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    • 1. 发明申请
    • DEVICE AND METHOD FOR MIXING TWO FLUIDS
    • 用于混合两种流体的装置和方法
    • WO2012134293A1
    • 2012-10-04
    • PCT/NL2012/050212
    • 2012-03-30
    • HEATMATRIX GROUP B.V.POSTMA, RonaldSAKKO, RobertDIKHOFF, Hans ConstantVAN DEN BERG, Erik JanVAN DEN BERG, Bart Jan
    • POSTMA, RonaldSAKKO, RobertDIKHOFF, Hans ConstantVAN DEN BERG, Erik JanVAN DEN BERG, Bart Jan
    • B01F5/04B01F3/02F02M25/07
    • B01F5/0456B01F5/0493F02M26/32
    • A mixing device (10) for mixing a first fluid and a second fluid comprises a housing (12) which is provided with a first inlet (20) for the first fluid, a second inlet (27) for the second fluid, a mixing chamber (42) for mixing the first fluid and the second fluid into a mixture of the first fluid and the second fluid, and an outlet (26) for the mixture of the first fluid and the second fluid. The housing (12) is provided with a plurality of heat exchanger tubes (36) having tube walls (37) which are situated next to each other and extend substantially parallel to each other. The interiors of the tube walls (37) define elongate first channels (38). Each elongate first channel (38) comprises a first supply opening (65) and a first discharge opening (66,81). The first supply openings (65) are in fluid communication with the first inlet (20) for the first fluid. At least a number of the first discharge openings (66,81) are in fluid communication with the mixing chamber (42). The tube walls (37) of adjacent heat exchanger tubes (36) are connected to each other so as to define elongate second channels (58) on the exterior of the tube walls (37). Each elongate second channel (58) comprises a second supply opening (75) and a second discharge opening (76). The elongate second channels (58) are in fluid communication with the second inlet (27) for the second fluid and with the mixing chamber (42) by means of the second openings (75,76).
    • 用于混合第一流体和第二流体的混合装置(10)包括壳体(12),其设置有用于第一流体的第一入口(20),用于第二流体的第二入口(27),混合室 (42),用于将第一流体和第二流体混合成第一流体和第二流体的混合物,以及用于混合第一流体和第二流体的出口(26)。 壳体(12)设置有多个彼此相邻并且基本上彼此平行地延伸的具有管壁(37)的热交换器管(36)。 管壁(37)的内部限定细长的第一通道(38)。 每个细长的第一通道(38)包括第一供应开口(65)和第一排出口(66,81)。 第一供应开口(65)与用于第一流体的第一入口(20)流体连通。 至少多个第一排出口(66,81)与混合室(42)流体连通。 相邻的热交换器管(36)的管壁(37)彼此连接,以在管壁(37)的外部限定细长的第二通道(58)。 每个细长的第二通道(58)包括第二供应开口(75)和第二排放口(76)。 细长的第二通道(58)与用于第二流体的第二入口(27)和借助于第二开口(75,76)与混合室(42)流体连通。
    • 2. 发明申请
    • THERMOSIPHON EVAPORATOR
    • 恒温蒸发器
    • WO2010079148A1
    • 2010-07-15
    • PCT/EP2010/000186
    • 2010-01-08
    • HEATMATRIX GROUP B.V.POSTMA, RonVAN DEN BERG, BartSAKKO, RobertDIKHOFF, Hans Constant
    • POSTMA, RonVAN DEN BERG, BartSAKKO, RobertDIKHOFF, Hans Constant
    • B01D1/06F28D7/16
    • F28D7/1653B01D1/02B01D1/26B01D5/0075F28D3/02F28D7/0041F28D2021/0064F28F1/14F28F9/013F28F2275/085F28F2275/14
    • The invention relates to an evaporator (10) for heat exchange between fluids, comprising a housing (12) having at least one inlet (20; 27) and at least one outlet (26, 28; 29) for each fluid, the inlet and outlet for each fluid being connected to one another by a flow path (38; 58), the flow path (38) of a first fluid comprising multiple heat exchange modules (60) comprising at least one longitudinal hollow tube (36), wherein the modules (60) are arranged in a stack spaced apart from the housing (12) leaving free a gap (59), and wherein a module (60) is provided with at least one connector (50) for connecting to a co-operating connector of an adjacent module, such that the gap (59) between the housing and the stack defining at least a liquid recycle zone for containing the second fluid and a phase separation zone for separating a vapour phase and a liquid phase of the second fluid and the space (56) enclosed between adjacent modules in the stack defining a flow path (58) for a second fluid, parallel to the flow path (38) for the first fluid, are in fluid communication with each other.
    • 本发明涉及一种用于流体之间的热交换的蒸发器(10),包括:用于每个流体的至少一个入口(20; 27)和至少一个出口(26,28; 29)的壳体(12),所述入口和 每个流体的出口通过流动路径(38; 58)彼此连接,第一流体的流动路径(38)包括包括至少一个纵向中空管(36)的多个热交换模块(60),其中 模块(60)布置在与壳体(12)间隔开的堆叠中,留下空隙(59),并且其中模块(60)设置有至少一个连接器(50),用于连接到协作连接器 使得壳体和叠层之间的间隙(59)至少限定了用于容纳第二流体的液体循环区域和用于分离第二流体的气相和液相的相分离区域, 封闭在堆叠中的相邻模块之间的空间(56)限定用于第二f的流动路径(58) 平行于第一流体的流动路径(38)的流体彼此流体连通。