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    • 2. 发明授权
    • Air-cooled absorption heating and cooling system
    • 风冷吸收式加热和冷却系统
    • US4748830A
    • 1988-06-07
    • US17559
    • 1987-02-24
    • Tomihisa OouchiKyoji KohnoYoshifumi KunugiKenzi Machizawa
    • Tomihisa OouchiKyoji KohnoYoshifumi KunugiKenzi Machizawa
    • F25B15/02F25B37/00F25B15/00
    • F25B37/00F25B15/02Y02B30/62
    • First path flow passage is formed so as to lead the absorbent solution in the heat exchanger (7; 107) or the receive pan (24; 118a) disposed below a first path absorption process into a cooling air upper stream side of the first path absorption process through a conduit (30). Subsequent path flow passage is formed so as to lead the absorbent solution in the receive pan (24; 120) disposed below a subsequent path absorption process into the cooling air upper stream side of same path absorption process. The absorbent solution flow amount of each vertical tubes group (10; 158) can be obtained larger irrespective of the absorbent solution circulation flow amount for the refrigeration cycle. The dry portions of the vertical tube (10; 158) caused due to the storage of the absorbent solution circulation flow amount can be prevented.
    • 第一路径流路形成为将设置在第一路径吸收处理下方的热交换器(7; 107)或接收盘(24; 118a)中的吸收剂溶液引导到第一路径吸收的冷却空气上游侧 通过导管(30)处理。 形成随后的路径流动通道,以将设置在随后的路径吸收过程下方的接收盘(24; 120)中的吸收剂溶液引导到相同路径吸收过程的冷却空气上游侧。 无论制冷循环的吸收剂溶液循环流量如何,每个垂直管组(10; 158)的吸收剂溶液流量可以获得更大。 可以防止由于吸收剂溶液循环流量的存储引起的垂直管(10; 158)的干燥部分。
    • 7. 发明授权
    • Absorption water heater/chiller and high temperature regenerator therefor
    • 吸收式热水器/冷水机组及高温再生器
    • US06470702B2
    • 2002-10-29
    • US09814713
    • 2001-03-23
    • Yasushi FunabaNorihiro ItouTomihisa OouchiSatoshi MiyakeMichiyuki Uchimura
    • Yasushi FunabaNorihiro ItouTomihisa OouchiSatoshi MiyakeMichiyuki Uchimura
    • F25B3300
    • F23M9/10F23C2203/10F25B15/06F25B33/00F25B2333/002F25B2333/003F25B2500/01Y02E20/366
    • An absorption water heater/chiller using lithium bromide as an absorbent and water as a refrigerant, and a high temperature regenerator therefor. The high temperature regenerator is provided with a combustion chamber defined by an inner tube (2) on the side of a blowout port of a burner (4B), from which a combustion gas is blown out. A solution is received in a liquid chamber, which extends on upper and lower sides of the combustion chamber and is defined by an outer tube (1). A refrigerant steam outflow passage (8) is formed in an upper portion of the outer tube, and gas discharge passages (13, 14) are formed at an end portion of the combustion chamber opposed to the burner. A plurality of solution tubes (3) providing communication between the liquid chamber portions on the upper and lower sides of the combustion chamber extend through the combustion chamber. The plurality of solution tubes are roughly divided into a group (3A) provided in flame of the burner, and a group (3B) provided away from the flame of the burner. The two groups are spaced from each other by 10-100 mm. Thus reduction of Nox is achieved and generation of CO is suppressed.
    • 使用溴化锂作吸收剂和水作为制冷剂的吸收式热水器/冷却器及其高温再生器。 高温再生器设置有由燃烧器(4B)的吹出口侧的内管(2)限定的燃烧室,从其吹出燃烧气体。 溶液被容纳在液体室中,液体室在燃烧室的上侧和下侧延伸并由外管(1)限定。 在外管的上部形成有制冷剂蒸汽流出通道(8),在与燃烧器相对的燃烧室的端部形成有排气通路(13,14)。 提供在燃烧室的上侧和下侧之间的液体室部分之间的连通的多个溶液管(3)延伸穿过燃烧室。 多个溶液管大致分为设置在燃烧器的火焰中的组(3A)和远离燃烧器的火焰的组(3B)。 两组彼此间隔10-100毫米。 因此实现了Nox的还原,抑制了CO的产生。
    • 8. 发明授权
    • Vapor generator
    • 蒸气发生器
    • US4499859A
    • 1985-02-19
    • US495584
    • 1983-05-18
    • Akira NishiguchiSanpei UsuiTomihisa OouchiKazumi Iwai
    • Akira NishiguchiSanpei UsuiTomihisa OouchiKazumi Iwai
    • F22B7/06F25B33/00F22B5/02
    • F25B33/00F22B7/06F25B2333/003
    • A vapor generator for use in, for example, an absorption type water cooler or heater. The vapor generator having a burner section and a boiler section, the boiler section being constituted by an outer casing, an inner casing disposed in the outer casing, and a multiplicity of solution tubes attached in rows to the inner surfaces of wall of the inner casing so as to extend substantially vertically. The interior of the tubes is in communication with a space accommodating a medium to be heated and defined between the inner casing and outer casing. A multiplicity of fins are attached to the inner surfaces of walls of the inner casing in the area around the flame formed by the burner section so as to increase the rate of heat transfer to the medium in the above-mentioned space from the gas in the combustion chamber. The axis of each of the solution tubes in a second row is offset from the line which extends in parallel with the flow of gas from the midst of the gap between two adjacent solution pipes in a first row located upstream from the second row as viewed in the direction of flow of gas, so that overheating of the central portion of each solution tube in the second row is avoided advantageously.
    • 用于例如吸收型水冷却器或加热器的蒸汽发生器。 蒸汽发生器具有燃烧器部分和锅炉部分,所述锅炉部分由外壳,设置在外壳中的内壳和多个溶液管组成,所述溶液管与所述内壳的壁的内表面成行 以便基本垂直地延伸。 管的内部与容纳要加热和限定在内壳和外壳之间的介质的空间连通。 在由燃烧器部分形成的火焰周围的区域中,多个翅片附接到内壳体的壁的内表面,以便增加从上述空间中的介质到介质中的传热速率 燃烧室。 在第二排中的每个溶液管的轴线偏离与从位于第二排上游的第一排中的两个相邻溶液管之间的间隙中间的气体流平行延伸的管线, 气体的流动方向,从而有利地避免了第二排中每个溶液管的中心部分的过热。