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    • 2. 发明申请
    • CUVE SOUPLE DE CHAUFFE-EAU ET CHAUFFE-EAU COMPORTANT UNE TELLE CUVE
    • 柔性加热器水箱和水加热器,包括这样一个罐
    • WO2017017334A1
    • 2017-02-02
    • PCT/FR2016/051791
    • 2016-07-12
    • INNOTECHNO
    • MERLE, Didier
    • F24H1/18F24H1/06F24H1/20F28D20/00B65D88/16
    • F24H1/181F24H1/06F24H1/202F28D20/0034F28F21/06
    • Cuve (1) souple de chauffe-eau dont l'enveloppe (10) comprend au moins une membrane souple, flexible, étanche et continue, et dont une partie est réalisée en un matériau résistant à une température d'au moins 70°C et une autre partie est résistante en position opérationnelle à une pression interne de la cuve d'au moins six bars, lequel seul orifice de la membrane est fixé (13) d'une manière étanche sur tout le contour d'une couronne bride (5) apte à recevoir, d'une manière étanche et séparable, une platine support au moins d'un corps de chauffe, d'une entrée d'eau froide et d'une sortie d'eau chaude, la partie intérieure (6) de la dite couronne bride (5) constituant la seule ouverture de l'enveloppe (10), et laquelle membrane étant apte à être repliée contre cette bride (5) en position de stockage et de 20 transport.
    • 本发明涉及柔性热水器箱(1),其中壳体(10)包括至少一个密封的,连续的柔性膜,并且其中一个部分由能够承受至少70℃的温度的材料制成 并且另一部分能够在操作位置承受罐内至少六个杆的压力,所述膜的单个开口以密封的方式附接到能够接收的法兰环(5)的整个轮廓上 以密封且可分离的方式设置用于支撑至少一个加热体,冷水入口和热水出口的板,所述凸缘环(5)的内部(6)构成壳体(10)的唯一开口 ),并且所述膜能够在储存和运输位置处折叠抵靠所述凸缘(5)。
    • 3. 发明申请
    • SOLAR OPERATED DOMESTIC WATER HEATING SYSTEM
    • 太阳能操作的国内水加热系统
    • WO2015140787A1
    • 2015-09-24
    • PCT/IL2015/050271
    • 2015-03-15
    • MORENO, Benjamin
    • MORENO, Benjamin
    • F24H1/20
    • H02S10/30F24D17/0068F24D2200/02F24D2200/08F24H1/202F24H2240/09H02S40/32H02S40/34H05B1/0283Y02B10/70
    • The invention relates to a solar water heating system which comprises: (a) a photovoltaic array for converting sun radiation to DC voltage; (b) a water tank which comprises a single heating element; and (c) a connection box receiving a first input from said photovoltaic array, and a second input from an AC residential supply, and outputting a combined voltage to said single heating element at the water tank, wherein said combined output voltage is a combination of one or more of- (i) a full rectified signal resulting from said AC residential supply passing through a full rectification semi-conductor element; and (ii) a DC voltage resulting from said DC voltage from the photo voltaic array passing through a unidirectional semi-conductor element.
    • 本发明涉及一种太阳能热水系统,包括:(a)用于将太阳辐射转换为直流电压的光伏阵列; (b)包含一个加热元件的水箱; 以及(c)从所述光伏阵列接收第一输入的接线盒和来自AC住宅电源的第二输入端,并且将汇合的电压输出到所述水箱上的所述单个加热元件,其中所述组合输出电压是 一个或多个 - (i)由所述交流住宅电源通过全整流半导体元件产生的完整整流信号; 和(ii)由通过单向半导体元件的光伏阵列的所述直流电压产生的直流电压。
    • 4. 发明申请
    • AN ELECTRICAL HEATING DEVICE
    • 电加热装置
    • WO2015044793A1
    • 2015-04-02
    • PCT/IB2014/058151
    • 2014-01-09
    • LOMBARD, ThomasVAN WYK, Izak, Johannes
    • LOMBARD, ThomasVAN WYK, Izak, Johannes
    • H05B3/82F24H1/20F24H1/18
    • F24H1/202F24D2200/02F24H9/1818H05B3/82
    • This invention relates to an electrical heating device 10 and to an installation including such a device 10. The heating device 10 is for use in a heating apparatus, for e.g. a geyser and includes: a mounting formation 12 for removably mounting the device 10 to the geyser; a first heating element 14.1 which is connected to the mounting formation 12 and which includes a first pair of electrical connection terminals 20.1 which are connectable to a first power supply; and a second heating element 14.2 which includes a second pair of electrical connection terminals 20.2 which are connectable to a second power supply, independent of the first power supply. The first and second heating elements 14 are electrically insulated from each other in a configuration in which the first and second power supplies are simultaneously connectable to the respective heating elements 14.
    • 本发明涉及电加热装置10和包括这种装置10的装置。加热装置10用于例如加热装置。 一个间歇泉并且包括:用于将装置10可拆卸地安装到间歇泉的安装结构12; 第一加热元件14.1,其连接到安装结构12并且包括可连接到第一电源的第一对电连接端子20.1; 以及第二加热元件14.2,其包括可连接到第二电源的第二对电连接端子20.2,第二对电连接端子独立于第一电源。 第一和第二加热元件14在第一和第二电源可以同时连接到各个加热元件14的构造中彼此电绝缘。
    • 9. 发明申请
    • AN IMPROVED WATER HEATER
    • 改进的水加热器
    • WO2009040558A3
    • 2012-06-21
    • PCT/GB2008003307
    • 2008-09-26
    • BAXI HEATING UK LTDHUNT ANDREW
    • HUNT ANDREW
    • F24H1/20H05B3/42H05B3/82
    • F24H1/202H05B3/42H05B3/82H05B2203/021
    • An electric heating element (20), the element (20) comprising; an electrically non-conducting support comprising a plurality of segments (22), each segment (22) being moveably connected to two neighbouring segments (22) and capable of one dimensional motion in respect thereto, the outer surface of each segment (22) including a ridge (27) extending helically about the segment (22), the ridges (27) of neighbouring segments (22) co-operating together to form a helical channel a first electrically resistive wire (21) heating portion helically wound about the support within said helical channel, the segments (22) defining a further channel along the axis of the helix, said further channel retaining a second electrically resistive wire (21) heating portion spatially separated from the first resistive wire portion, the first and second portions being operatively connected to define an electrical pathway.
    • 电加热元件(20),所述元件(20)包括: 包括多个段(22)的电非导电支撑件,每个段(22)可移动地连接到两个相邻段(22)并且能够相对于其相对于一维运动,每个段(22)的外表面包括 在节段(22)周向螺旋地延伸的脊(27),相邻节段(22)的脊(27)协同在一起以形成螺旋通道,第一电阻线(21)加热部分螺旋地卷绕在支撑件周围 所述螺旋通道,所述段(22)沿着所述螺旋的轴线限定另一通道,所述另一通道保持与所述第一电阻丝线部分在空间上分离的第二电阻线(21)加热部分,所述第一和第二部分可操作地 连接以定义电路径。
    • 10. 发明申请
    • WATER HEATING SYSTEM
    • 水加热系统
    • WO2011001179A2
    • 2011-01-06
    • PCT/GB2010/051084
    • 2010-06-30
    • BENNETT, Duncan Alexander
    • BENNETT, Duncan Alexander
    • F24H1/0018F24H1/202F24H9/124
    • Disclosed is a water heating system comprising: a hot water storage tank having a first port located in a lower region of the tank and a second port located in an upper region of the tank; a water flow pathway extending from the first port through a heating chamber to the second port; electrical heating means (for example a heating element) arranged to heat water within the heating chamber, when required, so that water within the water heating system will circulate from the first port to the second port through the heating chamber, by convection, when water is not drawn from the water heating system; a water supply outlet communicating with the water flow pathway intermediate the heating chamber and the second port; and a check valve arranged to restrict the flow of water out of the hot water storage tank by way of the second port when water is drawn from the water heating system through the water supply outlet. Therefore, when water is drawn from the system, the flow of water from the tank to the water supply outlet is restricted, and a much higher proportion of water passing through the water supply outlet has flowed directly from the heating chamber. Since water received at the water supply outlet directly from the heating chamber will have been more recently in contact with the electrical heating means than water received from the hot water storage tank via the second port, less electrical heating energy is required in order that water at a given temperature may be drawn from the system, or water drawn from the system will be at a higher temperature, than water drawn from a system lacking a check valve. Therefore, the system of the present invention is more efficient than a system lacking a check valve.
    • 公开了一种水加热系统,包括:热水储罐,其具有位于所述罐的下部区域中的第一端口和位于所述罐的上部区域中的第二端口; 从第一端口通过加热室延伸到第二端口的水流通道; 电加热装置(例如加热元件),其被设置为当需要时加热加热室内的水,使得水加热系统内的水将通过对流在第一端口通过加热室循环,当水 不是从水加热系统中抽出来的; 与所述加热室和所述第二端口之间的水流路连通的供水口; 以及止回阀,其设置成当从水加热系统通过供水口抽出水时,通过第二端口将水的流量限制在热水储存箱之外。 因此,当从系统中抽出水时,从罐到供水出口的水流受到限制,并且通过供水口的水的比例高得多地直接从加热室流出。 由于直接从加热室接收在供水口处的水将比最近通过第二端口从热水储存罐接收的水更接触电加热装置,所以需要更少的电加热能量以使水在 可以从系统抽出给定的温度,或者从系统中抽出的水将处于比缺少止回阀的系统抽取的水更高的温度。 因此,本发明的系统比缺少止回阀的系统更有效率。