WO2012088770A1 - 集成式水箱及包括其的太阳能热水器用供水系统 - Google Patents

集成式水箱及包括其的太阳能热水器用供水系统 Download PDF

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Publication number
WO2012088770A1
WO2012088770A1 PCT/CN2011/002233 CN2011002233W WO2012088770A1 WO 2012088770 A1 WO2012088770 A1 WO 2012088770A1 CN 2011002233 W CN2011002233 W CN 2011002233W WO 2012088770 A1 WO2012088770 A1 WO 2012088770A1
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Prior art keywords
water
supply system
integrated
water tank
water supply
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Application number
PCT/CN2011/002233
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English (en)
French (fr)
Inventor
张科
李宏达
尉永魁
陈维皓
Original Assignee
霍尼韦尔(中国)有限公司
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Publication of WO2012088770A1 publication Critical patent/WO2012088770A1/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
    • F24D17/0015Domestic hot-water supply systems using solar energy
    • F24D17/0021Domestic hot-water supply systems using solar energy with accumulation of the heated 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
    • F24D2200/00Heat sources or energy sources
    • F24D2200/14Solar energy
    • 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
    • F24D2220/08Storage tanks
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/08Packaged or self-contained boilers, i.e. water heaters with control devices and pump in a single unit
    • 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

Definitions

  • the utility model relates to the technical field of solar water heaters, in particular to an integrated water tank and a water supply system for a solar water heater comprising the integrated water tank.
  • the object of the present invention is to provide an integrated water tank with high integration degree, which can greatly simplify the above installation process, significantly reduce installation cost, and reduce installation time and time, and a water supply system for the solar water heater including the same, thereby enabling The above problems existing in the prior art are effectively solved to better meet the actual needs of people.
  • the utility model adopts the following technical solutions:
  • An integrated water tank is provided with at least one water inlet port and at least one water outlet port, and the integrated water tank is further provided with a valve device and/or a pump device, the valve device and the water inlet interface and/or Or the water outlet interface is in fluid communication, and the pump device is in fluid communication with the water outlet interface.
  • the outer casing of the integrated water tank is provided with a mounting box, and the valve device and/or the pump device are installed in the mounting box.
  • the mounting case is integrally formed with the integrated water tank.
  • the integrated water tank has an inner layer and an outer layer, and an insulating material is disposed between the inner layer and the outer layer.
  • the integrated water tank is in the shape of a cylinder, a sphere, a prism or a cube.
  • the valve means includes at least one of a temperature control valve, a temperature pressure safety valve, and a pressure reducing valve.
  • a water supply system for a solar water heater comprising the integrated water tank according to any of the above.
  • the water supply system further includes a filtering device disposed at an inlet end of the water supply system for filtering impurities in the water.
  • the water supply system further includes a water treatment device disposed at a water inlet end of the water supply system for improving the water shield.
  • the water inlet interface of the integrated water tank includes:
  • a first water inlet port communicating with the water inlet end of the water supply system through a first pipeline; a second water inlet port communicating with a water outlet of the heat collecting device through the second pipeline, the heat collecting The device is used to collect solar energy to heat the water supplied thereto by the integrated water tank.
  • the second conduit is provided with a venting member for removing the gas in the conduit.
  • the water outlet interface of the integrated water tank includes:
  • a first water outlet interface which is connected to a water outlet end of the water supply system through a third pipeline;
  • the second outlet interface is in communication with the water inlet of the heat collecting device through a fourth conduit for collecting solar energy to heat the water supplied thereto by the integrated water tank.
  • the utility model has the beneficial effects that: compared with the prior art, by using the integrated water tank and the water supply system for the solar water heater including the integrated water tank, the workload of the solar water heater installation site can be significantly reduced, and the installation time can be shortened. In particular, it can reduce the high cost caused by complex and cumbersome installation work in developed countries, for example, and also makes the installation site clean and clean, and the overall layout of the equipment is more beautiful. In addition, since the integrated water tank with integrated valves and pumps can be tested and tested in the production site by using more rigorous and complete testing methods, it can ensure the long-term safety of the installed solar water heater more reliably and effectively. Stable operation. DRAWINGS
  • FIG. 1 is a schematic view showing the composition of a water supply system for a solar water heater in the prior art
  • FIG. 2 is a schematic structural view of the water tank of FIG.
  • FIG. 3 is a schematic view showing the composition of a water supply system for a solar water heater including an integrated water tank according to the present invention
  • FIG. 4 is a schematic view showing the composition of a second embodiment of a water supply system for a solar water heater including an integrated water tank of the present invention
  • FIG. 5 is a schematic view showing the structure of the integrated water tank of Figure 4. Description of the reference signs:
  • the integrated water tank of the present invention is schematically indicated by the numeral 1 in the drawings, and the solar energy to which the integrated water tank is applied is also integrally shown in the figure.
  • Water supply system for water heaters for water heaters.
  • one or more water inlet ports and one or more water outlet ports are provided on the integrated water tank 1 according to actual needs, and a valve device is also installed on the integrated water tank 1 (for example, the above figure The temperature control valve 5, the temperature and pressure relief valve 6 and the pressure reducing valve 7) and/or the pump device 8 exemplarily shown in the present invention, in use, fluidly communicate the above valve device with the aforementioned water inlet port and/or the water outlet port,
  • the pump unit 8 is in fluid communication with the water outlet port described above.
  • FIG. 3 it is a schematic diagram of the composition of the first embodiment of the water supply system for a solar water heater of the present invention, and the integrated water tank 1 is included in the water supply system for the solar water heater.
  • the integrated water tank 1 is provided with two water inlet interfaces, namely a first water inlet port 14 and a second water inlet port 15.
  • the first water inlet port 14 provides water at a normal temperature to the illustrated water supply system through the first line 10 and the water inlet end of the water supply system (usually through a common water network system, the water from the water inlet end is The water supply system is also commonly referred to as "cold water", and the second water inlet port 15 is connected to the heat collecting device water outlet 19 through the second line 11.
  • the heat collecting device 2 is generally in the form of a U-shaped heat collecting tube, which is usually installed at a higher position in the field for collecting solar energy, and uses the collected energy to heat the integrated water tank 1 through the pump device. 8 pumping cold water of a lower temperature supplied to the heat collecting device 2.
  • a venting member 9 is also provided in the second conduit 1 1 to operate the gas in the exhaust conduit.
  • the venting means can be used to achieve the desired function of the venting member 9.
  • the venting member 9 can also be realized by applying modern electronic, wireless remote control technology, etc., thereby providing the user with more Effective and convenient control.
  • the integrated water tank 1 is also provided with two water outlet interfaces, namely a first water outlet interface 16 and a second water outlet interface (since it is blocked by the pump device 8 on the drawing of Fig. 3)
  • a first water outlet interface 16 and a second water outlet interface (since it is blocked by the pump device 8 on the drawing of Fig. 3)
  • the first water outlet 16 passing through the third conduit 12 and the water outlet of the water supply system (ie, the integrated water tank 1 being heated by the water supply system)
  • the end of the hot water supplied to the outside is connected, and the second outlet is connected to the water inlet 18 of the heat collector through the fourth line 13.
  • the cold water from the inlet end of the water supply system is sent to the integrated water tank 1 through the first line 10, the first water inlet port 14 on the integrated water tank 1, and then integrated via the pump unit 8
  • the second water outlet port 17 on the water tank 1 enters the heat collecting device 2 through the fourth line 13 and the heat collecting device water inlet 18. Since the heat collecting device 2 continues to receive solar energy, the water placed therein can be continuously heated, and the heated hot water is passed through the second pipe 1 1 and the integrated water tank 1 through the heat collecting device water outlet 19.
  • the second water inlet port 15 is fed into the integrated water tank 1, which is mixed with the water in the integrated water tank 1 for sufficient heat exchange, thereby increasing the temperature of the water in the integrated water tank 1.
  • the temperature control valve 5, the temperature and pressure relief valve 6, and the pump unit 8 which are exemplarily illustrated are mounted on the integrated water tank 1, particularly on the back surface thereof.
  • these components can be fixed to the integrated water tank 1 by means of screws, bolts, clamps, and the like.
  • any known existing connection means such as riveting, welding, etc. can also be employed.
  • Important components for temperature, pressure, flow and other monitoring and control have been rigorously and thoroughly tested in advance, thus improving the safe use performance of on-site installed solar water heaters.
  • the water supply system shown in the first embodiment further includes other devices to provide more auxiliary functions.
  • the filtering device 4 is disposed at the water inlet end of the water supply system to filter impurities in the water
  • the water treatment device 3 is also disposed at the water inlet end for improving water quality (for example, softening the water body, etc.).
  • the pressure reducing valve 7 is used to reduce the inlet pressure when needed.
  • the filtering device 4, the water treatment device 3, and the pressure reducing valve 7 are sequentially installed in the first conduit 10, and the first conduit 10 also shows, for example, a valve installed therein. Wait for more parts. Please refer to FIG.
  • FIG. 4 is a schematic diagram of a second embodiment of a water supply system for a solar water heater including an integrated water tank according to the present invention.
  • FIG. 4 shows a partial cross section of the pump device 8 .
  • the second embodiment it adopts a more compact design to further achieve the aforementioned object of the present invention.
  • This compact design can be better understood by combining the integrated water tank shown separately in Figure 5.
  • the pressure reducing valve 7 is also integrated on the integrated water tank 1 shown, which further provides integration and is advantageous for improving the cleanliness of the installation site, so that the overall arrangement of the installed equipment is further improved.
  • Beautiful Regarding the other aspects of the water supply system for a solar water heater in the second embodiment, since there is no significant difference from the first embodiment described in detail above, the description will not be repeated.
  • a mounting box (not shown) is provided on the outer casing of the integrated water tank 1, the mounting box being sized to accommodate valve means and/or pump means, and others
  • the parts that may be involved are installed in it.
  • the mounting case can also be made into a structure that is easy to open and close, and in a more preferred embodiment, a transparent cover is used to make the cover of the mounting case so that it can be directly viewed from the outside. The working condition of the components inside it.
  • the integrated water tank 1 is formed into two inner and outer layers, and an insulating material is filled between the inner layer and the outer layer.
  • an insulating material may be any suitable material in the prior art, and since this technical content is widely understood and known to those skilled in the art, it will not be described again.
  • the integrated water tank 1 can be designed and manufactured into a cylinder, a sphere, a prism or a cube shape as needed.
  • the specific embodiments are listed above to clarify the integrated water tank of the present invention and the water supply system for the solar water heater including the same, which are only for explaining the principle of the utility model and its implementation manner, rather than the utility model.
  • Various modifications and improvements can be made by those skilled in the art without departing from the spirit and scope of the invention. Therefore, all equivalent technical solutions are intended to be within the scope of the invention and are defined by the claims of the invention.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Heat-Pump Type And Storage Water Heaters (AREA)

Description

说 明 书 集成式水箱及包括其的太阳能热水器用供水系统 技术领域
本实用新型涉及太阳能热水器技术领域, 尤其涉及一种集成式水箱以及 包括该集成式水箱的太阳能热水器用供水系统。 背景技术
随着时代进步和社会发展,以石油为代表的传统能源的消耗量由于不断 增大而面临逐步枯竭的严重问题, 因此人们正在积极研究开发诸如风能、 太 阳能、 生物能等新能源替代传统能源, 并希望以此来减少污染、 保护环境, 所以上述的新能源技术都已获得了快速发展和较为广泛的应用。
太阳能作为清洁能源之一, 目前在人们的现实生活中也已被广泛利用, 例如人们日常所用的太阳能热水器即为其中一例。 然而, 值得注意的是, 在 太阳能热水器的安装过程中将会涉及到众多零部件(例如, 压力泵、 各种阀 门、 监测仪表等)的现场装配、 调试操作, 特别是在如图 1和图 2中示出的 水箱 Γ的周围安装了许多重要的压力或温度控制部件,因此这必将造成整个 安装过程相当得繁瑣并且耗时耗力。 根据统计, 在欧美一些发达国家中, 这 类现场安装开支之高是相当惊人的,甚至能够达到太阳能热水器总费用的五 分之一。 而且, 现有方式也无法精确控制安装效果而难以确保设备在安装后 能长期安全可靠地进行使用。 所以, 确有必要对此问题加以研究解决。 实用新型内容
有鉴于此, 本实用新型的目的在于提供一种集成度高、 可以大幅度简化 上述安装过程并显著降低安装费用、减少安装耗时的集成式水箱以及包括其 的太阳能热水器用供水系统,从而能够有效地解决现有技术中存在的上述问 题, 以更好地满足人们的现实需求。
为实现上述实用新型目的, 本实用新型采用了以下的技术方案:
确认本 一种集成式水箱, 其设有至少一个进水接口和至少一个出水接口, 所述 集成式水箱上还装设有阀装置和 /或泵装置, 所述阀装置与所述进水接口和 / 或所述出水接口流体连通, 所述泵装置与所述出水接口流体连通。
在上述的集成式水箱中, 优选地, 所述集成式水箱的外壳体上设有安装 箱体, 所述阀装置和 /或泵装置被装设于所述安装箱体中。
在上述的集成式水箱中, 优选地, 所述安装箱体与所述集成式水箱一体 成型。
在上述的集成式水箱中, 优选地, 所述集成式水箱具有内层和外层, 所 述内层和外层之间装设有保温材料。
在上述的集成式水箱中, 优选地, 所述集成式水箱呈圆柱体、 球体、 棱 柱体或立方体形状。
在上述的集成式水箱中, 优选地, 所述阀装置至少包括温控阀、 温度压 力安全阀和减压阀中的一种。
此外, 本实用新型还采用了以下技术方案来实现上述目的:
一种太阳能热水器用供水系统,其包括根据以上任一项所述的集成式水 箱。
在上述的太阳能热水器用供水系统中, 优选地, 所述供水系统还包括过 滤装置, 其设置于所述供水系统的进水端用于过滤水中杂质。
在上述的太阳能热水器用供水系统中, 优选地, 所述供水系统还包括水 处理装置, 其设置于所述供水系统的进水端用于改善水盾。
在上述的太阳能热水器用供水系统中, 优选地, 其特征在于, 所述集成 式水箱的进水接口包括:
第一进水接口, 其通过第一管路与所述供水系统的进水端相连通; 第二进水接口, 其通过第二管路与集热装置的出水口相连通, 所述集热 装置用于收集太阳能来加热由所述集成式水箱向其供给的水。
在上述的太阳能热水器用供水系统中, 优选地, 所述第二管路中设有用 于排除该管路中气体的通气部件。
在上述的太阳能热水器用供水系统中, 优选地, 所述集成式水箱的出水 接口包括:
第一出水接口, 其通过第三管路与所述供水系统的出水端相连通; 第二出水接口, 其通过第四管路与集热装置的进水口相连通, 所述集热 装置用于收集太阳能来加热由所述集成式水箱向其供给的水。
本实用新型的有益效果在于: 与现有技术相比, 通过采用本集成式水箱 以及包括该集成式水箱的太阳能热水器用供水系统,能非常显著地降低太阳 能热水器安装现场的工作量、 缩短安装时间, 并且尤其可以减少例如在发达 国家由于复杂、繁瑣的安装工作而造成的高昂费用, 同时也使得安装现场整 洁、 干净, 设备整体布置更加美观。 此外, 由于可以事先在生产制造场所采 用更严格、完备的检测手段来对集成安装了阀和泵等装置的集成式水箱进行 测试检验, 因此能够更可靠、有效地保证所安装的太阳能热水器长期安全稳 定运行。 附图说明
以下将结合附图和实施例,对本实用新型的技术方案作进一步的详细描 述。 其中:
图 1是现有技术中的太阳能热水器用供水系统的组成示意图; 图 2是图 1 中水箱的结构示意图;
图 3 是本实用新型的包括集成式水箱的太阳能热水器用供水系统的第 一实施例的组成示意图;
图 4 是本实用新型的包括集成式水箱的太阳能热水器用供水系统的第 二实施例的组成示意图;
图 5是图 4中的集成式水箱的结构示意图。 附图标记说明:
1, 水箱 1 集成式水箱
2 集热装置 3 水处理装置
4 过滤装置 5 温控阀
6 温度压力安全阀 7 减压阀
8 泵装置 9 通气部件
10 第一管路 1 1 第二管路
12 第三管路 13 第四管路 14 第一进水接口 15 第二进水接口
16 第一出水接口 17 第二出水接口
18 集热装置进水口 19 集热装置出水口 具体实施方式
请结合参阅图 3、 4和 5, 在这些附图中以数字 1 示意性地标识出了本 实用新型中的集成式水箱,在图中也整体性地示出应用了该集成式水箱的太 阳能热水器用供水系统。
概括而言,在集成式水箱 1上根据实际需要而设置有一个或多个进水接 口、以及一个或多个出水接口,同时还在该集成式水箱 1上装设了阀装置(例 如, 上述图中举例性示出的温控阀 5、 温度压力安全阀 6 和减压阀 7 ) 和 / 或泵装置 8,在使用中将以上阀装置与上述的进水接口和 /或出水接口流体连 通, 而将泵装置 8与上述的出水接口流体连通。 关于阀装置、 泵装置的具体 连接以及包括了上述集成式水箱的太阳能热水器用供水系统等设置情况将 在以下若干实施例中进行详细说明,以便于可以更为清楚地理解本实用新型 的结构特点、 工作原理及其优势。
如图 3所示,它是本实用新型的太阳能热水器用供水系统的第一实施例 的组成示意图, 在该太阳能热水器用供水系统中包括了集成式水箱 1。
在第一实施例中, 集成式水箱 1设置有两个进水接口, 即第一进水接口 14和第二进水接口 15。 其中, 第一进水接口 14通过第一管路 10与供水系 统的进水端(通常是通过公共的自来水网系统来向图示的供水系统提供常温 下的水, 来自该进水端的水在本供水系统中也被俗称为 "冷水" ) 相连通, 而第二进水接口 15则通过第二管路 1 1与集热装置出水口 19相连通。 在图 3中, 集热装置 2—般采用例如 U型的集热管形式, 它通常被安装在现场的 较高位置用来收集太阳能,并使用收集的能量来加热由集成式水箱 1通过泵 装置 8泵送供给给集热装置 2的温度较低的冷水。为了消除或控制在管路中 出现气体由于受热膨胀而造成爆炸危险, 如图 3所示, 在第二管路 1 1 中还 专门设置通气部件 9来操作排除管路中的气体。 最为简便的是, 可以采用通 气孔的方式来实现以上通气部件 9所要实现的功能。 当然, 通气部件 9也可 以通过应用现代电子、 无线遥控技术等来加以实现, 从而为用户提供更为有 效、 方便的控制手段。
在第一实施例中, 集成式水箱 1还设置有两个出水接口, 即第一出水接 口 16和第二出水接口(因其在图 3的图面上被泵装置 8遮挡住而并未能予以 标示,对此可以参阅图 4中的相应处),该第一出水接口 16通过第三管路 12 与供水系统的出水端(即, 是指由本供水系统将集成式水箱 1中被加热的热 水向外界提供的一端)相连通, 而第二出水接口则通过第四管路 13与集热 装置进水口 18相连通。
通过以上设置, 来自供水系统的进水端的冷水通过第一管路 10、 集成 式水箱 1上的第一进水接口 14被送入集成式水箱 1 中, 然后使用泵装置 8 将其经由集成式水箱 1上的第二出水接口 17并通过第四管路 13、 集热装置 进水口 18而进入集热装置 2中。 由于集热装置 2持续接受太阳能, 所以能 将放置于其内的水持续进行加热, 并将加热后的热水经由集热装置出水口 19通过第二管路 1 1、 集成式水箱 1上的第二进水接口 15送入集成式水箱 1 中, 该热水与集成式水箱 1内的水相混合而进行充分热交换, 从而提升了集 成式水箱 1 内水的温度。
在上述的供水系统中涉及到示例性图示出的温控阀 5、 温度压力安全阀 6和泵装置 8是被安装在集成式水箱 1上, 特别是装设在其背面上。 具体而 言, 可以使用螺丝、 螺栓、 夹具等连接方式将以上这些部件固定在集成式水 箱 1上。 毫无疑问, 诸如铆接、 焊接等任何已知的现有连接手段也是可以被 采用的。这样,就能够预先在制造场所而非安装现场完成以上这些部件连接、 安装和测试, 从而极大地降低现场工作人员的工作量, 使得整个安装操作更 为经济、 便捷, 并且充分保证了这些主要涉及温度、 压力、 流量等监测控制 方面的重要部件已被事先进行了严格、 完备的测试检验, 因此提高了现场安 装的太阳能热水器的安全使用性能。
此外,在第一实施例中示出的供水系统还包括其他一些装置来提供更多 的辅助功能。 例如, 其中的过滤装置 4是被设置在供水系统的进水端来过滤 水中的杂质, 水处理装置 3也是被设置在该进水端用于改善水质 (例如, 对 水体进行软化处理等), 而减压阀 7则是被用来在需要时降低进水压力。 如 图 3所示, 过滤装置 4、 水处理装置 3、 减压阀 7是被依次装设在第一管路 10中, 在该第一管路 10还同时示出了安装于其中的例如阀等更多的部件。 再请参考图 4, 该图是本实用新型的包括集成式水箱的太阳能热水器用 供水系统的第二实施例的组成示意图,在图 4中通过对泵装置 8进行局部剖 视而显示出了第二出水接口 17。 在第二实施例中, 它采用了更为更紧凑的 设计, 以进一步实现前述的本实用新型目的。 通过结合图 5中单独示出的该 集成式水箱, 可以更好地理解这种紧凑设计。
如图 5所示, 显然在示出的集成式水箱 1上还集成安装了减压阀 7 , 如 此进一步提供了集成度而有利于提升安装现场的整洁程度,使得安装后的设 备整体布置更为美观。关于第二实施例中太阳能热水器用供水系统的其他方 面, 由于与以上详细说明的第一实施例并不存在显著区别, 因此不再进行重 复叙述。
需要指出的是,根据具体应用场合以及用户需求, 还可以针对本实用新 型进行更多的灵活变形处理, 以下仅就其中一些情形进行示例性的说明, 这 些示例都不能被用作对本实用新型的任何限制。
例如, 在一个优选实施例中, 是在集成式水箱 1的外壳体上设置了安装 箱体 (未示出) , 该安装箱体的尺寸空间适于将阀装置和 /或泵装置、 以及 其他可能涉及到的零部件安装于其中。 此外, 优选地还可以将该安装箱体制 作成易于开启和封闭的结构,并且在更优选的实施例中采用透明材料来制成 该安装箱体的封闭盖,以便于可以从外部直接观察到装于其内部的零部件的 工作运行状况。 另外, 再优选地是通过一体成型工艺来使得安装箱体与集成 式水箱 1被制成一体。 当然, 通过焊接、 铆接等将该安装箱体整体固定在集 成式水箱 1也是可行的。
在另一个优选实施例中, 为了实现保温目的, 将集成式水箱 1制成内、 外两层, 并且在内层和外层之间填装保温材料。 这样的保温材料可以采用现 有技术中的任何适宜材料,由于该技术内容是广为该领域技术人员所理解和 熟知的, 因此不再赘述。
另外, 在以上所列举的各实施例中, 可以根据需要而将集成式水箱 1 设计并制造成圆柱体、 球体、 棱柱体或立方体形状。 当然, 在某些特殊情形 下,显然还允许将本实用新型的集成式水箱 1设计并制造成其他的各种可能 形状, 例如在整体或局部区域上具有不规则的形状, 这些都不会影响到如前 所述的本实用新型所具备的优点。 以上列举了若干具体实施例来详细阐明本实用新型的集成式水箱及包 括其的太阳能热水器用供水系统,这些个例仅供说明本实用新型的原理及其 实施方式之用, 而非对本实用新型的限制, 在不脱离本实用新型的精神和范 围的情况下, 本领域的普通技术人员还可以做出各种变形和改进。 因此, 所 有等同的技术方案均应属于本实用新型的范畴并为本实用新型的各项权利 要求所限定。

Claims

权 利 8要 求 书
1、 一种集成式水箱, 其设有至少一个进水接口和至少一个出水接口, 其特征在于, 所述集成式水箱上还装设有阀装置和 /或泵装置, 所述阀装置 与所述进水接口和 /或所述出水接口流体连通, 所述泵装置与所述出水接口 流体连通。
2、 根据权利要求 1所述的集成式水箱, 其特征在于, 所述集成式水箱 的外壳体上设有安装箱体, 所述阀装置和 /或泵装置被装设于所述安装箱体 中。
3、 根据权利要求 2所述的集成式水箱, 其特征在于, 所述安装箱体与 所述集成式水箱一体成型。
4、 根据权利要求 1所述的集成式水箱, 其特征在于, 所述集成式水箱 具有内层和外层, 所述内层和外层之间装设有保温材料。
5、 根据权利要求 1所述的集成式水箱, 其特征在于, 所述集成式水箱 呈圆柱体、 球体、 棱柱体或立方体形状。
6、 根据权利要求 1-5 中任一项所述的集成式水箱, 其特征在于, 所述 阀装置至少包括温控阀、 温度压力安全阀和减压阀中的一种。
7、 一种太阳能热水器用供水系统, 其特征在于, 所述供水系统包括根 据权利要求 1-6中任一项所述的集成式水箱。
8、 根据权利要求 7所述的太阳能热水器用供水系统, 其特征在于, 所 述供水系统还包括过滤装置,其设置于所述供水系统的进水端用于过滤水中 杂质。
9、 根据权利要求 7所述的太阳能热水器用供水系统, 其特征在于, 所 述供水系统还包括水处理装置,其设置于所述供水系统的进水端用于改善水 质。
10、 根据权利要求 7-9中任一项所述的太阳能热水器用供水系统, 其特 征在于, 所述集成式水箱的进水接口包括:
第一进水接口, 其通过第一管路与所述供水系统的进水端相连通; 第二进水接口, 其通过第二管路与集热装置的出水口相连通, 所述集热 装置用于收集太阳能来加热由所述集成式水箱向其供给的水。
1 1、 根据权利要求 10所述的太阳能热水器用供水系统, 其特征在于, 所述第二管路中设有用于排除该管路中气体的通气部件。
12、 根据权利要求 7-9中任一项所述的太阳能热水器用供水系统, 其特 征在于, 所述集成式水箱的出水接口包括:
第一出水接口, 其通过第三管路与所述供水系统的出水端相连通; 第二出水接口, 其通过第四管路与集热装置的进水口相连通, 所述集热 装置用于收集太阳能来加热由所述集成式水箱向其供给的水。
PCT/CN2011/002233 2010-12-31 2011-12-31 集成式水箱及包括其的太阳能热水器用供水系统 WO2012088770A1 (zh)

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