CN202204175U - A dual energy switching intelligent component - Google Patents

A dual energy switching intelligent component Download PDF

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Publication number
CN202204175U
CN202204175U CN2011202836931U CN201120283693U CN202204175U CN 202204175 U CN202204175 U CN 202204175U CN 2011202836931 U CN2011202836931 U CN 2011202836931U CN 201120283693 U CN201120283693 U CN 201120283693U CN 202204175 U CN202204175 U CN 202204175U
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heat
pipe
energy
outlet pipe
inlet pipe
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Expired - Fee Related
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CN2011202836931U
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Chinese (zh)
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吴晓东
王海涛
邹庆甲
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Midea Group Co Ltd
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Midea Group
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Abstract

本实用新型涉及一种双能源切换智能组件,包括进热管和出热管,其特征在于在所述进热管上设有侧出热管,在所述出热管上设有侧进热管,在进热管与出热管之间设有主电磁阀,在侧出热管上设有次电磁阀,主、次电磁阀分别电连接于控制器上。其解决了单一能源热水供应的不足,通过集成控制自动判断和智能切换,尤其适合可再生能源与其他常规能源的结合,可以实现热水利用中,能源的优化配置。

The utility model relates to a dual energy switching intelligent component, including a heat inlet pipe and a heat outlet pipe, characterized in that a side heat outlet pipe is provided on the heat inlet pipe, a side heat inlet pipe is provided on the heat outlet pipe, a main solenoid valve is provided between the heat inlet pipe and the heat outlet pipe, a secondary solenoid valve is provided on the side heat outlet pipe, and the main and secondary solenoid valves are electrically connected to a controller respectively. It solves the insufficiency of single energy hot water supply, and through integrated control automatic judgment and intelligent switching, it is particularly suitable for the combination of renewable energy and other conventional energy sources, and can achieve the optimal configuration of energy in hot water utilization.

Description

一种双能源切换智能组件A dual energy switching intelligent component

技术领域 technical field

本实用新型涉及一种双能源利用技术,特别是两种能源复合使用的一种双能源切换智能组件。 The utility model relates to a dual-energy utilization technology, in particular to a dual-energy switching intelligent component for combined use of two energy sources.

背景技术 Background technique

单一能源的热水应用往往会因产品的限制,需要其他能源进行补充。目前的技术条件,一般是通过现场施工设置旁通管路,而实际施工中存在种种不确定因素,往往影响到使用效果。而且,目前在用复合能源系统,大多是通过人工手动切换,不能合理有效利用能源,尤其是无法最大化利用可再生能源,如太阳能,造成了一定程度浪费。 The hot water application of a single energy source often requires other energy sources to supplement due to product limitations. In the current technical conditions, bypass pipelines are generally set up through on-site construction, but there are various uncertain factors in actual construction, which often affect the use effect. Moreover, most of the hybrid energy systems currently in use are manually switched, which cannot make rational and effective use of energy, especially the inability to maximize the use of renewable energy, such as solar energy, resulting in a certain degree of waste.

发明内容 Contents of the invention

为解决上述的问题,而本实用新型提供一种针对两种能源的复合使用、安装简洁、使用方便和节能安全的双能源切换智能组件。 In order to solve the above problems, the utility model provides a dual-energy switching intelligent component aimed at the combined use of two energy sources, simple installation, convenient use, energy saving and safety.

本实用新型所要解决的技术问题是通过以下的技术方案来实现的:一种双能源切换智能组件,包括进热管和出热管,其特征在于在所述进热管上设有侧出热管,在所述出热管上设有侧进热管,在进热管与出热管之间设有主电磁阀,在侧出热管上设有次电磁阀,主、次电磁阀分别电连接于控制器上。 The technical problem to be solved by the utility model is achieved through the following technical solutions: a dual-energy switching intelligent component, including a heat inlet pipe and a heat outlet pipe, is characterized in that a side outlet heat pipe is arranged on the heat inlet pipe, and A side inlet heat pipe is arranged on the outlet heat pipe, a main solenoid valve is arranged between the heat inlet pipe and the heat outlet pipe, and a secondary solenoid valve is arranged on the side outlet heat pipe, and the main and secondary solenoid valves are respectively electrically connected to the controller.

所述进热管上设有温度探头,所述温度探头电连接于控制器上。 A temperature probe is provided on the heat inlet pipe, and the temperature probe is electrically connected to the controller.

所述出热管上还设有恒温阀,所述恒温阀一侧连接有冷水管。 The heat outlet pipe is also provided with a thermostatic valve, and one side of the thermostatic valve is connected with a cold water pipe.

所述冷水管上设有单向阀。 The cold water pipe is provided with a one-way valve.

本实用新型与现有技术相比的有益效果是:解决了单一能源热水供应的不足,通过集成控制自动判断和智能切换,尤其适合可再生能源与其他常规能源的结合,可以实现热水利用中,能源的优化配置。 Compared with the prior art, the utility model has the beneficial effects that: it solves the shortage of single energy hot water supply, through the integrated control automatic judgment and intelligent switching, it is especially suitable for the combination of renewable energy and other conventional energy, and can realize the utilization of hot water , the optimal allocation of energy.

附图说明 Description of drawings

图1是实用新型的结构示意图; Fig. 1 is the structural representation of utility model;

图2是图1的另一结构示意图。 FIG. 2 is another structural schematic diagram of FIG. 1 .

具体实施方式 Detailed ways

下面将结合附图和实施例对本实用新型做进一步的详述。 The utility model will be further described in detail below in conjunction with the accompanying drawings and embodiments.

实施例一 Embodiment one

如图1所示,一种双能源切换智能组件,包括进热管1和出热管6,本实用新型特点是在所述进热管1上设有侧出热管9,在所述出热管6上设有侧进热管7,在进热管1与出热管之间设有主电磁阀3,在侧出热管9上设有次电磁阀10,主、次电磁阀3、10分别电连接于控制器8上。 As shown in Figure 1, a dual-energy switching intelligent component includes a heat inlet pipe 1 and a heat outlet pipe 6. The utility model is characterized in that a side outlet heat pipe 9 is provided on the heat inlet pipe 1, and a side outlet heat pipe 9 is provided on the heat outlet pipe 6. There is a side inlet heat pipe 7, a main solenoid valve 3 is provided between the heat inlet pipe 1 and the heat outlet pipe, and a secondary solenoid valve 10 is provided on the side outlet heat pipe 9, and the main and secondary solenoid valves 3, 10 are respectively electrically connected to the controller 8 superior.

所述进热管1上设有温度探头11,所述温度探头11电连接于控制器8上。 The heat inlet pipe 1 is provided with a temperature probe 11 , and the temperature probe 11 is electrically connected to the controller 8 .

用水时,当温度探头11检测到水温达到或超过控制器8的设定温度,控制器8即发出指令打开主电磁阀3,出热管6直接出水使用;当温度探头11检测到水温低于控制器8的设定温度时,控制器8即发出指令将主电磁阀3关闭,次电磁阀10打开,此时水经次电磁阀10流入侧出热管9进行二次能源加热,经过二次补充加热后,由侧进热管7流回,从出热管6出热水。 When using water, when the temperature probe 11 detects that the water temperature reaches or exceeds the set temperature of the controller 8, the controller 8 issues an instruction to open the main solenoid valve 3, and the heat outlet pipe 6 directly discharges water for use; when the temperature probe 11 detects that the water temperature is lower than the control temperature When the set temperature of the device 8 is reached, the controller 8 issues an instruction to close the main solenoid valve 3 and open the secondary solenoid valve 10. At this time, water flows into the side outlet heat pipe 9 through the secondary solenoid valve 10 for secondary energy heating. After heating, it flows back through the side inlet heat pipe 7, and hot water is discharged from the heat outlet pipe 6.

实施例二 Embodiment two

如图2所示,其它的与实施例一一样,所不同的是在所述出热管6上还设有恒温阀5,所述恒温阀5一侧连接有冷水管2,自来水管道连接冷水管2。在所述冷水管2上设有单向阀4。 As shown in Figure 2, the others are the same as the first embodiment, the difference is that a thermostatic valve 5 is also provided on the heat outlet pipe 6, and a cold water pipe 2 is connected to one side of the thermostatic valve 5, and the tap water pipe is connected to the cold water pipe. Tube 2. A one-way valve 4 is arranged on the cold water pipe 2 .

用水时,当管道温度探头11检测到水温达到或超过控制器8的设定温度,一次能源加热的热水经主电磁阀3流出后,通过恒温阀5与冷水混合,最终从出热管6出水使用。当温度探头11检测到水温低于控制器8的设定温度,控制器8即发出指令将主电磁阀3关闭,次电磁阀10打开,此时经一次能源加热的热水经次电磁阀10流出,经二次能源加热的热水从侧出热管9流回,到达恒温阀5后与冷水混合恒温,最终出水。 When using water, when the pipeline temperature probe 11 detects that the water temperature reaches or exceeds the set temperature of the controller 8, the hot water heated by the primary energy flows out through the main solenoid valve 3, and then mixes with cold water through the thermostatic valve 5, and finally the water is discharged from the heat outlet pipe 6 use. When the temperature probe 11 detects that the water temperature is lower than the set temperature of the controller 8, the controller 8 issues an instruction to close the main solenoid valve 3 and open the secondary solenoid valve 10. At this time, the hot water heated by the primary energy passes through the secondary solenoid valve 10. Outflow, the hot water heated by the secondary energy flows back from the side outlet heat pipe 9, and after reaching the thermostatic valve 5, it is mixed with cold water to maintain a constant temperature, and finally the water is discharged.

本结构可普遍适用于各种太阳能热水器、电热水器、燃气热水器、燃气壁挂炉、热泵以及锅炉等各种热水系统。 The structure can be generally applied to various hot water systems such as various solar water heaters, electric water heaters, gas water heaters, gas wall-hung boilers, heat pumps and boilers.

Claims (4)

1.一种双能源切换智能组件,包括进热管(1)和出热管(6),其特征在于在所述进热管(1)上设有侧出热管(9),在所述出热管(6)上设有侧进热管(7),在进热管(1)与出热管(6)之间设有主电磁阀(3),在侧出热管(9)上设有次电磁阀(10),主、次电磁阀(3)、(10)分别电连接于控制器(8)上。 1. A dual energy switching intelligent component, including a heat inlet pipe (1) and a heat outlet pipe (6), characterized in that a side outlet heat pipe (9) is provided on the heat inlet pipe (1), and a side outlet heat pipe (9) is provided on the heat outlet pipe ( 6) is provided with a side inlet heat pipe (7), a main solenoid valve (3) is provided between the heat inlet pipe (1) and the heat outlet pipe (6), and a secondary solenoid valve (10) is provided on the side outlet heat pipe (9). ), the primary and secondary solenoid valves (3), (10) are electrically connected to the controller (8) respectively. 2.根据权利要求1所述的一种双能源切换智能组件,其特征在于所述进热管(1)上设有温度探头(11),所述温度探头(11)电连接于控制器(8)上。 2. A dual energy switching intelligent component according to claim 1, characterized in that a temperature probe (11) is provided on the heat inlet pipe (1), and the temperature probe (11) is electrically connected to the controller (8 )superior. 3.根据权利要求1所述的一种双能源切换智能组件,其特征在于在所述出热管(6)上还设有恒温阀(5),所述恒温阀(5)一侧连接有冷水管(2)。 3. A dual-energy switching intelligent component according to claim 1, characterized in that a thermostatic valve (5) is provided on the heat outlet pipe (6), and cold water is connected to one side of the thermostatic valve (5) tube (2). 4.根据权利要求3所述的一种双能源切换智能组件,其特征在于在所述冷水管(2)上设有单向阀(4)。 4. A dual-energy switching intelligent component according to claim 3, characterized in that a one-way valve (4) is provided on the cold water pipe (2).
CN2011202836931U 2011-08-05 2011-08-05 A dual energy switching intelligent component Expired - Fee Related CN202204175U (en)

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CN2011202836931U CN202204175U (en) 2011-08-05 2011-08-05 A dual energy switching intelligent component

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CN2011202836931U CN202204175U (en) 2011-08-05 2011-08-05 A dual energy switching intelligent component

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110006184A (en) * 2019-01-24 2019-07-12 东南大学 A kind of integrated system of solar water heater and Teat pump boiler

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110006184A (en) * 2019-01-24 2019-07-12 东南大学 A kind of integrated system of solar water heater and Teat pump boiler

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GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: MIDEA GROUP CO., LTD.

Free format text: FORMER NAME: MEIDI GROUP CO. LTD.

CP03 Change of name, title or address

Address after: 528311 Guangdong, Foshan, Beijiao, the United States, the United States and the United States on the avenue of the United States, the headquarters of the United States building B floor, District, 26-28

Patentee after: MIDEA GROUP Co.,Ltd.

Address before: 528311 Beijiao, Foshan, Shunde District, the town of Guangdong, the United States Avenue, No. 6

Patentee before: Midea Group

CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120425

Termination date: 20190805

CF01 Termination of patent right due to non-payment of annual fee