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    • 1. 发明授权
    • Absorber of absorption system refrigerator
    • 吸收系统冰箱吸收器
    • US06192704B1
    • 2001-02-27
    • US09381700
    • 1999-09-23
    • Naoki HiroYoshio OzawaKenji NasakoHiroyuki Hashimoto
    • Naoki HiroYoshio OzawaKenji NasakoHiroyuki Hashimoto
    • F25B1512
    • B01D53/18F25B37/00F25B2500/01F28D3/00
    • The absorber for use in absorption chillers of the present invention comprises a plurality of cooling water pipes 2 extending horizontally in the interior of the absorber chamber. A plurality of flat heat transfer plates 1 are spaced apart from one another and arranged horizontally in a vertical position, and the plurality of cooling water pipes 2 extend through these heat transfer plates 1 perpendicular thereto. The pitch Pd of the plates 1 is 3 to 15 mm. Each heat transfer plate 1 is integrally formed on its upper end face with an absorbent receptacle 10 V-shaped in cross section and extending longitudinally of the upper end face. The bottom portion of the receptacle 10 is formed with two rows of absorbent holes 11 positioned upwardly of respective surfaces of the plate 1. The holes 11 of each row are spaced apart from one another longitudinally of the plate 1 and each have an outlet adjoining the surface of the plate 1. This enables an absorber to have a higher absorbing capacity than conventional absorbers.
    • 用于本发明的吸收式制冷机的吸收器包括在吸收室的内部水平延伸的多个冷却水管2。 多个扁平传热板1彼此间隔开并且在竖直位置上水平布置,并且多个冷却水管2穿过与其垂直的这些传热板1。 板1的间距Pd为3〜15mm。 每个传热板1在其上端面上一体地形成有横截面为V形的吸收容器,并且在上端面的纵向延伸。 容器10的底部形成有两排位于板1的相应表面向上的吸收孔11.每排的孔11彼此间隔开板1的纵向,并且每个具有出口 这使得吸收体具有比常规吸收体更高的吸收能力。
    • 2. 发明授权
    • Thermal utilization system using hydrogen absorbing alloys
    • 使用氢吸收合金的热利用系统
    • US5174367A
    • 1992-12-29
    • US490999
    • 1990-03-09
    • Kenji NasakoTakahiro YonesakiAkio FurukawaIkuo YonezuMasakazu MorotoNaoki HiroToshihiko Saito
    • Kenji NasakoTakahiro YonesakiAkio FurukawaIkuo YonezuMasakazu MorotoNaoki HiroToshihiko Saito
    • F02P17/02F25B17/12
    • F25B17/12F02P17/02Y02B30/62
    • In order to make a thermal utilization system operable in a stable and efficient condition regardless the variation of the operating heat source used, the system is provided with three hydrogen absorbing alloys having different pressure-temperature characteristics, wherein absorption/desorption of hydrogen gas is performed in two steps, i.e. the hydrogen gas desorbed from a first alloy is absorbed by a second alloy at a predetermined pressure, and is absorbed by the third alloy at a higher pressure after it is desorbed from the second alloy in a case when the temperature of the operating heat source is low, while the hydrogen gas desorbed from the first alloy is directly transported from the first alloy to the third alloy to be absorbed there when the temperature of the operating heat source is high. Alternatively, two hydrogen absorbing alloys having different pressure-temperature characteristics are used in such a way that, when the temperature of the operating heat source is low, the hydrogen gas desorbed from the first alloy is pumped to the second alloy to be absorbed there, but the gas is directly transported from the first alloy to the second alloy to be absorbed there when the temperature of the operating heat source is high.
    • 为了使热利用系统在稳定且有效的条件下可操作,无论使用的工作热源的变化如何,该系统都具有三种具有不同压力 - 温度特性的吸氢合金,其中进行氢气的吸收/解吸 在两个步骤中,即从第一合​​金解吸的氢气被第二合金以预定压力吸收,并且在第二合金从第二合金解吸后被第三合金吸收,在第二合金的温度 工作热源低,而从第一合金解吸的氢气直接从第一合金输送到第三合金,当工作热源的温度高时被吸收。 或者,使用具有不同压力 - 温度特性的两个吸氢合金,使得当操作热源的温度低时,从第一合金解吸的氢气被泵送到第二合金以在其中被吸收, 但是当操作热源的温度高时,气体从第一合金直接输送到第二合金,以被吸收到那里。
    • 4. 发明授权
    • Heat exchanger
    • 热交换器
    • US5676202A
    • 1997-10-14
    • US547118
    • 1995-10-23
    • Koji AkashiNaoki HiroKenji NasakoTeruhiko ImotoKoichi NishimuraIkuo Yonezu
    • Koji AkashiNaoki HiroKenji NasakoTeruhiko ImotoKoichi NishimuraIkuo Yonezu
    • F28D20/00F28D15/00
    • F28D20/003Y02E60/142Y02E70/30
    • In a heat exchanger according to the present invention, there are provided a filling container having a first containing section containing a hydrogen-absorbing metal material for middle or high temperature, a second containing section containing a hydrogen-absorbing metal material for low temperature which is higher in equilibrium hydrogen pressure at the same temperature than the hydrogen-absorbing metal material for middle or high temperature, and a hydrogen passage for moving hydrogen between the first containing section and the second containing section; a guiding section having a heating section provided with heating means for heating the filling container, a heat radiating section provided with a heat exchanging section for radiating heat generated in the filling container outward, and a heat absorbing section provided with a heat exchanging section for cooling the outside by absorption of heat in the filling container; and moving means for moving the filling container back and forth in the guiding section, moving the first containing section back and forth between the heat radiating section and the heating section, and moving the second containing section back and forth between the heat absorbing section and the heat radiating section.
    • 在根据本发明的热交换器中,提供一种填充容器,该填充容器具有包含用于中或高温的吸氢金属材料的第一容纳部分,含有用于低温的吸氢金属材料的第二容纳部分, 在与中温或高温吸氢金属材料相同的温度下的平衡氢压高,在第一容纳部分和第二容纳部分之间移动氢气的氢通道; 具有加热部的引导部,该加热部设置有用于加热填充容器的加热装置,设置有用于将向外填充容器内产生的热量散热的热交换部的散热部,以及具有用于冷却的热交换部的吸热部 外部通过吸收填充容器中的热量; 以及移动装置,用于在引导部分中来回移动填充容器,使第一容纳部分在散热部分和加热部分之间来回移动,并且使第二容纳部分在吸热部分和 散热部分。