CN211424520U - Solar energy composite heating system - Google Patents

Solar energy composite heating system Download PDF

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CN211424520U
CN211424520U CN201921091838.0U CN201921091838U CN211424520U CN 211424520 U CN211424520 U CN 211424520U CN 201921091838 U CN201921091838 U CN 201921091838U CN 211424520 U CN211424520 U CN 211424520U
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heating
solar
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hot water
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王一舟
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Lulong Xinmei New Fuel 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers

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Abstract

本实用新型涉及一种太阳能复合加热采暖系统,包括太阳能集热板、储热水箱和散热器,所述太阳能储热板与所述储热水箱连接,所述散热器与所述储热水箱连接,所述储热水箱内设置换热盘管水箱,所述太阳能集热板通过太阳能集热板循环水管与所述换热盘管水箱连接,所述太阳能集热板循环水管缠绕在所述换热盘管水箱的外周,所述换热盘管水箱外壁与所述太阳能集热板循环水管之间设置加热器。本实用新型采用太阳能集热和石墨烯加热体复合加热技术,一方面太阳能集热板可以充分利用太阳热能将超导液或防冻液加热以实现散热器以及储热水箱的升温,同时利用石墨烯纳米晶格发热体对换热水箱内的水进行电辅助加热,实现复合加热采暖,提高了采暖系统的效率。

Figure 201921091838

The utility model relates to a solar energy composite heating and heating system, comprising a solar heat collecting panel, a hot water storage tank and a radiator, the solar heat storage panel is connected with the hot water storage tank, and the radiator is connected with the heat storage tank The water tank is connected, a heat exchange coil water tank is arranged in the hot water storage tank, and the solar heat collector panel is connected to the heat exchange coil water tank through a solar heat collector plate circulating water pipe, and the solar heat collector plate circulating water pipe is wound. On the outer periphery of the heat exchange coil water tank, a heater is arranged between the outer wall of the heat exchange coil water tank and the circulating water pipe of the solar heat collector plate. The utility model adopts the composite heating technology of solar heat collection and graphene heating body. On the one hand, the solar heat collection plate can make full use of the solar heat to heat the superconducting liquid or the antifreeze liquid to realize the heating of the radiator and the hot water storage tank, and at the same time, the use of graphite The ene nano-lattice heating element conducts electric auxiliary heating to the water in the hot water exchange tank, realizes composite heating and heating, and improves the efficiency of the heating system.

Figure 201921091838

Description

太阳能复合加热采暖系统Solar Composite Heating Heating System

技术领域technical field

本实用新型属于太阳能采暖技术领域,具体涉及一种太阳能复合加热采暖系统。The utility model belongs to the technical field of solar energy heating, in particular to a solar energy composite heating and heating system.

背景技术Background technique

国内农村冬季采暖通常采用燃煤锅炉或燃煤采暖,既不卫生,又容易引起雾霾及大气污染,随着国家对煤改气采暖的推进,部分地区开始实施天然气采暖,但由于天然气采暖成本高,施工难度大,造成煤改燃采暖进展缓慢;现有的电磁采暖炉由于长时间使用容易形成水垢影响发热,降低使用效果,同时电磁加热用电负荷大,效率较低。为解决现有技术的不足,本发明的目的在于提供一种利用太阳热能和电加热复合供能的一种太阳能复合采暖系统以于解决现有的问题。Domestic rural heating in winter usually uses coal-fired boilers or coal-fired heating, which is unsanitary and easy to cause smog and air pollution. Due to the long-term use of the existing electromagnetic heating furnace, it is easy to form scale, which affects the heat generation and reduces the use effect. At the same time, the electromagnetic heating electricity load is large and the efficiency is low. In order to solve the deficiencies of the prior art, the purpose of the present invention is to provide a solar energy composite heating system utilizing solar thermal energy and electric heating composite energy supply to solve the existing problems.

刘艳萍专利公开了一种太阳能采暖系统(CN200720174823.1),该采暖系统由壁挂式太阳能采暖器、遮阳罩、燃气暖炉、暖片及管道构成;壁挂式太阳能采暖器通过管道与暖气片相联;遮阳罩为一矩形罩,内装有电灯,扣在壁挂式太阳能采暖器上,并可打开;燃气采暖炉由燃气灶头和夹层炉壁构成,夹层炉壁内加水,并通过管道与暖气片相联。使用时,壁挂式太阳能采暖器挂在窗外。在白天有太阳时,使用太阳能供暖。在夜间或其它没有太阳时,使用燃气暖炉或遮阳罩内的电灯供暖。这样即可有效的利用太阳能这一清洁能源供暖,又可保证在没有太阳时,给室内供暖。张学凤、李仁智公开了一种实用新型专利“太阳能采暖与生物质智能采暖炉交替互补供热系统”(CN201610577454.4),该供热系统由太阳能采暖设备和生物质燃炉构成,能实现自动运行,自由转换,自行设定、充分利用太阳能量。Liu Yanping patent discloses a solar heating system (CN200720174823.1), the heating system is composed of a wall-mounted solar heater, a sunshade, a gas heater, a radiator and a pipe; the wall-mounted solar heater is connected with the radiator through a pipe; The sunshade is a rectangular cover with electric lights inside, which is buckled on the wall-mounted solar heater and can be opened; the gas heating stove is composed of a gas stove and an interlayer furnace wall. . When in use, the wall-mounted solar heater is hung outside the window. Use solar heating during the day when the sun is shining. Use gas heaters or electric lights in sunshades for heating at night or other times when the sun is not shining. In this way, solar energy, a clean energy source, can be effectively used for heating, and the indoor heating can be ensured when there is no sun. Zhang Xuefeng and Li Renzhi disclosed a utility model patent "Solar Heating and Biomass Intelligent Heating Furnace Alternate Complementary Heating System" (CN201610577454.4), the heating system is composed of solar heating equipment and biomass burning furnace, which can realize automatic operation , free conversion, self-set, make full use of solar energy.

此外,现有的此类太阳能采暖系统虽结构简单,但受天气影响较大,当在阴天或太阳光不充足时产热量会不足,影响采暖效果。同时对对建筑物要求高,最好能超南,建筑物表面或旁边有足够大的面积摆放集热器。此外,对太阳能供暖系统的材质要求高,管材、管件等材质的耐高温、保温、防腐、耐燃性能要高。In addition, although the existing solar heating system has a simple structure, it is greatly affected by the weather. When it is cloudy or the sunlight is insufficient, the heat generation will be insufficient, which will affect the heating effect. At the same time, the requirements for the building are high, it is better to be able to exceed the south, and there is a large enough area on the surface or next to the building to place the collector. In addition, the material requirements of the solar heating system are high, and the high temperature resistance, heat preservation, anticorrosion and flame resistance of pipes and fittings are required.

实用新型内容Utility model content

为解决上述问题,本实用新型提供了一种太阳能复合加热采暖系统,包括太阳能集热板、储热水箱和散热器,所述太阳能储热板与所述储热水箱连接,所述散热器与所述储热水箱连接,所述储热水箱用于盛放饮用水,其中,所述储热水箱内设置换热管盘水箱,所述太阳能集热板通过太阳能集热板循环水管与所述换热管盘水箱连接,具体的,所述太阳能集热板循环水管缠绕在所述换热管盘水箱的外周,所述换热管盘水箱外壁与所述太阳能集热板循环水管之间设置加热器。In order to solve the above problems, the present utility model provides a solar energy composite heating and heating system, which includes a solar heat collection panel, a hot water storage tank and a radiator, wherein the solar heat storage panel is connected to the hot water storage tank, and the heat dissipation The hot water storage tank is connected to the hot water storage tank, and the hot water storage tank is used to hold drinking water, wherein a heat exchange tube coil water tank is arranged in the hot water storage tank, and the solar heat collection panel passes through the solar heat collection panel. The circulating water pipe is connected to the heat exchange tube coil water tank. Specifically, the solar heat collector plate circulating water pipe is wound around the outer circumference of the heat exchange tube coil water tank, and the outer wall of the heat exchange tube coil water tank is connected to the solar heat collector plate. A heater is installed between the circulating water pipes.

优选的是,所述换热管盘水箱内部通过散热器循环水管与所述散热器连接。Preferably, the inside of the heat exchange tube coil water tank is connected to the radiator through a radiator circulating water pipe.

在上述任一方案中优选的是,所述散热器循环水管上设置第一循环泵。Preferably in any of the above solutions, a first circulating pump is provided on the circulating water pipe of the radiator.

在上述任一方案中优选的是,所述太阳能集热板循环水管上设置第二循环泵。In any of the above solutions, it is preferable that a second circulating pump is arranged on the circulating water pipe of the solar collector plate.

在上述任一方案中优选的是,所述加热器为石墨烯纳米晶格发热体,所述石墨烯纳米晶格发热体优选采用深圳安能热电器科技有限公司生产的型号为 AYBO303-xWxV、AYBO402-xWxV或AYBO403-xWxV中的一种。Preferably in any of the above-mentioned schemes, the heater is a graphene nano-lattice heater, and the graphene nano-lattice heater is preferably AYBO303-xWxV, a model produced by Shenzhen Anneng Thermal Electric Technology Co., Ltd., One of AYBO402-xWxV or AYBO403-xWxV.

在上述任一方案中优选的是,所述储热水箱上端设置控制器,所述控制器与所述石墨烯纳米晶格发热体连接。In any of the above solutions, preferably, a controller is provided on the upper end of the hot water storage tank, and the controller is connected to the graphene nanolattice heating element.

本实用新型采用太阳能集热和石墨烯加热体复合加热技术,通过对不同加热媒介的加热实现采暖及饮水加热,一方面太阳能集热板可以充分利用太阳热能将超导液或防冻液加热以实现散热器以及储热水箱的升温,从而高效利用太阳热能实现采暖系统的加热,同时利用石墨烯纳米晶格发热体对换热水箱内的水进行电辅助加热,从而实现复合加热采暖,提高了采暖系统的效率。The utility model adopts the composite heating technology of solar heat collection and graphene heating body, and realizes heating and drinking water heating by heating different heating media. The heating of the radiator and the hot water storage tank can efficiently use the solar thermal energy to achieve the heating of the heating system. At the same time, the graphene nano-lattice heating element is used to electrically assist the heating of the water in the hot water exchange tank, so as to realize the composite heating and heating, and improve the performance of the heating system. Efficiency of the heating system.

附图说明Description of drawings

图1为按照本实用新型的阳能复合加热采暖系统的一优选实施例示意图;1 is a schematic diagram of a preferred embodiment of a solar energy composite heating and heating system according to the present invention;

图2为按照本实用新型的阳能复合加热采暖系统的图1实施例的部分结构示意图。FIG. 2 is a partial structural schematic diagram of the embodiment of FIG. 1 of the solar energy composite heating and heating system according to the present invention.

图中标注说明:1-太阳能集热板;2-控制器;3-储热水箱;4-散热器;5-第一循环泵;6-石墨烯纳米晶格发热体;7-换热管盘水箱;8-第二循环泵;9-太阳能集热板循环水管;10-散热器循环水管。Note in the figure: 1-solar collector plate; 2-controller; 3-hot water storage tank; 4-radiator; 5-first circulation pump; 6-graphene nanolattice heating element; 7-heat exchange Tube coil water tank; 8-Second circulating pump; 9-Solar heat collector plate circulating water pipe; 10-Radiator circulating water pipe.

具体实施方式Detailed ways

为了更进一步了解本实用新型的实用新型内容,下面将结合具体实施例详细阐述本实用新型。In order to further understand the content of the utility model of the present utility model, the present utility model will be described in detail below with reference to specific embodiments.

如图1和图2所示,本实用新型提供了一种太阳能复合加热采暖系统,包括太阳能集热板1、储热水箱3和散热器4,所述太阳能储热板1与所述储热水箱3连接,所述散热器4与所述储热水箱3连接,所述太阳能集热板1用于对太阳的热能进行集热,可以由一组或多组集热管组成,所述散热器4用于对外界进行换热,其中,所述储热水箱3内设置换热管盘水箱7,所述换热管盘水箱 7内装有水,所述换热管盘水箱7内的水与所述储热水箱3内的水相互独立,所述储热水箱3内可以盛放饮用水,所述太阳能集热板1通过太阳能集热板循环水管9与所述换热管盘水箱7连接,具体的,所述太阳能集热板循环水管9缠绕在所述换热管盘水箱7的外周,所述太阳能集热板循环水管9上设置第二循环泵8,所述太阳能集热板1通过所述太阳能集热板循环水管9可以在对所述储热水箱3内的饮用水加热的同时,对缠绕在所述太阳能集热板循环水管9内的换热管盘水箱7进行加热,所述换热管盘水箱7外壁与所述太阳能集热板循环水管9之间设置加热器,所述加热器为石墨烯纳米晶格发热体6,所述石墨烯纳米晶格发热体6通过导线与电源及控制器2连接,可实现电辅助加热,所述石墨烯纳米晶格发热体6采用石墨烯纳米内镀膜石英管发热体加热,所述石墨烯纳米石英管发热体具有石墨烯涡流回收热系统,电热转换效率接近100%,所述换热管盘水箱7内部通过散热器循环水管10与所述散热器4连接,所述散热器循环水管10上设置第一循环泵5,本实用新型采用太阳能和石墨烯纳米晶格发热管辅助电加热可以有效提高采暖系统的效率,同时可实现绿色采暖。As shown in FIG. 1 and FIG. 2 , the present invention provides a solar energy composite heating and heating system, including a solar collector panel 1 , a hot water storage tank 3 and a radiator 4 . The hot water tank 3 is connected, the radiator 4 is connected with the hot water storage tank 3, and the solar collector plate 1 is used to collect heat from the heat energy of the sun, and can be composed of one or more sets of heat collecting tubes. The radiator 4 is used for exchanging heat to the outside world, wherein, a heat exchange tube coil water tank 7 is arranged in the hot water storage tank 3, and the heat exchange tube coil water tank 7 is filled with water, and the heat exchange tube coil water tank 7 The water inside and the water in the hot water storage tank 3 are independent of each other. The hot water storage tank 3 can hold drinking water. The heat pipe coil water tank 7 is connected. Specifically, the solar collector plate circulating water pipe 9 is wound around the outer circumference of the heat exchange pipe coil water tank 7, and the solar collector plate circulating water pipe 9 is provided with a second circulating pump 8, so The solar collector plate 1 can heat the drinking water in the hot water storage tank 3 through the solar collector plate circulating water pipe 9, and at the same time, it can heat the heat exchange wrapped in the solar collector plate circulating water pipe 9 at the same time. The tube coil water tank 7 is heated, and a heater is arranged between the outer wall of the heat exchange tube coil water tank 7 and the circulating water pipe 9 of the solar collector plate, and the heater is a graphene nanolattice heating body 6, and the graphene The nano-lattice heating element 6 is connected to the power supply and the controller 2 through wires, so that electric auxiliary heating can be realized. The graphene nano-lattice heating element 6 is heated by a graphene nano-coated quartz tube heating element. The tube heating body has a graphene eddy current recovery heat system, and the electrothermal conversion efficiency is close to 100%. The first circulating pump 5, the utility model adopts solar energy and graphene nano-lattice heating tube to assist electric heating, which can effectively improve the efficiency of the heating system, and can realize green heating at the same time.

本领域技术人员不难理解,本实用新型的阳能复合加热采暖系统包括上述本实用新型说明书的实用新型内容和具体实施方式部分以及附图所示出的各部分的任意组合,限于篇幅并为使说明书简明而没有将这些组合构成的各方案一一描述。凡在本实用新型的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。It is not difficult for those skilled in the art to understand that the solar energy composite heating and heating system of the present invention includes any combination of the contents of the utility model and the specific embodiments of the above-mentioned description of the present invention and the parts shown in the accompanying drawings. The description is kept concise without describing each of the solutions that these combinations constitute. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims (6)

1.一种太阳能复合加热采暖系统,包括太阳能集热板、储热水箱和散热器,所述太阳能储热板与所述储热水箱连接,所述散热器与所述储热水箱连接,其特征在于,所述储热水箱内设置换热盘管水箱,所述太阳能集热板通过太阳能集热板循环水管与所述换热盘管水箱连接,具体的,所述太阳能集热板循环水管缠绕在所述换热盘管水箱的外周,所述换热盘管水箱外壁与所述太阳能集热板循环水管之间设置加热器。1. A solar energy composite heating and heating system, comprising a solar collector panel, a hot water storage tank and a radiator, the solar thermal storage panel is connected to the hot water storage tank, and the radiator is connected to the hot water storage tank It is characterized in that a heat exchange coil water tank is arranged in the hot water storage tank, and the solar collector is connected to the heat exchange coil tank through a circulating water pipe of the solar collector plate. Specifically, the solar collector The hot plate circulating water pipe is wound around the outer periphery of the heat exchange coil water tank, and a heater is arranged between the outer wall of the heat exchange coil water tank and the solar heat collecting plate circulating water pipe. 2.根据权利要求1所述的太阳能复合加热采暖系统,其特征在于,所述换热盘管水箱内部通过散热器循环水管与所述散热器连接。2 . The solar compound heating and heating system according to claim 1 , wherein the inside of the heat exchange coil water tank is connected to the radiator through a radiator circulating water pipe. 3 . 3.根据权利要求2所述的太阳能复合加热采暖系统,其特征在于,所述散热器循环水管上设置第一循环泵。3 . The solar energy composite heating and heating system according to claim 2 , wherein a first circulating pump is arranged on the circulating water pipe of the radiator. 4 . 4.根据权利要求1所述的太阳能复合加热采暖系统,其特征在于,所述太阳能集热板循环水管上设置第二循环泵。4 . The solar energy composite heating and heating system according to claim 1 , wherein a second circulating pump is arranged on the circulating water pipe of the solar collector plate. 5 . 5.根据权利要求1所述的太阳能复合加热采暖系统,其特征在于,所述加热器为石墨烯纳米晶格发热体。5 . The solar energy composite heating and heating system according to claim 1 , wherein the heater is a graphene nano-lattice heating element. 6 . 6.根据权利要求5所述的太阳能复合加热采暖系统,其特征在于,所述储热水箱上端设置控制器,所述控制器与所述石墨烯纳米晶格发热体连接。6 . The solar energy composite heating and heating system according to claim 5 , wherein a controller is provided on the upper end of the hot water storage tank, and the controller is connected to the graphene nanolattice heating element. 7 .
CN201921091838.0U 2019-07-12 2019-07-12 Solar energy composite heating system Expired - Fee Related CN211424520U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112432399A (en) * 2020-12-08 2021-03-02 合肥美的暖通设备有限公司 Heat exchange device and air conditioning system
CN112611040A (en) * 2020-12-17 2021-04-06 常州大学 Graphene battery air conditioner heating and ventilation equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112432399A (en) * 2020-12-08 2021-03-02 合肥美的暖通设备有限公司 Heat exchange device and air conditioning system
CN112611040A (en) * 2020-12-17 2021-04-06 常州大学 Graphene battery air conditioner heating and ventilation equipment
CN112611040B (en) * 2020-12-17 2022-03-25 常州大学 Graphene battery air conditioner heating and ventilation equipment

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