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    • 63. 发明公开
    • VERDAMPFER
    • EP2864728A1
    • 2015-04-29
    • EP12729640.8
    • 2012-06-26
    • Eberspächer Exhaust Technology GmbH & Co. KG
    • GAISER, Gerd
    • F28D9/00F28F13/08F28F3/12
    • F01K23/065F01K23/10F02G5/02F22B1/1807F28D9/0031F28D21/0003F28D2021/0064F28F3/12F28F13/08
    • The invention relates to an evaporator (1) for evaporating a liquid (4), particularly for a waste heat utilisation device of an internal combustion engine, comprising a plurality of channel plate arrangements (2) that are stacked in a stacking direction (3), with a gas path (6) being formed between each pair of adjacent channel plate arrangements (2) through which a gas (7) can be conducted, said gas being used to supply the heat that is required to evaporate the liquid (4). Each channel plate arrangement (2) contains a liquid inlet (8), a steam outlet (9), and a channel (11) which connects said liquid inlet (8) and steam outlet (9) together and which forms a repeatedly-deflecting evaporation path (12) for the liquid (4) that is to be evaporated. Increased efficiency can be achieved if the channel (11) in question has, at least in an evaporation zone (14) of said evaporation path (12), a flowable cross-section (18) which increases in the direction of the evaporating liquid (4) flow.
    • 用于蒸发液体(4)的蒸发器(1)技术领域本发明涉及一种用于蒸发液体(4)的蒸发器(1),尤其用于内燃机的废热利用装置,该蒸发器包括多个在堆叠方向(3)上堆叠的通道板装置(2) ,气路(6)形成在每对相邻的通道板装置(2)之间,通过该通道板装置可以传导气体(7),所述气体用于供应蒸发液体(4)所需的热量, 。 每个通道板装置(2)包含液体入口(8),蒸汽出口(9)和将所述液体入口(8)和蒸汽出口(9)连接在一起并且形成重复偏转的通道(11) 蒸发路径(12)用于待蒸发的液体(4)。 如果所讨论的通道(11)至少在所述蒸发路径(12)的蒸发区域(14)中具有沿蒸发液体方向增大的可流动横截面(18),则可以实现效率的提高 4)流程。
    • 66. 发明公开
    • High humidity gas turbine equipment
    • 高湿度燃气轮机设备
    • EP1860300A3
    • 2013-12-04
    • EP07010510.1
    • 2007-05-25
    • Hitachi, Ltd.
    • Sasaki, KenjiNoguchi, Yoshiki
    • F02C3/30F02C6/18F02C7/10
    • F02C3/30F02C6/18F02C7/08F22B1/1807F23L15/02F23L2900/00001Y02B30/52Y02E20/14Y02E20/348Y02P80/154Y02P80/156
    • The present invention provides high humidity gas turbine equipment including a compressor (1) compressing air, a combustor (2) combusting the compressed air and a fuel, a gas turbine (3) driven by the combustion gas, a generator (4) driven by the gas turbine (3) to generate power, a humidifier (5) humidifying the compressed air by directly contacting it with hot water, and a regenerative heat exchanger (6) heating the humidified compressed air by exhaust gas of the gas turbine (3) and feeding it to the combustor (2), heat exchangers (17, 18) generating hot water for the humidifier (5) utilizing a factory exhaust heat medium (A) from the outside, a boiler (7) generating steam to be supplied to the outside utilizing the exhaust gas of the gas turbine (3), and a boiler (20) generating steam to be supplied to the outside utilizing the compressed air discharged from the compressor (1).
    • 本发明提供包括压缩空气的压缩机(1),燃烧压缩空气和燃料的燃烧器(2),由燃烧气体驱动的燃气轮机(3),由燃烧气体驱动的发电机(4) 燃气轮机(3)发电;加湿器(5),其通过直接与热水接触来加湿压缩空气;以及再生热交换器(6),其用燃气轮机(3)的排气加热加湿后的压缩空气, 并将其供给到燃烧器(2),利用来自外部的工厂废热介质(A)为加湿器(5)产生热水的热交换器(17,18),锅炉(7) 利用燃气轮机(3)的废气的外部以及利用从压缩机(1)排出的压缩空气产生供给到外部的蒸汽的锅炉(20)。
    • 70. 发明公开
    • Combined cycle power generating system
    • Kombiniertes Kreislauf-Stromerzeugungssystem
    • EP2503110A1
    • 2012-09-26
    • EP11159911.4
    • 2011-03-25
    • Caterpillar Motoren GmbH & Co. KG
    • Reeh, Jens-Uwe
    • F01K3/18F01K13/00F01K23/06F01K23/10F01K25/08F22B1/18
    • F01K23/10F01K3/185F01K13/00F01K23/067F01K25/08F22B1/1807Y02E20/16Y02E20/18Y02E20/363
    • According to an aspect of the present disclosure, a combined cycle power generating system (100) may comprise at least one genset (130A,130B) for generating power having at least two waste heat sources; a direct organic Rankine cycle system (200) with a working medium, the direct organic Rankine cycle system (200) comprising a modular heat rejection system (230) and an organic rankine turbine module (210,410); wherein the modular heat rejection system (230) comprises a common vapor separator (232) and a boiler sub-system (234) associated to each of the at least two waste heat sources, and each boiler sub-system (234) is configured to transfer heat of the respective waste heat source to the working medium, and the vapor separator (232) is configured to derive a working medium gaseous phase from the working medium exiting each of the boiler sub-systems (234) and provide the working medium gaseous phase to the organic Rankine turbine module (210,410) for power generation.
    • 根据本公开的一个方面,组合循环发电系统(100)可以包括用于产生具有至少两个废热源的动力的至少一个发电机组(130A,130B) 具有工作介质的直接有机朗肯循环系统(200),所述直接有机朗肯循环系统(200)包括模块化散热系统(230)和有机液位涡轮机模块(210,410); 其中所述模块化排热系统(230)包括与所述至少两个废热源中的每一个相关联的公共蒸气分离器(232)和锅炉子系统(234),并且每个锅炉子系统(234)被配置为 将相应的废热源的热传递到工作介质,并且蒸汽分离器(232)构造成从离开每个锅炉子系统(234)的工作介质中导出工作介质气相,并提供工作介质气体 相到有机朗肯汽轮机模块(210,410)发电。