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    • 75. 发明授权
    • Hot-water storage type hot-water supply apparatus operating under a
natural circulation principle
    • 热水储存式热水供应装置以自然循环原理运行
    • US4592504A
    • 1986-06-03
    • US233615
    • 1981-02-03
    • Tadashi Yoshida
    • Tadashi Yoshida
    • F24H1/18F22B1/02
    • F24H1/186
    • A hot-water storage type hot-water supply apparatus operates under a natural circulation principle wherein hot-water is accumulated within a hot-water tank by circulating cold water or hot-water contained therein through a first circulation pipe connected to the bottom thereof, a heat exchanger, and a second circulation pipe. A thermal valve is mounted in the second circulation pipe downstream of the heat exchanger such that its opening area is varied depending upon the hot-water temperature in the second circulation pipe so as to maintain the temperature of the hot-water flowing out of the heat exchanger at a substantially constant temperature, resulting in the temperature distribution of the hot-water within the tank at the time of its boiling being kept substantially constant throughout the storage tank instantaneously at the start of the boiling of the hot-water.
    • 热水储存型热水供给装置在自然循环原理下进行操作,其中热水通过与其底部连接的第一循环管循环冷凝水或其中所含热水而在热水箱内积聚, 热交换器和第二循环管。 热阀安装在热交换器下游的第二循环管道中,使得其开口面积根据第二循环管道中的热水温度而变化,以保持热水从热量流出的温度 交换器在基本上恒定的温度下,导致在沸腾时罐内的热水温度分布在热水沸腾开始时瞬间保持在整个储罐中基本恒定。
    • 78. 发明授权
    • Assembled battery system with cooling member between adjacent cells
    • 组装的电池系统与相邻电池之间的冷却构件
    • US08652676B2
    • 2014-02-18
    • US13028410
    • 2011-02-16
    • Katsunori NishimuraMasao ShimizuTadashi Yoshida
    • Katsunori NishimuraMasao ShimizuTadashi Yoshida
    • H01M10/50
    • H01M10/613H01M10/647H01M10/6557H01M10/6567
    • The assembled battery system according to the present invention includes at least two non-aqueous electrolyte secondary cells, each including a positive electrode that occludes and emits lithium ions, a negative electrode that occludes and emits lithium ions, and a non-aqueous electrolyte comprising an electrolyte dissolved in a non-aqueous solvent, all received in a parallelepiped cell case. These cells are arranged so that each larger area side of an adjacent pair of the parallelepiped cell case faces in parallel one another. A cooling member with a cooling medium flow conduit is provided between each opposing pair of larger area cell case sides, and cooling medium flowing in this conduit directly contacts the sides of the parallelepiped cell cases that define the two opposite sides of the cooling conduit.
    • 根据本发明的组电池系统包括至少两个非水电解质二次电池,每个非水电解质二次电池包括封闭并释放锂离子的正电极,封闭并释放锂离子的负电极,以及非水电解质, 电解质溶解在非水溶剂中,全部接收在平行六面体电池壳体中。 这些电池被布置成使得相邻的一对平行六面体电池壳体的每个较大的面积面彼此平行。 具有冷却介质流动管道的冷却构件设置在每对相对的较大面积单元壳体侧之间,并且在该导管中流动的冷却介质直接接触限定冷却导管两侧的平行六面体电池壳体的侧面。