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    • 1. 发明公开
    • Thermal power generator
    • 耐热牛皮纸生产商。
    • EP0649985A1
    • 1995-04-26
    • EP94305328.0
    • 1994-07-20
    • SAGA UNIVERSITY
    • Uehara, HaruoIkegami, Yasuyuki
    • F03G7/05F01K25/06F01K25/08
    • F03G7/05F01K25/065F01K25/08Y02E10/34
    • The present invention relates to a thermal power generator for generating electric power by utilizing a high heat source and a low heat source, particularly aims to improve a power generation effect by providing an evaporator, a vapor-liquid separator, and an absorber and a regenerator, to increase thermal efficiency of an evaporator and a condenser, and to reduce cost for building apparatuses.
      A thermal power generator comprising an evaporator (8) for heat-exchanging between a high heat source fluid supplied from a high heat source pump (1) and a cold working fluid supplied from a cold working fluid pump (4) and a main condensation tank (19) connected to the low heat source pump for supplying a low heat source fluid, a vapor-liquid separator (9), a plurality of turbines (10,14) and generators (5,6), an absorber (15) connected to the latter stage of said turbine (14) for heat-exchanging a regenerated working fluid, a regenerator (11) for receiving a liquid separated by said separator (9) and heat-exchanging the separated liquid with a cold working fluid, a heater (12) for heat-exchanging a fluid discharged from said first stage turbine (10) with the cold working fluid, a pipe line having a pump (2) for feeding the cold working fluid to said heater regenerator (11) and evaporator (8), thereby vapor-liquid separating a fluid evaporated and vaporized the cold working fluid with a high heat source fluid by the separator (9), sending only the high heat vaporized working fluid to the turbine (10), providing at least two stages of a generating system, heat-exchanging the fluid discharged from the final stage turbine (14) with the cold working fluid in the absorber (15) and the main condensation tank (19), and circulating the recondensed cold working fluid through the cooling pipe line.
    • 本发明涉及一种利用高热源和低热源发电的火力发电机,其目的在于提供一种蒸发器,气 - 液分离器和吸收器以及再生器 ,以提高蒸发器和冷凝器的热效率,并且降低建筑设备的成本。 一种火力发电机,包括用于在从高热源泵(1)供应的高热源流体与从冷工作流体泵(4)供应的冷工作流体和主冷凝罐之间进行热交换的蒸发器(8) (19),连接到用于供应低热源流体的低热源泵,气液分离器(9),多个涡轮机(10,14)和发电机(5,6),连接的吸收器(15) 到所述涡轮机(14)的后段,用于对再生的工作流体进行热交换;再生器(11),用于接收由所述分离器(9)分离的液体,并将分离的液体与冷加工流体进行热交换;加热器 (12),用于将从所述第一级涡轮机(10)排出的流体与所述冷加工流体进行热交换;管路,具有用于将所述冷加工流体供给到所述加热器再生器(11)和蒸发器(8)的泵(2) ),从而汽相 - 液体分离蒸发并蒸发冷工作流体的流体 通过分离器(9)的高热源流体,仅将高热汽化的工作流体仅发送到涡轮机(10),提供至少两级的发电系统,对从最终级涡轮机(14)排出的流体进行热交换 )与吸收器(15)和主冷凝罐(19)中的冷工作流体一起循环,再循环的冷加工流体通过冷却管路。
    • 3. 发明公开
    • Energy converter
    • Energieumwandler
    • EP0703420A2
    • 1996-03-27
    • EP95850163.7
    • 1995-09-19
    • SAGA UNIVERSITY
    • Ikegami, YasuyukiUehara, Haruo
    • F25B11/02F25B25/02F25B41/00
    • F25B25/02F25B11/02F25B41/00F25B2400/141Y02E10/34
    • An energy converter comprising an evaporator (4) for heat-exchange between a low heat source (1) and a working fluid, a compressor (5) connected to a fluid discharge side of the evaporator (4) for compressing a discharge fluid, a condensor (6) connected to a discharge side of the compressor (5) for thermal exchange between the working fluid discharged from the compressor (5) and a high heat source (2), a vapor-liquid separator (7) connected to a discharge side of the condensor (6), an expansion device (10) connected to a vapor discharge side of the vapor-liquid separator (7) for expansion of a discharged vapor, a reducing valve (8) connected to a liquid discharge side of the vapor-liquid separator (7) for reducing a liquid, a mixer (9) or an absorber for mixing an expanded vapor from the expansion device (10) with a reduced liquid from the reducing valve (8), and a heat exchange cycle connected by piping (3) for evaporating a discharge fluid of the mixer (9) or the absorber with the evaporator (4).
    • 一种能量转换器,包括用于在低热源(1)和工作流体之间进行热交换的蒸发器(4),连接到用于压缩排出流体的蒸发器(4)的流体排放侧的压缩机(5) 连接到压缩机(5)的排出侧的冷凝器(6),用于在从压缩机(5)排出的工作流体与高热源(2)之间进行热交换;气 - 液分离器(7) 冷凝器(6)的一侧,连接到用于膨胀排出的蒸气的气液分离器(7)的蒸汽排放侧的膨胀装置(10),连接到排出侧的液体排出侧的减压阀 用于还原液体的气液分离器(7),用于将来自膨胀装置(10)的膨胀蒸汽与来自减压阀(8)的还原液混合的混合器(9)或吸收器,以及连接有热交换循环 通过用于蒸发混合器(9)或吸收器的排出流体的管道(3) (4)。