CN202521729U - Intelligently-controlled solar, geothermal and electric combined heating system - Google Patents
Intelligently-controlled solar, geothermal and electric combined heating system Download PDFInfo
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- 238000010438 heat treatment Methods 0.000 title claims abstract description 135
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 162
- 238000011084 recovery Methods 0.000 claims description 8
- 239000002918 waste heat Substances 0.000 claims description 7
- 230000000712 assembly Effects 0.000 claims description 4
- 238000000429 assembly Methods 0.000 claims description 4
- 238000004140 cleaning Methods 0.000 claims description 4
- 238000000746 purification Methods 0.000 claims description 4
- 230000001012 protector Effects 0.000 claims description 3
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- 239000007789 gas Substances 0.000 description 2
- 239000007788 liquid Substances 0.000 description 2
- 238000003287 bathing Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005485 electric heating Methods 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 239000003673 groundwater Substances 0.000 description 1
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
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Abstract
本实用新型公开了一种智能控制的太阳能、地热、电能组合式供暖供热系统,储热水箱上设有进水总管,储热水箱与太阳能真空板加热总成、地热源热泵总成之间均设有介质管路,储热水箱与电即热式加热总成的进水管路连接,电即热式加热总成的出水管路连接地热系统和供暖系统,其还包括智能控制系统,智能控制系统内的处理器一端连接信号接收器,另一端连接输出端口,输出端口分别与电即热式加热总成中的电子控制器、真空板控制器和地热源热泵总成中的控制器电连接,信号接收器另一端由网络与控制终端连接。采用本实用新型的技术方案,用户平常可以关闭供暖供热系统的电源,在回家之前利用控制终端远程智能开启系统,回家之后即可使用热水。
The utility model discloses an intelligently controlled combined heating and heating system of solar energy, geothermal energy and electric energy. The hot water storage tank is provided with a main water inlet pipe, a heating assembly of the hot water storage tank, a solar vacuum panel, and a geothermal source heat pump assembly. There are medium pipelines between them, the hot water storage tank is connected to the water inlet pipeline of the electric instant heating assembly, and the outlet water pipeline of the electric instant heating assembly is connected to the geothermal system and the heating system, which also includes intelligent control One end of the processor in the intelligent control system is connected to the signal receiver, and the other end is connected to the output port. The controller is electrically connected, and the other end of the signal receiver is connected to the control terminal through the network. By adopting the technical solution of the utility model, the user can usually turn off the power supply of the heating system, and use the control terminal to remotely intelligently turn on the system before returning home, and then can use hot water after returning home.
Description
技术领域 technical field
本实用新型涉及一种循环供暖供热系统,尤其涉及一种智能控制的太阳能、地热、电能组合式供暖供热系统。 The utility model relates to a circulating heating and heating system, in particular to an intelligently controlled solar, geothermal and electric energy combined heating and heating system. the
背景技术 Background technique
目前,人们家中的供暖供热系统在使用过程中,一般都全天打开电源,以便随时可以使用热水,在这过程中,加热装置反复工作浪费很多电能。另外,一些使用者为了节省电能,平常关闭供暖供热系统的电源,使用时再接通电源,但供暖供热系统从接通电源到可以使用还需要半小时左右的时间,所以每次都需要等半小时以后才能使用,当使用者需要马上使用热水或供暖时,给使用者带来极大的不便。 At present, during the use of heating and heating systems in people's homes, the power supply is generally turned on all day long so that hot water can be used at any time. During this process, the heating device repeatedly works to waste a lot of electric energy. In addition, in order to save electricity, some users usually turn off the power supply of the heating system, and then turn on the power supply when in use. However, it takes about half an hour for the heating system to be ready for use after being turned on, so it needs to be turned on every time. Wait half an hour before it can be used, and when the user needs to use hot water or heating immediately, it brings great inconvenience to the user. the
发明内容 Contents of the invention
本实用新型的目的是提供一种智能控制的太阳能、地热、电能组合式供暖供热系统来满足人们需求。 The purpose of the utility model is to provide an intelligently controlled solar energy, geothermal and electric energy combined heating and heating system to meet people's needs. the
为实现上述目的,本实用新型的智能控制的太阳能、地热、电能组合式供暖供热系统,包括储热水箱、电即热式加热总成、太阳能真空板加热总成、地热源热泵总成、地热系统、供暖系统;储热水箱上设有与外部管网连接的进水总管,储热水箱与太阳能真空板加热总成之间设有介质管路,储热水箱与地热源热泵总成之间设有介质管路,导热介质在介质管路中,分别在储热水箱与太阳能真空板加热总成之间,和在储热水箱与地热源热泵总成之间循环;储热水箱由出水管与电即热式加热总成的进水管路连接,电即热式加热总成的出水管路连接地热系统和供暖系统,地热系统和供暖系统通过回水管连接储热水箱,电即热式加热总成上还设有用水出口,所述电即热式加热总成中设有电子控制器,太阳能真空板加热总成中设有真空板控制器,地热源热泵总成设有控制器,其还包括智能控制系统,智能控制系统内设有处理器,处理器一端连接信号接收器,另一端连接输出端口,输出端口分别与电即热式加热总成中的电子控制器、真空板控制器和地热源热泵总成中的控制器电连接,信号接收器另一端由网络与控制终端连接。 In order to achieve the above purpose, the intelligently controlled solar, geothermal, and electric energy combined heating and heating system of the present invention includes a hot water storage tank, an electric instantaneous heating assembly, a solar vacuum panel heating assembly, and a geothermal source heat pump assembly , geothermal system, heating system; the hot water storage tank is equipped with a water inlet main pipe connected to the external pipe network, a medium pipeline is provided between the hot water storage tank and the solar vacuum panel heating assembly, and the hot water storage tank There is a medium pipeline between the heat pump assemblies, and the heat transfer medium circulates in the medium pipeline between the hot water storage tank and the solar vacuum panel heating assembly, and between the hot water storage tank and the geothermal source heat pump assembly. The hot water storage tank is connected with the water inlet pipe of the electric instant heating assembly by the outlet pipe, the outlet pipe of the electric instant heating assembly is connected to the geothermal system and the heating system, and the geothermal system and the heating system are connected to the storage tank through the return pipe. The hot water tank, the electric instant heating assembly is also equipped with a water outlet, the electric instant heating assembly is equipped with an electronic controller, the solar vacuum panel heating assembly is equipped with a vacuum panel controller, and the geothermal source The heat pump assembly is equipped with a controller, which also includes an intelligent control system. The intelligent control system is equipped with a processor. One end of the processor is connected to the signal receiver, and the other end is connected to the output port. The electronic controller, the vacuum panel controller and the controller in the geothermal source heat pump assembly are electrically connected, and the other end of the signal receiver is connected to the control terminal through the network. the
所述信号接收器由无线网络或有线网络与控制终端连接。 The signal receiver is connected with the control terminal through a wireless network or a wired network. the
所述控制终端为手机或电脑。 The control terminal is a mobile phone or a computer. the
所述的电即热式加热总成上还设有自动复位温控器和热断路保护器,进水温感头设置在进水管路上,出水温感头设置在出水管路上。 The electric instantaneous heating type heating assembly is also provided with an automatic reset thermostat and a thermal circuit breaker, the water inlet temperature sensor is arranged on the water inlet pipeline, and the outlet water temperature sensor is arranged on the water outlet pipeline. the
所述的太阳能真空板加热总成包括进水管、出水管、太阳能真空管、导热介质和真空管支架,导热介质置于真空管中,导热介质吸收太阳光的热量,导热介质由出水管进入储热水箱对水加热。 The solar vacuum panel heating assembly includes a water inlet pipe, an outlet pipe, a solar vacuum tube, a heat transfer medium and a vacuum tube support, the heat transfer medium is placed in the vacuum tube, the heat transfer medium absorbs the heat of sunlight, and the heat transfer medium enters the hot water storage tank through the water outlet pipe Heat the water. the
所述的地热源热泵总成还包括压缩机、导热介质、蒸发器、电子膨胀阀、地下水路循环,导热介质流动于蒸发器内,蒸发器与压缩机连接,导热介质通过介质管路循环进入储热水箱,经电子膨胀阀返回蒸发器内。 The geothermal source heat pump assembly also includes a compressor, a heat transfer medium, an evaporator, an electronic expansion valve, and an underground water circuit. The heat transfer medium flows in the evaporator, the evaporator is connected to the compressor, and the heat transfer medium enters through the medium pipeline circulation. The hot water storage tank returns to the evaporator through the electronic expansion valve. the
所述的储热水箱上还设有温度控制开关和泄压阀门。 The hot water storage tank is also provided with a temperature control switch and a pressure relief valve. the
所述的储热水箱上还设有水位开关,储热水箱底部设有清洁阀门。 The hot water storage tank is also provided with a water level switch, and the bottom of the hot water storage tank is provided with a cleaning valve. the
所述储热水箱的热水出水口管路上设有余热回收系统,余热回收系统设有热交换装置。 The hot water outlet pipeline of the hot water storage tank is provided with a waste heat recovery system, and the waste heat recovery system is provided with a heat exchange device. the
所述供暖系统和地热系统的进水管上设有净水系统。 A water purification system is provided on the water inlet pipes of the heating system and the geothermal system. the
本实用新型采用以上的技术方案,利用智能控制系统通过网络实现对太阳能、地热、电能组合式供暖供热系统的远程智能指控,这样用户平常可以关闭供暖供热系统的电源,在回家之前利用控制终端开启供暖供热系统的电源,回家之后可直接使用热水和供暖系统,这样即节约电源又方便用户使用。 The utility model adopts the above technical scheme, and uses the intelligent control system to realize the remote intelligent control of the combined heating and heating system of solar energy, geothermal and electric energy through the network, so that the user can usually turn off the power supply of the heating and heating system and use it before going home. The control terminal turns on the power supply of the heating and heating system, and the hot water and heating system can be used directly after returning home, which saves power and is convenient for users to use. the
附图说明 Description of drawings
下面结合附图和具体实施方式对本实用新型作进一步详细的说明: Below in conjunction with accompanying drawing and specific embodiment, the utility model is described in further detail:
图1为本实用新型的智能控制的太阳能、地热、电能组合式供暖供热系统的结构示意图; Fig. 1 is the structural representation of the solar energy, geothermal, electric energy combined heating heating system of intelligent control of the present utility model;
图2为本实用新型的储热水箱部分的结构示意图; Fig. 2 is the structural representation of the hot water storage tank part of the utility model;
图3为本实用新型的电即热式加热总成部分的结构示意图; Fig. 3 is a structural schematic diagram of the electric instantaneous heating assembly part of the utility model;
图4为本实用新型的地热源热泵总成部分的结构示意图。 Fig. 4 is a schematic structural view of the geothermal source heat pump assembly of the present invention.
具体实施方式 Detailed ways
如图1至4之一所示,本实用新型包括储热水箱1、电即热式加热总成2、太阳能真空板加热总成3、地热源热泵总成4、地热系统5、供暖系统6;储热水箱1上设有与外部管网连接的进水总管11,储热水箱1与太阳能真空板加热总成3之间设有介质管路,储热水箱1与地热源热泵总成4之间设有介质管路,导热介质在介质管路中,分别在储热水箱1与太阳能真空板加热总成3之间,和在储热水箱1与地热源热泵总成4之间循环;储热水箱1由出水管12与电即热式加热总成2的进水管路21连接,电即热式加热总成2的出水管路22连接地热系统5和供暖系统6,地热系统5和供暖系统6通过回水管13连接储热水箱1,电即热式加热总成2上还设有用水出口14,所述电即热式加热总成2中设有电子控制器23,太阳能真空板加热总成3中设有真空板控制器31,地热源热泵总成4设有控制器41,其还包括智能控制系统7,智能控制系统7内设有处理器71,处理器71一端连接信号接收器72,另一端连接输出端口73,输出端口73分别与电即热式加热总成2中的电子控制器23、真空板控制器31和地热源热泵总成4中的控制器41电连接,信号接收器72另一端由网络与控制终端8连接。
As shown in one of Figures 1 to 4, the utility model includes a hot
所述信号接收器72由无线网络或有线网络与控制终端8连接。 The signal receiver 72 is connected with the control terminal 8 via a wireless network or a wired network. the
所述控制终端8为手机或电脑。 The control terminal 8 is a mobile phone or a computer. the
所述的电即热式加热总成2上还设有自动复位温控器24和热断路保护器25,进水温感头26设置在进水管路21上,出水温感头27设置在出水管路22上。电即热式加热总成2上的自动复位温度控制器24、热断路保护器25能够准确控制发热杯的温度、防止干烧。
The electric instant heating
所述的太阳能真空板加热总成3包括进水管、出水管、太阳能真空管32、导热介质和真空管支架,导热介质置于真空管32中,导热介质吸收太阳光的热量,导热介质由出水管进入储热水箱对水加热。
The solar vacuum
所述的地热源热泵总成4还包括:压缩机42、导热介质、蒸发器44、电子膨胀阀45、地下水路循环43,导热介质置于蒸发器44内,地下水路循环43与蒸发器44内的导热介质热传递,蒸发器44与压缩机42连接,导热介质通过介质管路循环进入储热水箱1对水加热,而后经电子膨胀阀45返回蒸发器44内。
The geothermal source heat pump assembly 4 also includes: a
所述储热水箱1的热水出水口管路12上设有余热回收系统19,余热回收系统19设有热交换装置191。
The hot water outlet pipeline 12 of the hot
所述供暖系统5和地热系统6的进水管上设有净水系统9。
A
当用户在异地(如在上班,或是出差),需要对房间进行供暖或是希望回家就有热水使用时,可以用电脑或是手机,通过网络对家里的智能控制的太阳能、地热、电能组合式供暖供热系统进行控制,用户可以设置太阳能、地热、电能组合式供暖供热系统的开机时间,运行时间和供暖温度。当家中的智能控制系统7中的信号接收器72接到用户从控制终端8发出的设置要求时,信号接收器72将接收的信号发送给处理器71,经处理器71处理得到控制信号,控制信号经输出端口73发送给地热源热泵总成4的控制器41、电即热式加热总成2的电子控制器23、太阳能真空板加热总成3中设置的真空板控制器31,这时太阳能真空板加热总成3进水管路上的水泵会接通电源,此时太阳能真空板加热总成3中导热介质(工质)就开始循环起来,太阳能真空板加热总成3在阳光的照耀下,太阳能真空管32吸收太阳光中的热量,并把热量传导到导热介质上,吸收了热量的导热介质,又流到储热水箱1中,对储热水箱1中的冷水进行加热。
When the user is in a different place (such as going to work or on a business trip) and needs to heat the room or wants to have hot water when he returns home, he can use a computer or mobile phone to control the intelligently controlled solar energy, geothermal, The electric energy combined heating and heating system is controlled, and the user can set the start-up time, running time and heating temperature of the solar energy, geothermal, and electric energy combined heating and heating systems. When the signal receiver 72 in the intelligent control system 7 at home receives the setting request sent by the user from the control terminal 8, the signal receiver 72 sends the received signal to the processor 71, and the processor 71 processes the control signal to control The signal is sent to the
同时,地热源热泵总成4的控制器41控制接通地热源热泵总成4的电源,地下水路循环43开始运转,水路中的水就将地下水或是土壤中的热量带上来,并流经蒸发器44。这时,蒸发器44内部的导热介质吸热汽化被吸入压缩机42,压缩机42将这种低压导热介质气体压缩成高温、高压气体经过介质盘管进入储热水箱1中,这时储热水箱1中的水就会被导热介质加热,而导热介质被冷却成液体,该液体经膨胀阀45节流降温后再次流入蒸发器44,再进行上叙循环而不断对冷水时行加热。
Simultaneously, the
当然为了更快的,更多的获得热水,以上两个进程是并联的,可以同时进行。 Of course, in order to obtain hot water faster and more, the above two processes are connected in parallel and can be carried out at the same time. the
设在储热水箱出水管12上的水泵也开始工作,经地热源热泵总成4和太阳能真空板加热总成3预热过的水就进入电即热式加热总成2,设在电即热式加热总成进水管路21上的进水温感头26,和设在电即热式加热总成出水管路22上的出水温感头27就会分别采集温度,并把所采集到的温度一同反馈给电即热式加热总成2的电子控制板23,通过电子控制板23的计算,从而以最低的功率输出达到最好的出水效果,做到出水温度与设定温度相符。经过电即热式加热总成2加热后的热水可以流经净水系统9后再进入地热系统5和供暖系统6进行对房间(如:卧室、客厅、厨房、卫生间等)供暖,流经地热系统5和供暖系统6的热水通过回水管路13回到储热水箱1中,如此循环进行供暖,还可能通过调节地热系统5和供暖系统6上开关,来调节供暖的速度。
The water pump that is located on the water outlet pipe 12 of the hot water storage tank also starts to work, and the water that has been preheated through the geothermal source heat pump assembly 4 and the solar vacuum
所述的储热水箱1上还设有温度控制开关15和泄压阀门16,当储热水箱1中的水预热到第一设定温度时,储热水箱1上的温度控制开关15切断地热源热泵总成4的电源,地热源热泵总成4停止对储热水箱1中的水加热;当储热水箱1中的水降低到第一设定温度时,储热水箱1上的温度控制开关15接通地热源热泵总成4的电源,地热源热泵总成4对储热水箱1中的水加热;储热水箱1中的水高于第二设定温度时,温度控制开关15控制储热水箱1上的泄压阀门16开启泄压,同时切断太阳能真空板加热总成3的电源,太阳能真空板加热总成3停止对储热水箱1中的水加热,防止储热水箱1中压力过高。
The hot
所述电即热式加热总成2的用水出口14上接有若干个出水终端(如:淋浴房、浴缸、洗脸盆等)。使用热水时,人们平常洗澡用的热水一般在40摄氏度左右,热水冲刷流过身体后流入下水道时,水温仍保持在35摄氏度左右,很多热量都排到下水道里去了,从而白白浪费了大部分能量。余热回收系统19就是利用这部分热量,通过热交换的方式将这部分热量回收对从回收管路中的水进行再加热。
The
本实用新型的储热水箱1上设有水位开关17,当储热水箱1中水位低于设定位置时,水位开关17就会自动接通电磁阀电源,让水通过进水总管11进入储热水箱1,水位自动补充到设定位置。
The hot
本实用新型的储热水箱1上设有清洁阀门18,用了一段时间后可以打开设在储热水箱1底部的清洁阀门18进行储热水箱的清洗。
The hot
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| CN109073241A (en) * | 2015-11-20 | 2018-12-21 | Sens地质能源储存公司 | Heat pump system and method for controlling heat pump system |
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