying water, a water outlet of the solar heat collector 1 is connected with the first water inlet pipeline of the heat storage and exchange water tank 2, a water outlet of the solar heat collector 1 is provided with a first temperature sensor 6, 3 sets of fan coils are arranged in 3 rooms, and 3 sets of fan coil water circulation pipelines are connected in parallel, the fan coil 3 in this embodiment is provided with a coil heater 17, which can heat the fan coil by electric energy, thereby assisting the temperature rise of the room, in the room, the water inlet of the fan coil 3 is connected with the second water outlet pipeline of the heat storage and heat exchange water tank 2, the pipelines of the first water outlet and the second water outlet of the heat storage and heat exchange water tank 2 are provided with check valves 12, which avoid the backflow of circulating water, the water outlet of the fan coil 3 is connected with the second water inlet pipeline of the heat storage and heat exchange water tank 2, the second water inlet pipeline of the heat storage and heat exchange water tank 2 is provided with a third temperature sensor 8, a pipeline type electric auxiliary heater 15 is arranged between the pipeline of the first water outlet and the pipeline of the second water outlet of the heat storage and heat exchange water tank 2, the periphery of each external pipeline is wrapped with a heat preservation layer, the water inlet and the water outlet of each pipeline are provided with electric valves, and the electric valves are electrically connected with a photo-thermal heating controller, the switching of the circulating pipeline is convenient.
The utility model discloses still be provided with heating circulating pump 10 and heat collection circulating pump 11, heating circulating pump 10 sets up on the pipeline of heat accumulation heat exchange water tank 2's second delivery port, and heat collection circulating pump 11 sets up on the pipeline of heat accumulation heat exchange water tank 2's first delivery port, and heating circulating pump 10 and heat collection circulating pump 11 all are connected with light and heat heating controller electricity, and heating circulating pump 10 and heat collection circulating pump 11's setting for promote the quick circulation of rivers.
An air inlet of the indoor part of the fresh air and heat recovery system 4 is arranged at the top end of a room and used for absorbing waste gas in the room, a fourth temperature sensor 9 is arranged in the room, an air outlet of the indoor part of the fresh air and heat recovery system 4 is connected with an air inlet pipeline of the fan coil 3, a heat tracing band 16, a coil heater 17, a water replenishing electromagnetic valve 13, a water level sensor 5, a first temperature sensor 6, a second temperature sensor 7, a third temperature sensor 8 and the fourth temperature sensor 9 are all electrically connected with the photo-thermal heating controller, the water level sensor 5 is arranged and used for monitoring the water level of the heat storage and heat exchange water tank 2 and automatically replenishing water through the water replenishing electromagnetic valve 13 when the water level of the heat storage and heat exchange water tank 2 reaches a water level line, the first temperature sensor 6 is used for monitoring the temperature of the solar thermal collector 1 and stopping heat collection circulation when the temperature of the solar thermal collector 1 is overhigh, avoid the heat collector to explode the pipe, second temperature sensor 7 is used for monitoring heat accumulation heat transfer water tank 2's temperature to can be crossed when low at heat accumulation heat transfer water tank 2 temperature, start the boosting through 15 of pipeline formula electricity auxiliary heater, play frost-proof effect, third temperature sensor 8 is arranged in monitoring fan heat pipe rivers's backflow temperature, and fourth temperature sensor 9 is arranged in monitoring the room temperature in room.
The utility model discloses be provided with summer mode, heating mode, economize on electricity heating mode, its theory of operation is: in a summer mode, only starting the solar heat collector 1, the heat storage and exchange water tank 2 and the heat collection circulating pump 11 to form a first water circulating system, and starting the heat collection circulating pump 11 when the difference between the temperature of the solar heat collector 1 and the temperature of the heat storage and exchange water tank is more than or equal to 5 ℃; when the temperature difference is less than or equal to 3 ℃, the heat collection circulating pump 11 stops, hot water generated by the solar heat collector 1 circulates to the heat storage and exchange water tank 2, and the hot water in the heat storage and exchange water tank 2 is used for daily use such as people bathing; in a heating mode, hot water generated by a solar heat collector 1 circulates into a heat storage and exchange water tank 2, the hot water is conveyed to a fan coil 3 through a heating circulating pump 10 to form a second water circulating system, a fresh air heat recovery system 4 discharges waste gas in a room, fresh air fed into the room from the outside is preheated through heat recovery, the fan coil 3 heats the preheated fresh air again, so that the temperature in the room is adjusted, the air in the room is input, the air circulation performance in the room is ensured, and the circulating water of the fan coil 3 flows into the heat storage and exchange water tank 2 through a water outlet of the fan coil 3; the power-saving heating mode is a mode of increasing the control of power consumption on the basis of the heating mode, is generally suitable for winter, starts the heat tracing band 16 and the coil heater 17 after the water temperature in the heat storage heat exchange water tank 2 is lower than the set temperature, stops heating after the water temperature in the heat storage heat exchange water tank 2 reaches the set temperature, and circulates repeatedly.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that any slight modifications, equivalent changes and modifications made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (10)

1. A solar heating intelligent system is characterized by comprising a solar heat collector, a heat storage and heat exchange water tank, a fan coil, a fresh air and heat recovery system and a photo-thermal heating controller, wherein a heat tracing band is arranged on the outer wall of the heat storage and heat exchange water tank, a water inlet of the solar heat collector is connected with a first water outlet pipeline of the heat storage and heat exchange water tank, a water outlet of the solar heat collector is connected with a first water inlet pipeline of the heat storage and heat exchange water tank, the fan coil is arranged in a room, a water inlet of the fan coil is connected with a second water outlet pipeline of the heat storage and heat exchange water tank, a water outlet of the fan coil is connected with a second water inlet pipeline of the heat storage and heat exchange water tank, a pipeline type electric auxiliary heater is arranged between the pipeline of the first water outlet and the pipeline of the second water outlet, and an air inlet of the indoor part of the fresh air and heat recovery system is arranged at the top end of the room, the indoor part of the fresh air and heat recovery system is connected with an air inlet pipeline of the fan coil, the photo-thermal heating controller is arranged in a room, and the fresh air and heat recovery system, the pipeline type electric auxiliary heater and the heat tracing band are all electrically connected with the photo-thermal heating controller.
2. The intelligent solar heating system as claimed in claim 1, further comprising a water level sensor, a first temperature sensor, a second temperature sensor, a third temperature sensor and a fourth temperature sensor, wherein the water level sensor is disposed in the heat storage and heat exchange water tank, the first temperature sensor is disposed at a water outlet of the solar heat collector, the second temperature sensor is disposed in the water tank, the third temperature sensor is disposed on a second water inlet pipeline of the heat storage and heat exchange water tank, the fourth temperature sensor is disposed in a room, and the water level sensor, the first temperature sensor, the second temperature sensor, the third temperature sensor and the fourth temperature sensor are all electrically connected with the photothermal heating controller.
3. The intelligent solar heating system as claimed in claim 1, further comprising a heating circulation pump, wherein the heating circulation pump is disposed on the pipeline of the second water outlet of the heat storage and heat exchange water tank, and the heating circulation pump is electrically connected to the photo-thermal heating controller.
4. The intelligent solar heating system as claimed in claim 1, further comprising a heat collection circulating pump, wherein the heat collection circulating pump is disposed on the pipeline of the first water outlet of the heat storage heat exchange water tank, and the heat collection circulating pump is electrically connected to the photo-thermal heating controller.
5. The intelligent solar heating system as claimed in claim 1, further comprising check valves disposed on the pipes of the first water outlet and the second water outlet of the heat storage and exchange water tank.
6. The intelligent system of claim 1, further comprising a coil heater disposed on the fan coil, the coil heater being electrically connected to the photothermal heating controller.
7. The intelligent solar heating system as claimed in claim 1, further comprising a water replenishing solenoid valve, wherein the water replenishing solenoid valve is disposed at a water replenishing port of the heat storage and exchange water tank, and the water replenishing solenoid valve is electrically connected to the photothermal heating controller.
8. The intelligent system of claim 1, further comprising a blowdown valve disposed at the first water outlet of the heat storage and exchange tank.
9. The intelligent solar heating system as claimed in claim 1, wherein the external pipelines are wrapped with insulating layers on the periphery.
10. The intelligent solar heating system as claimed in claim 1, wherein each of the water inlet and the water outlet of each pipeline is provided with an electric valve, and the electric valves are electrically connected with the photo-thermal heating controller.
CN202221143237.1U 2022-05-13 2022-05-13 Solar heating intelligent system Active CN217274421U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221143237.1U CN217274421U (en) 2022-05-13 2022-05-13 Solar heating intelligent system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221143237.1U CN217274421U (en) 2022-05-13 2022-05-13 Solar heating intelligent system

Publications (1)

Publication Number Publication Date
CN217274421U true CN217274421U (en) 2022-08-23

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CN202221143237.1U Active CN217274421U (en) 2022-05-13 2022-05-13 Solar heating intelligent system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117515639A (en) * 2023-10-07 2024-02-06 成都栖睿机电设备有限公司 Distributed solar thermal storage and heating integrated device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117515639A (en) * 2023-10-07 2024-02-06 成都栖睿机电设备有限公司 Distributed solar thermal storage and heating integrated device

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