CN207050072U - Solar energy Intelligent heating system - Google Patents

Solar energy Intelligent heating system Download PDF

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Publication number
CN207050072U
CN207050072U CN201720674927.2U CN201720674927U CN207050072U CN 207050072 U CN207050072 U CN 207050072U CN 201720674927 U CN201720674927 U CN 201720674927U CN 207050072 U CN207050072 U CN 207050072U
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China
Prior art keywords
solar energy
heat preservation
valve
storage water
water tank
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CN201720674927.2U
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Chinese (zh)
Inventor
张玉森
李滨
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DANDONG HENGCHENG ENVIRONMENTAL PROTECTION TECHNOLOGY DEVELOPMENT Co Ltd
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DANDONG HENGCHENG ENVIRONMENTAL PROTECTION TECHNOLOGY DEVELOPMENT 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

Abstract

A kind of solar energy Intelligent heating system, provided with internal circulation system and external circulating system, the inside and outside circulatory system is controlled to carry out automatic conversion by control module;Heat preservation storage water tank is sequentially connected solar energy header tank, heating plant, circulating pump and heat preservation storage water tank by external circulation line, thus forms external circulating system;Heat preservation storage water tank is sequentially connected heating plant, circulating pump and heat preservation storage water tank by inner loop pipeline, thus forms internal circulation system;Valve is respectively arranged with external circulation line and inner loop pipeline, by the on off state of control module control valve so as to carrying out the switching of storing tank;Heat supply is carried out when being provided with auxiliary heater in heat preservation storage water tank and being circulated in system is carried out.The utility model can automatic conversion inner-outer circulation, ensure heat supply temperature while reach save electric energy purpose.

Description

Solar energy Intelligent heating system
Technical field
The utility model is related to a kind of solar energy Intelligent heating system, especially one kind include it is inside and outside it is bicirculating too Positive energy Intelligent heating system.
Background technology
The greenhouses such as vast rural area veterinary antibiotics, cultivation and resident's heating of house in the past all using fire coal, dried firewood, weeds, Oil, gas etc. lift temperature in greenhouse and indoor as incendiary material, to meet the growth such as canopy implants and heating, not only fire Pollution is generated during burning to environment, and is wasted time and energy, it is uneconomical.Solar energy is a kind of clean energy, utilizes solar radiation Principle, it is the process of heat absorption first, this process is the outer tube that solar radiation passes through vacuum tube, after being absorbed by heat collector plated film The water being delivered to along inner tubal wall in pipe, and the temperature after heat absorption of the water in pipe will rise, and rise as proportion reduces, So as to form a upward power, a thermosiphon system is just constituted.Constantly moving up and be stored in top with hot water Storage tank, while opposite side of the relatively low water of temperature along pipe is continuously replenished and so moved in circles, final whole box water is all increased to one Fixed temperature.When developing solar energy, waste residue, waste water will not be produced, waste gas, also do not have noise, do not interfere with ecology more Balance, is polluted and public hazards.
Solar heating equipment now mostly using solar energy simple subprogram produce hot water principle, run into cloudy day and When night solar energy can not produce hot water, the requirement of water temperature in supply channel is met using electrically heated method, due to the sun Can pipe it is installed outdoors, now solar pipe is changed into radiating tube, and the hot water in interior conduit can be recycled to solar pipe, reduce The temperature of recirculated water, formed and radiated in heating, waste electric energy, it is uneconomical.
The content of the invention
In order to solve the above-mentioned technical problem, utility model provides solar energy Intelligent heating system, the solar heating system System is divided into internal circulation system and external circulating system, and when outdoor temperature drops to set temperature value, temperature caused by solar energy has reached Less than indoor temperature requirement, indoor hot water cyclesystem is automatically switched to by outdoor hot water circuit, simultaneously closes off outdoor cyclic system Unite and carry out auxiliary heating to indoor circulation system, due to not being from normal temperature(Initial temperature)Heating, but add from design temperature Heat, so do not need too many electric energy to be heated to required temperature, by hot water storage in multi-layer heat preserving case, the haybox cooking Effect is fabulous, and heat loss is small, fully meets the requirement of radiator hot water.When outdoor circulating temperature reaches design temperature, by controlling System part automatically switches to the outdoor circulatory system, and the outdoor circulatory system need not aid in heating, and be changed into solar energy heating, reach section About electric energy purpose.
To achieve these goals, the technical solution adopted in the utility model is:Solar energy Intelligent heating system, includes Solar energy header tank and heating plant, it is characterised in that:Provided with internal circulation system and external circulating system, controlled by control module The inside and outside circulatory system carries out automatic conversion;Heat preservation storage water tank is sequentially connected solar energy header tank by external circulation line, heat supply fills Put, circulating pump and heat preservation storage water tank, thus form external circulating system;Heat preservation storage water tank is sequentially connected heat supply by inner loop pipeline Device, circulating pump and heat preservation storage water tank, thus form internal circulation system;It is respectively arranged with external circulation line and inner loop pipeline Valve, by the on off state of control module control valve so as to carrying out the switching of storing tank;In heat preservation storage water tank It is provided with when auxiliary heater circulates in system is carried out and carries out heat supply.
The pressure sensor of sensed water level water and the TEMP of detection temperature are installed in described heat preservation storage water tank The signal output part link control module of device, pressure sensor and temperature sensor.
Temperature acquisition set mechanism is provided with described solar energy header tank, by collection information transfer to control module In, and trip temperature is entered by control module and set.
Described control module by control valve I, valve II, valve III and valve IV break-make, so as in carrying out, The switching of outer circulation, wherein valve I are arranged between the heat preservation storage water tank of external circulation line and solar energy header tank, valve III It is arranged between the solar energy header tank of external circulation line and heating plant, valve II is arranged on the warm storage tank of inner loop pipeline Between heating plant, valve IV one end is connected between the valve III of external circulation line and heating plant, other end connection water Source water inlet.
Described auxiliary heater is uniformly controlled by control module, and auxiliary heater is by civil power or solar power generation Plate provides electric energy, and control module inverter is provided between solar panel and auxiliary heater.
Described heating plant is specially multigroup radiator.
Described heat preservation storage water tank is provided with thickened heat insulation layer.
The beneficial effects of the utility model are:The utility model relates to one kind be arranged on vegetables, fruit green house and The solar energy intelligent heating system of heating of house, substitution tradition heat and provided the demand of hot water with fired coal combustion, are green rings Protect product, non-environmental-pollution, no potential safety hazard, with least cost hot-water supply and heating, as long as there is sunlight, you can carry out photo-thermal Conversion.Meanwhile supported the use with other energy, round-the-clock running can be achieved, remarkable in economical benefits, once invest, long term benefit It is the distinguishing feature of solar energy intelligent heating system.
Brief description of the drawings
Fig. 1:For the utility model structure diagram.
Embodiment
Solar energy Intelligent heating system, includes solar energy header tank 3 and heating plant 5, and structure is:Provided with interior cyclic system System and external circulating system, the inside and outside circulatory system is controlled to carry out automatic conversion by control module 10;
Heat preservation storage water tank 1 is sequentially connected solar energy header tank 3, heating plant 5, circulating pump 6 by external circulation line and protected Warm storage tank 1, thus forms external circulating system.
Heat preservation storage water tank 1 is sequentially connected heating plant 5, circulating pump 6 and heat preservation storage water tank 1 by inner loop pipeline, thus Form internal circulation system.
Valve is respectively arranged with external circulation line and inner loop pipeline, passes through the switch shape of the control valve of control module 10 State is so as to carrying out the switching of storing tank.Specifically:Control module 10 passes through control valve I2, valve II7, valve III4 With valve IV8 break-make, so as to carry out the switching of inside and outside circulation, wherein valve I2 is arranged on the insulation water storage of external circulation line Between case 1 and solar energy header tank 3, valve III4 be arranged on the solar energy header tank 3 of external circulation line and heating plant 5 it Between, valve II7 is arranged between the warm storage tank 1 of inner loop pipeline and heating plant 5, and valve IV8 one end is connected to outer circulation Between the valve III4 and heating plant 5 of pipeline, other end connection water source water inlet.
Heat supply is carried out when being provided with auxiliary heater 15 in heat preservation storage water tank 1 and being circulated in system is carried out.Auxiliary heating Device 15 is uniformly controlled by control module 10, and auxiliary heater 15 provides electric energy by civil power or solar panel 13, Control module inverter 14 is provided between solar panel 13 and auxiliary heater 15.It is provided with heat preservation storage water tank 1 The pressure sensor 12 of sensed water level water and the temperature sensor 11 of detection temperature, pressure sensor 12 and temperature sensor 11 Signal output part link control module 10.
Temperature acquisition set mechanism 9 is provided with described solar energy header tank 3, by collection information transfer to control module In 10, and trip temperature is entered by control module 10 and set.
Heating plant 5 is specially multigroup radiator.Described heat preservation storage water tank 1 is provided with thickened heat insulation layer.
When specifically used:
The utility model solar energy intelligent heating system is divided into interior circulating heating system and outer circulation heating system, and intelligence is certainly It is dynamic to convert.The signal that resource of water supply pipe valve IV8 provides according to pressure sensor 12 is overall circulation in real time Moisturizing is carried out, temperature acquisition set mechanism 9 is temperature sensor, for detecting solar energy header tank temperature change, temperature acquisition Set mechanism 9 sets a temperature value, and its temperature value set is less than heat preservation storage water tank 1 and the temperature value of heating plant 5.Example Such as:When heating plant 5 needs 80 DEG C of circulating water temperature, temperature acquisition set mechanism 9 is set as 60 DEG C(This temperature value is as needed Freely set), when now solar pipe heat production temperature is less than 60 DEG C, temperature acquisition set mechanism 9 passes the signal to control mould Switching signal is sent to valve I, valve III by block 10, control module 10, and valve I and valve III are closed, and now solar energy produces Raw hot water can not meet the temperature value of multigroup radiator setting needs, and circulation is transferred to internal circulation system automatically, Auxiliary heater 15 starts to be heated to the recirculated water in heat preservation storage water tank 1, is heated to stop heating during 80 DEG C of temperature, because of water Temperature is heated since 60 DEG C, so power consumption is seldom.Heat preservation storage water tank 1 is provided with thickened heat insulation layer, energy long-time heat preservation, meets Temperature requirement required for heating plant 5.Until when solar energy header tank temperature rises to 60 DEG C, valve I and valve III are simultaneously Open, water system goes to external circulating system, that is, is transferred to the heating of solar energy recirculated water, and now valve II is closed.
Water system is separately controlled without inside and outside in conventional solar energy heating system, and running into cloudy and night solar energy can not produce Heat water, the hot water in indoor thermal insulation box and pipeline can be recycled to solar pipe, and now solar pipe is changed into radiating tube, reduce water Temperature, formed while heating while radiate, waste electric energy.The utility model solves problem above of the prior art, there is provided A kind of simple in construction, easy to use, cost is relatively low and the preferable solar energy Intelligent heating system of using effect.

Claims (7)

1. solar energy Intelligent heating system, include solar energy header tank(3)And heating plant(5), it is characterised in that:Provided with interior The circulatory system and external circulating system, pass through control module(10)The inside and outside circulatory system is controlled to carry out automatic conversion;Heat preservation storage water tank (1)Solar energy header tank is sequentially connected by external circulation line(3), heating plant(5), circulating pump(6)And heat preservation storage water tank (1), thus form external circulating system;Heat preservation storage water tank(1)Heating plant is sequentially connected by inner loop pipeline(5), circulating pump (6)And heat preservation storage water tank(1), thus form internal circulation system;Valve is respectively arranged with external circulation line and inner loop pipeline, Pass through control module(10)The on off state of control valve is so as to carrying out the switching of storing tank;In heat preservation storage water tank(1) On be provided with auxiliary heater(15)Heat supply is carried out when being circulated in system is carried out.
2. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described heat preservation storage water tank(1)In the pressure sensor of sensed water level water is installed(12)And detection The temperature sensor of temperature(11), pressure sensor(12)And temperature sensor(11)Signal output part link control module (10).
3. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described solar energy header tank(3)On be provided with temperature acquisition set mechanism(9), collection information is passed It is defeated to arrive control module(10)In, and pass through control module(10)Enter trip temperature setting.
4. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described control module(10)Pass through control valve I(2), valve II(7), valve III(4)And valve IV(8)Break-make, so as to carry out the switching of inside and outside circulation, wherein valve I (2) is arranged on the heat preservation storage water tank of external circulation line (1)With solar energy header tank(3)Between, valve III(4)It is arranged on the solar energy header tank of external circulation line(3)Filled with heat supply Put(5)Between, valve II(7)It is arranged on the warm storage tank of inner loop pipeline(1)With heating plant(5)Between, valve IV(8)One End is connected to the valve III of external circulation line(4)With heating plant(5)Between, other end connection water source water inlet.
5. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described auxiliary heater(15)By control module(10)It is uniformly controlled, auxiliary heater(15) By civil power or solar panel(13)Electric energy is provided, in solar panel(13)With auxiliary heater(15)Between set There is control module inverter(14).
6. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described heating plant(5)Specially multigroup radiator.
7. solar energy Intelligent heating system according to claim 1, includes solar energy header tank(3)And heating plant (5), it is characterised in that:Described heat preservation storage water tank(1)It is provided with thickened heat insulation layer.
CN201720674927.2U 2017-06-12 2017-06-12 Solar energy Intelligent heating system Active CN207050072U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720674927.2U CN207050072U (en) 2017-06-12 2017-06-12 Solar energy Intelligent heating system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720674927.2U CN207050072U (en) 2017-06-12 2017-06-12 Solar energy Intelligent heating system

Publications (1)

Publication Number Publication Date
CN207050072U true CN207050072U (en) 2018-02-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720674927.2U Active CN207050072U (en) 2017-06-12 2017-06-12 Solar energy Intelligent heating system

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107477644A (en) * 2017-08-25 2017-12-15 清华大学 A kind of solar heating system and its control system of the optimization that dissipated based on reduction

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107477644A (en) * 2017-08-25 2017-12-15 清华大学 A kind of solar heating system and its control system of the optimization that dissipated based on reduction
CN107477644B (en) * 2017-08-25 2020-08-14 清华大学 Solar heating system based on dissipation reduction optimization and control system thereof

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