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    • 7. 发明申请
    • Dual-Pressure Dual-Compartment Fluid Tank
    • 双压双室液体罐
    • US20100170658A1
    • 2010-07-08
    • US12348165
    • 2009-01-02
    • William J. SeefeldtJoel D. Krause
    • William J. SeefeldtJoel D. Krause
    • F28D15/00B65D25/04
    • F28D1/0213F24D17/0031F24H1/20F24H9/0015F28D7/106F28D2020/0082F28D2020/0086F28F13/12
    • An improved dual-pressure dual-compartment tank for transferring heat energy between two solutions while physically isolating the solutions from each other is disclosed. The tank has one fluid compartment positioned within a second fluid compartment such that the transfer of heat energy between the compartments is facilitated. One of the compartments is structured to maintain a substantially higher pressure than the other compartment so that if a physical divider between the compartments were to fail, the lower pressure fluid would not contaminate the higher pressure fluid. Additionally, the divider may take a variety of shapes to improve fluid mixing by accelerating or decelerating the fluid, and/or to provide an amount of surface area between compartments that is inversely proportional to the local temperature gradient between the compartments. These designs may include shapes such as a cone, a corrugated cylinder, a corrugated cone, or a cone with an outer spiral for improving mixing, thermal transfer, or to simplify construction of the dual-compartment tank.
    • 公开了一种用于在两个溶液之间传递热能的改进的双压双室容器,同时物理上将溶液彼此分离。 容器具有位于第二流体隔室内的一个流体隔室,从而便于隔室之间的热能转移。 隔室中的一个被构造成保持比另一隔室显着更高的压力,使得如果隔室之间的物理分隔件失效,则低压流体不会污染高压流体。 此外,分隔器可以采取各种形状以通过加速或减速流体来改善流体混合,和/或提供与室之间的局部温度梯度成反比的隔室之间的一定量的表面积。 这些设计可以包括诸如圆锥体,波纹圆柱体,波纹锥体或具有用于改善混合,热传递或简化双室容器的结构的外部螺旋的锥体的形状。
    • 8. 发明申请
    • CONTROL DEVICE FOR CONSERVING ENERGY OF A WATER HEATER
    • 用于保持水加热器能量的控制装置
    • US20090090788A1
    • 2009-04-09
    • US12176766
    • 2008-07-21
    • Bernard ROQUES
    • Bernard ROQUES
    • F24H9/20F24D17/00
    • F24H1/20F24D2200/08F24D2200/12F24D2200/14F24D2200/15Y02B10/20Y02B10/70
    • A control device for conserving energy for heating water contained in a water heater (30) includes:an electronic detection device (21) for measuring the quantity of hot water remaining in the tank (2), the electronic detection device (21) including a capillary tube (10) containing a heat transfer fluid and an amplification device (15) placed outside the tank (2) of the water heater (30) and connected to an electronic control card (26), the amplification device (15) being suitable for transmitting a variation in resistance to the electronic control card (26) under the effect of the expansion of the fluid contained in the capillary tube (10),and control elements (50) connected to the electronic control card (26) for determining the hot water consumption profile of the users in order to control the period or periods of resumption of the heating of the water in the tank (2).
    • 一种用于节约用于加热水(30)中所含的水的能量的控制装置,包括:电子检测装置(21),用于测量储存罐(2)中残留的热水量,电子检测装置(21)包括: 包含传热流体的毛细管(10)和放置在热水器(30)的罐(2)外部并连接到电子控制卡(26)的放大装置(15),放大装置(15)适合 用于在包含在毛细管(10)中的流体膨胀的作用下传递对电子控制卡(26)的电阻变化,以及连接到电子控制卡(26)的控制元件(50),用于确定 用户的热水消耗曲线,以控制水箱(2)中水的恢复的恢复期间或周期。
    • 9. 发明授权
    • Dual fuel air conditioning circuit-based water heater
    • 双燃料空调电路式热水器
    • US07506616B2
    • 2009-03-24
    • US11680964
    • 2007-03-01
    • Clifford William Calvert
    • Clifford William Calvert
    • F24H1/00
    • F24H1/20F24D2200/04F24D2200/12
    • A fuel-fired water heater is coupled to an electrically powered air conditioning refrigerant circuit in a manner permitting water to be heated with either combustible fuel or electricity. In one embodiment a condenser piping section is externally coiled around the water heater tank, in direct thermally conductive contact therewith, and in another embodiment the condenser piping section is disposed in the interior of the tank and is coiled around the water heater flue in a laterally outwardly spaced relationship therewith. In various depicted arrangements thereof the other refrigerant circuit components are compactly supported on the water heater.
    • 燃料热水器以能够用可燃燃料或电加热的方式联接到电动空调制冷剂回路。 在一个实施例中,冷凝器管道部分在热水器箱周围外部盘绕,与其直接导热接触,并且在另一实施例中,冷凝器管道部分设置在罐的内部,并且围绕热水器烟道绕侧面 与其间隔开的关系。 在其各种所示的布置中,其他制冷剂回路部件紧凑地支撑在热水器上。