WO2014206255A1 - 一种单向封闭管路内循环装置 - Google Patents

一种单向封闭管路内循环装置 Download PDF

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Publication number
WO2014206255A1
WO2014206255A1 PCT/CN2014/080503 CN2014080503W WO2014206255A1 WO 2014206255 A1 WO2014206255 A1 WO 2014206255A1 CN 2014080503 W CN2014080503 W CN 2014080503W WO 2014206255 A1 WO2014206255 A1 WO 2014206255A1
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WO
WIPO (PCT)
Prior art keywords
sub
tube
container
outlet pipe
water
Prior art date
Application number
PCT/CN2014/080503
Other languages
English (en)
French (fr)
Inventor
宋景涛
Original Assignee
Song Jingtao
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Publication date
Application filed by Song Jingtao filed Critical Song Jingtao
Priority to US14/769,463 priority Critical patent/US20150377498A1/en
Publication of WO2014206255A1 publication Critical patent/WO2014206255A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D17/00Domestic hot-water supply systems
    • F24D17/0078Recirculation systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D3/00Hot-water central heating systems
    • F24D3/10Feed-line arrangements, e.g. providing for heat-accumulator tanks, expansion tanks ; Hydraulic components of a central heating system
    • F24D3/1058Feed-line arrangements, e.g. providing for heat-accumulator tanks, expansion tanks ; Hydraulic components of a central heating system disposition of pipes and pipe connections
    • F24D3/1066Distributors for heating liquids
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D17/00Domestic hot-water supply systems
    • F24D17/0026Domestic hot-water supply systems with conventional heating means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D17/00Domestic hot-water supply systems
    • F24D17/0078Recirculation systems
    • F24D17/0084Coaxial tubings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D19/00Details
    • F24D19/10Arrangement or mounting of control or safety devices
    • F24D19/1006Arrangement or mounting of control or safety devices for water heating systems
    • F24D19/1051Arrangement or mounting of control or safety devices for water heating systems for domestic hot water
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00Components of central heating installations excluding heat sources
    • F24D2220/02Fluid distribution means
    • F24D2220/0207Pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D2220/00Components of central heating installations excluding heat sources
    • F24D2220/02Fluid distribution means
    • F24D2220/0235Three-way-valves

Definitions

  • the invention relates to the technical field of water heater equipment, in particular to a circulating device in a unidirectional closed pipeline.
  • the gas water heater under the prior art including the water supply and heating integrated gas furnace, has the following common problems: First, there is always a section of cold water after opening the faucet, because the gas water heater under the prior art cannot solve the water storage and combustion in the pipeline. The problem of transition water heating before preheating. This problem also exists when the faucet is turned on again every other time. Therefore, many people used to do not turn off the faucet to keep the hot water flowing while bathing in the bath; another problem is the one-way closed pipeline in the prior art. The circulation device often has a phenomenon that the water flow is unstable and the hot water is suddenly hot and cold.
  • the invention provides a unidirectional closed pipeline inner circulation device, which is installed with the water heater provided by the prior art (built-in integrated or independently assembled), and can ensure that the user turns on the faucet, that is, the hot water.
  • the present invention provides the following technical solutions:
  • the invention relates to a unidirectional closed pipeline internal circulation device, which comprises: a first water pump 200 and a sub-mother tube conversion tee 300, and the sub-tube external connection 301 of the sub-mother tube conversion tee 300 is connected to the outlet water ⁇ 201 of the first water pump 200 .
  • the method further comprises:
  • the bottom of the container 100 is further provided with an outlet pipe 202 and a distal outlet pipe 101.
  • the lower end of the outlet pipe 202 is connected to the water inlet of the first 7 pump 200, and the remote outlet pipe 101 is connected.
  • a sub-tube conversion tee 300 is provided, and a sub-tube 305 is disposed in the section of the remote outlet pipe 101 leading to the remote water point, and one end of the sub-tube 305 is connected to the sub-mother tube to convert the tee 300 In the sub-tube inner interface 302, the other end of the sub-tube 305 extends to the water outlet of the distal outlet pipe 101.
  • the container is: a water pipe, a water tank or a burner pipe, and the container is provided with electricity heating equipment.
  • the first outer interface of the sub-tube conversion tee 300 is connected to one end of the first-stage distal water outlet pipe, and the other end of the first-stage remote water outlet pipe is connected to the container, the mother-in-law
  • the second outer interface of the tube conversion tee 300 is connected to one end of the second end outlet pipe, and the other end of the second end remote water pipe is the water outlet of the remote outlet pipe 101.
  • an inner partition is disposed in the container, and a hot water mixing chamber is formed between the inner partitions.
  • a wall of the container is provided with a first temperature sensor 401, and a second water temperature sensor 402 is disposed on the mother channel of the three-way switch.
  • the method further includes: an outer casing disposed outside the container and surrounding the container, the outer casing and the container having an insulation layer, and the first water pump and the sub-tube are converted into three-way Located between the container and the outer casing, one end of the water outlet pipe is located in the container, and the other end of the water outlet pipe is located outside the outer casing. One end of the distal end outlet conduit is located between the outer casing and the container, and the other end of the second section of the distal outlet conduit is located outside the outer casing.
  • the bottom of the container 100 is provided with an outlet pipe 102, and the outlet pipe 102 is connected to the water inlet pipe 501 of the water heater 500.
  • the bottom of the container 100 is further provided with an inlet pipe 103, and the inlet pipe 103 is connected to the water heater.
  • a water outlet pipe 502 of 500 is further provided with a second water pump 203.
  • the sub-tube conversion tee 300 includes: a female passage, and a vertical pipe vertically disposed in the middle of the female passage and communicating with the female passage, wherein the female passage is provided with a sub-tube, the sub-tube One end of the tube is located at the nozzle of the female passage, and the other end of the sub-tube is connected to the vertical tube, one end of the female passage has a first outer interface 303, and the other end of the female passage has a second outer interface 304, the standpipe has a sub-tube outer interface 301, and the second sub-tube has a sub-tube inner interface 302.
  • the unidirectional closed pipeline internal circulation device provided by the invention can enable the conventional gas water heater (or other container, etc.) installed in the installation to open the faucet, that is, the hot water, and through the heat mixing function.
  • the mixing action of the container has the characteristics of stable and continuous flow of hot water. Not only can it improve the user's comfort, but also achieve the purpose of saving water.
  • FIG. 1 is a schematic structural view of a unidirectional closed pipeline internal circulation device provided by the present invention
  • FIG. 2 is a schematic structural view of another unidirectional closed pipeline internal circulation device according to the present invention
  • FIG. 3 is a schematic structural view of a sub-mother transition three-way according to the present invention.
  • the embodiment of the invention provides a unidirectional closed pipeline internal circulation device.
  • the first 7 pump 200 and the sub-mother tube convert the three-way 300
  • the sub-mother tube converts the sub-tube of the three-way 300
  • the outer port 301 is connected to the water outlet 201 of the first 7 pump 200.
  • the one-way closed pipeline internal circulation device can be installed independently of other gas water heater cabinets, and the one-way closed pipeline internal circulation device can be built into other gas water heater casings as components.
  • the three-passer is converted into a relay, and in the closed state of the pipeline, the first water pump transports the liquid in the liquid source container to the one-way closed pipeline through the sub-tube disposed in the pipeline.
  • the distal end continuously pushes the liquid remaining in the pipeline to return to the liquid source container through the mother passage of the daughter-tube conversion tee, thereby forming a continuous exchange of the liquid remaining in the closed line and the liquid in the liquid source container.
  • the bottom of the container 100 is further provided with an outlet pipe 202 and a distal outlet pipe 101, and the lower end of the outlet pipe 202 is connected at the A water inlet of the pump 200 is further provided with a water outlet 201 on the first 7 pump 200.
  • the remote outlet pipe 101 is provided with a sub-tube conversion tee 300, and the sub-pipe external interface 301 of the sub-tube conversion tee 300 is connected to the water outlet 201 of the first 7 pump 200, the distal end A first sub-tube 305 is disposed in the outlet pipe 101, and one end of the first sub-tube 305 is connected to the sub-tube internal interface 302 of the sub-male conversion tee 300, and the other end of the first sub-tube 305 extends to the
  • the water outlet of the remote water outlet pipe 101 can be connected to a water tap or the like.
  • the container 100 is: 7 tubes, 7 boxes, a burner line or a filtering device.
  • the container 100 is provided with an electric heating device.
  • the electric heating function When the stored water temperature in the container 100 is lower than the set value, the electric heating function is activated, and when the stored water temperature in the container is higher than the set value, the electric heating function is to be Machine. To better maintain the water temperature in the pipeline.
  • the circulator in the one-way closed line can retain or discard the container.
  • the arrow in Fig. 2 indicates the direction of the water circulation.
  • the distal gate valve e.g., the faucet
  • the first sub-tube disposed in the remote outlet pipe 101 is passed.
  • the 305 can deliver the liquid in the container to the outlet end of the distal outlet pipe 101, thereby effecting unidirectional closure of the liquid circulation within the line.
  • the water pump 200 is in operation, the flow of liquid in the first sub-tube 305 in the line 101 is opposite to the flow of liquid in the remote outlet pipe 101.
  • the direction of the inlet and outlet of the first water pump 200 can be adjusted, and the component specifications can be adjusted according to actual conditions.
  • the water inlet of the circulating device in the one-way closed pipeline can be connected with the hot water outlet of other water heaters (such as gas water heaters, electric water heaters, etc.), and can be connected to the water terminal in the standby or non-working state of other water heaters.
  • the water forms a circulation with the water in the container.
  • the second water pump 203 starts to work until the water temperature in the container reaches the set value; when the water stored in the hot water line 101 is lower than the set temperature value, the first 7 pump 200 Starting work, through the first sub-tube 305, the water in the pipeline between the container and the container to the outlet faucet (the nozzle of the distal outlet pipe is connected to the faucet) is cycled, and is constant at a suitable temperature, when the temperature reaches the setting At the time of the value, the first water pump 200 enters the standby state.
  • the outer interface 303 of the sub-tube conversion tee 300 is connected to one end of the first-stage distal water outlet pipe, and the other end of the first-stage remote water outlet pipe is connected to the other end.
  • the container 100, the second outer interface 304 of the sub-tube conversion tee 300 is connected to one end of the second-stage distal water outlet pipe (to the water point, such as a faucet), and the second-stage distal water outlet pipe The other end is the water outlet of the remote outlet pipe 101.
  • the container 100 is provided with an electric heating device.
  • the electric heating function When the stored water temperature in the container 100 is lower than the set value, the electric heating function is activated, and when the stored water temperature in the container is higher than the set value, the electric heating function stands by. In order to maintain the temperature of the water in the pipeline while the water heater is off.
  • the container 100 is further provided with an inner partition.
  • a mixing hot water chamber is formed between the plates and the inner partition.
  • a first 7 temperature sensor 401 is disposed on the wall of the container. To detect the temperature of the water in the container, if the water temperature is lower than the set temperature, the water circulation or electric heating function is activated.
  • the female channel of the sub-tube conversion tee is provided with a second water temperature sensor 402.
  • the first 7 pump for circulation is started by the second water temperature sensor.
  • an outer casing the outer casing is disposed outside the container and encloses the container, and the outer casing and the container are insulated a layer, the first water pump and the sub-tube conversion tee are located between the container and the outer casing, one end of the water outlet pipe is located in the container, and the other end of the water outlet pipe is located in the outer casing
  • one end of the distal end outlet pipe of the second section is located between the outer casing and the container, and the other end of the second section of the distal outlet water pipe is located outside the outer casing.
  • the bottom of the container 100 is provided with a second outlet pipe 102, and the second outlet pipe 102 is connected to the water inlet pipe of the water heater 500. 501.
  • the bottom of the container 100 is further provided with an inlet pipe 103, and the inlet pipe 103 is connected to the outlet pipe 502 of the water heater 500.
  • the second water outlet pipe 102 is further provided with a second water pump 203.
  • the sub-tube conversion tee 300 includes: a mother passage 320, and is vertically disposed in the middle of the female passage 320 and connected to the female passage a vertical tube 310, a second sub-tube 321 is disposed in the female channel 320, one end of the second sub-tube 321 is located at the nozzle of the female channel 320, and the other end of the second sub-tube 321 is connected to the a standpipe 310 having a first outer port 314 at one end and a second outer port 313 at the other end of the parent channel, the standpipe having a sub-tube outer interface 301 on the second sub-tube There is a sub-in-tube interface 302.
  • the installation position, the water inlet and outlet route, the inlet and outlet position, the size and shape of the container for mixing, and the number and position of the internal partition of the container according to the embodiment of the present invention can be configured according to different models. Make adaptive adjustments.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Cookers (AREA)
  • Devices For Dispensing Beverages (AREA)
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Abstract

一种单向封闭管路内循环装置,包括:第一水泵(200)和子母管转换三通(300),子母管转换三通(300)的子管外接口(301)连接第一水泵(200)的出水口(201)。

Description

一种单向封闭管踣内循坏装置
本申请是要求申请号为: 201310262569.0的中国发明专利申请的优先权。
技术领域
本发明涉及热水器设备技术领域,特别涉及一种单向封闭管路内循环装 背景技术
现有技术下的燃气热水器,包括供水供暖一体燃气炉存在以下共同的问 题:一是打开水龙头后总会有一段冷水,这是因为现有技术下的燃气热水器 无法解决管线中的存水和燃烧器预热前的过渡水加热问题。 隔一段时间再次 开启水龙头时同样存在这个问题,因此很多人在洗澡过程中打浴液时,习惯 不关闭水龙头一直让热水流着;另一个问题就是现有技术下的单向封闭管路 内循环装置常存在水流不稳定,热水忽冷忽热的现象。
发明内容
本发明提供一种单向封闭管路内循环装置,与现有技术提供的热水器配 套安装 (内置一体或者独立配装),都可以保证使用者开启水龙头即出热水。
为了实现上述目的,本发明提供以下技术方案:
一种单向封闭管路内循环装置,其包括:第一水泵 200和子母管转换三 通 300 ,所述子母管转换三通 300的子管外接口 301连接第一水泵 200的出水 □ 201。
优选地,还包括:
容器 100 ,所述容器 100的底部还设置有出水管 202和远端出水管路 101 , 所述出水管 202的下端连接在第一 7 泵 200的进水口,所述远端出水管路 101 上设置有子母管转换三通 300 ,所述远端出水管 101通向远端用水点的段内设 置有子管 305 ,所述子管 305的一端连接所述子母管转换三通 300的子管内接 口 302 ,所述子管 305的另一端延伸到所述远端出水管 101的出水口。
优选地,所述容器为:水管、 水箱或燃烧器管路,所述容器内设置有电 加热装置。
优选地,所述子母管转换三通 300的第一外接口连接在第一段远端出水 管的一端,所述第一段远端出水管的另一端连接所述容器,所述子母管转换 三通 300的第二外接口连接在第二段远端出水管的一端,所述第二段远端出 水管的另一端为该远端出水管 101的出水口。
优选地,所述容器内还设置有内隔板,所述内隔板之间形成混热水腔。 优选地,所述容器的壁上设置有第一 7 温感应器 401 ,所述子母管转换三 通的母通道上设置有第二水温感应器 402。
优选地,还包括:外壳,所述外壳设置在所述容器的外面并包住所述容 器,所述外壳与容器之间具有保温层,所述第一水泵和所述子母管转换三通 位于所述容器与所述外壳之间,所述出水管的一端位于所述容器内,所述出 水管的另一端位于所述外壳外。 第二段所述远端出水管路的一端位于所述外 壳与所述容器之间,第二段所述远端出水管路的另一端位于所述外壳外。
优选地,所述容器 100的底部设置有出水管 102 ,所述出水管 102连接热 水器 500的进水管 501 ,所述容器 100的底部还设置有进水管 103 ,所述进水 管 103连接所述热水器 500的出水管 502 ,所述出水管 102上还设置有第二水 泵 203。
优选地,所述子母管转换三通 300包括:母通道,以及垂直装设在所述 母通道中间并与所述母通道连通的竖管,所述母通道内设置有子管,该子管 的一端位于所述母通道的管口,所述子管的另一端连通所述竖管,所述母通 道的一端具有第一外接口 303 ,所述母通道的另一端具有第二外接口 304 ,所 述竖管上具有子管外接口 301 ,所述第二子管上具有子管内接口 302。
通过实施以上技术方案,具有以下技术效果:本发明提供的单向封闭管 路内循环装置,能使配套安装的传统燃气热水器(或者其他容器等)开启水 龙头即出热水,而且通过混热功能的容器的混合过渡作用,具有热水稳定、 不断流的特性。 不仅可以提高使用者的舒适感,同时也达到了节省水资源的 目的。 附图说明
图 1为本发明提供的单向封闭管路内循环装置的结构示意图;
图 2为本发明提供的另一种单向封闭管路内循环装置的结构示意图; 图 3为本发明提供子母管转换三通的结构示意图。
具体实施方式
为了更好的理解本发明的技术方案,下面结合附图详细描述本发明提供 的实施例。
本发明实施例提供一种单向封闭管路内循环装置,如图 1和图 2所示, 第一 7 泵 200和子母管转换三通 300 ,所述子母管转换三通 300的子管外 接口 301连接第一 7 泵 200的出水口 201。该单向封闭管路内循环装置可以独 立于其他燃气热水器机箱之外与之配套安装,也可以将这个单向封闭管路内 循环装置作为部件内置于其他燃气热水器机箱内部。 在第一水泵的工作状态 下,以子母管转换三通为中转,在管线封闭状态时,第一水泵通过设置在管 线中的子管将液体源容器内的液体输送向单向封闭管线的远端,并不断推动 管线中存留的液体通过子母管转换三通的母通道返回液体源容器,形成封闭 管线中存留液体与液体源容器内液体的持续交换。
在其他实施例中,在上述实施例基础上,进一步的,包括容器 100 ,所述 容器 100的底部还设置有出水管 202和远端出水管路 101 ,所述出水管 202的 下端连接在第一 7 泵 200的进水口,所述第一 7 泵 200上还设置有出水口 201。
所述远端出水管 101上设置有子母管转换三通 300 ,所述子母管转换三通 300的子管外接口 301连接所述第一 7 泵 200的出水口 201 ,所述远端出水管 101内设置有第一子管 305 ,所述第一子管 305的一端连接所述子母管转换三 通 300的子管内接口 302 ,所述第一子管 305的另一端延伸到所述远端出水管 101的出水口,该出水口可以连接水龙头等。 在本实施例中,优选地,所述容 器 100为: 7 管、 7 箱、 燃烧器管路或者过滤装置,在其他实施例中,进一 步的,所述容器 100内设置有电加热装置。 当容器 100中的存水温度低于设 定值时,电加热功能启动,容器中的存水温度高于设定值时,电加热功能待 机。 以更好保持管线中的水温度。
该单向封闭管路内循环装置可以保留或者舍弃容器。
图 2中箭头表示水循环的方向,在远端出水管 101的远端闸阀(如水龙 头)关闭的状态下,第一 7 泵 200工作时,通过设置在远端出水管 101内的 第一子管 305可以将容器中的液体输送到远端出水管 101的出水端,从而实 现单向封闭管线内液体循环。在水泵 200工作时,管线 101内的第一子管 305 内的液体与远端出水管 101内液体的流向是相反的。
实际应用中,第一水泵 200的进出口方向可以调整,部件规格等可以根 据实际情况作出调整。
该单向封闭管路内循环装置的进水口可以与其他热水器 (如燃气热水器、 电热水器等)的热水出水口连接,可以在其他热水器待机或非工作状态下, 通向用水终端的管线中的水与容器内的水形成循环。
其他热水器待机,容器内水温低于设定值时,第二水泵 203启动工作至 容器内水温达到设定值;热水管线 101 中的存水低于设定温度值时,第一 7 泵 200启动工作,通过第一子管 305使容器与容器至出水龙头(远端出水管 的管口连接水龙头)之间管线中的存水形成循环,并恒定在一个适合的温度 , 当温度达到设定值时,第一水泵 200进入待机状态。
在上述实施例中,更为具体的,所述子母管转换三通 300的外接口 303 连接在第一段远端出水管的一端,所述第一段远端出水管的另一端连接所述 容器 100 ,所述子母管转换三通 300的第二外接口 304连接在第二段远端出水 管(通向用水点,如水龙头处 )的一端,所述第二段远端出水管的另一端为 该远端出水管 101的出水口。
在其他实施例中,在上述实施例基础上,所述容器 100内设置有电加热 装置。 当容器 100中的存水温度低于设定值时,电加热功能启动,容器中的 存水温度高于设定值时,电加热功能待机。 以便在热水器关机状态下仍然保 持管线中水的温度。
在其他实施例中,在上述实施例基础上,所述容器 100内还设置有内隔 板,所述内隔板之间形成混热水腔。 以使热水器中的出水热水与容器中的水 混合更加充分,使最后出来的水温度更加稳定和保持温度效果更好。
在其他实施例中,在上述各实施例基础上,进一步的,所述容器的壁上 设置有第一 7 温感应器 401。以检测容器中的水温,如果该水温低于设定的温 度,则启动水循环或者电加热功能。
在其他实施例中,在上述各实施例基础上,进一步的,所述子母管转换 三通的母通道设置有第二水温感应器 402。通过第二水温感应器检测,循环用 的第一 7 泵启动工作。
在其他实施例中,在上述各实施例基础上,进一步的,还包括:夕卜壳, 所述外壳设置在所述容器的外面并包住所述容器,所述外壳与容器之间具有 保温层,所述第一水泵和所述子母管转换三通位于所述容器与所述外壳之间, 所述出水管的一端位于所述容器内,所述出水管的另一端位于所述外壳外, 第二段所述远端出水管的一端位于所述外壳与所述容器之间,第二段所述远 端出水管的另一端位于所述外壳外。 可以更好的保持容器内的水温,以及保 护容器 100、 第一 7 泵和所述子母管转换三通等部件。 在其他实施例中,在上述各实施例基础上,进一步的,如图 2所示,所 述容器 100的底部设置有第二出水管 102 ,所述第二出水管 102连接热水器 500的进水管 501 ,所述容器 100的底部还设置有进水管 103 ,所述进水管 103 连接所述热水器 500的出水管 502。 在其他实施例中,在上述各实施例基础上,进一步的,所述第二出水管 102上还设置有第二水泵 203ο
在上述实施例中,更为优选地,如图 3所示,所述子母管转换三通 300 包括:母通道 320 ,以及垂直装设在所述母通道 320中间并与所述母通道连通 的竖管 310 ,所述母通道 320内设置有第二子管 321 ,该第二子管 321的一端 位于所述母通道 320的管口,所述第二子管 321的另一端连通所述竖管 310 , 所述母通道的一端具有第一外接口 314 ,所述母通道的另一端具有第二外接口 313 ,所述竖管上具有子管外接口 301 ,所述第二子管上具有子管内接口 302。 本发明实施例提供的即出热水装置的组部件的安装位置、 进出水路线、 进出水口位置、 混热用的容器大小形状以及容器内部隔板的数量、 位置等可 以根据不同机型的结构作适应性调整。
以上对本发明实施例所提供的一种单向封闭管路内循环装置进行了详细 介绍,对于本领域的一般技术人员,依据本发明实施例的思想,在具体实施 方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对 本发明的限制。

Claims

权 利 要 求 书
1、 一种单向封闭管路内循环装置,其特征在于,包括:
第一 7 泵 ( 200 )和子母管转换三通( 300 ) ,所述子母管转换三通( 300 ) 的子管外接口( 301 )连接第一 7 泵 ( 200 )的出水口( 201 \
2、 如权利要求 1所述单向封闭管路内循环装置,其特征在于,还包括: 容器 ( 100 ) ,所述容器( 100 )的底部还设置有出水管( 2 )和远端出 水管路( 101 ) ,所述出水管( 202 )的下端连接在第一 7 泵 ( 200 )的进水口, 所述远端出水管路( 101 )上设置有子母管转换三通( 300 ) ,所述远端出水管 ( 101 )通向远端用水点的管线段内设置有子管( 305 ) ,所述子管( 305 )的 一端连接所述子母管转换三通( 300 )的子管内接口( 302 ) ,所述子管( 305 ) 的另一端延伸到所述远端出水管( 101 )的出水口。
3、 如权利要求 2所述单向封闭管路内循环装置,其特征在于,所述子母 管转换三通( 300 )包括:母通道,以及垂直装设在所述母通道中间并与所述 母通道连通的竖管,所述母通道内设置有子管,该子管的一端位于所述母通 道的管口,所述子管的另一端连通所述竖管,所述母通道的一端具有第一外 接口( 303 ) ,所述母通道的另一端具有第二外接口( 304 ) ,所述竖管上具有 子管外接口( 301 ) ,所述第二子管上具有子管内接口( 302 )。
4、 如权利要求 3所述单向封闭管路内循环装置,其特征在于,所述容器 为: 7 管、 7 箱、 燃烧器管路或者过滤装置,所述容器内设置有电加 置。
5、 如权利要求 3所述单向封闭管路内循环装置,其特征在于,所述子母 管转换三通( 300 )的第一外接口连接在第一段远端出水管的一端,所述第一 段远端出水管的另一端连接所述容器,所述子母管转换三通( 300 )的第二外 接口连接在第二段远端出水管的一端,所述第二段远端出水管的另一端为该 远端出水管 ( 101 )的出水口。
6、 如权利要求 5所述单向封闭管路内循环装置,其特征在于,所述容器 内还设置有内隔板,所述内隔板之间形成混热水腔。
7、 如权利要求 3或 6所述单向封闭管路内循环装置,其特征在于,所述 容器的壁上设置有第一 7 温感应器( 401 ) ,所述子母管转换三通的母通道上 设置有第二水温感应器 ( 402 )。
8、 如权利要求 7所述单向封闭管路内循环装置,其特征在于,还包括: 外壳,所述外壳设置在所述容器的外面并包住所述容器,所述外壳与容器之 间具有保温层,所述第一水泵和所述子母管转换三通位于所述容器与所述外 壳之间,所述出水管的一端位于所述容器内,所述出水管的另一端位于所述 外壳外。 第二段所述远端出水管路的一端位于所述外壳与所述容器之间,第 二段所述远端出水管路的另一端位于所述外壳外。
9、 如权利要求 8所述单向封闭管路内循环装置,其特征在于,所述容器 ( 100 )的底部设置有出水管( 102 ) ,所述出水管 ( 102 )连接热水器 ( 500 ) 的进水管( 501 ) ,所述容器 ( 100 )的底部还设置有进水管 ( 103 ) ,所述进水 管( 103 )连接所述热水器 ( 500 )的出水管 ( 502 ) ,所述出水管 ( 102 )上还 设置有第二水泵( 2〇3 I
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