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    • 34. 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。
    • 39. 发明申请
    • POLYMER SOLUTION PREHEATER AND METHOD FOR PREHEATING SUCH SOLUTIONS
    • 聚合物溶液预热器及其预处理方法
    • WO0170367A9
    • 2003-02-06
    • PCT/US0140334
    • 2001-03-21
    • KOCH GLITSCH INC
    • STREIFF FELIX AWEPENER ANGELIA M
    • C08J3/00B01D1/02B01D3/06B01D19/00B01J19/00C08F6/00C08F6/06C08F6/10F28D7/00F28D7/08
    • F28D7/0091B01D1/02B01D3/06C08F6/003C08F6/005F28D7/08F28D7/087
    • A polymer devolatilization preheater (10) and a method for using the same to preheat a polymer/solvent solution. The preheater (10) includes an elongated, upright hollow vessel (12) defining a heating chamber (14). An inlet (16) is located adjacent the upper end (18) of the chamber (14) and an outlet (20) is located adjacent the lower end (22) of the chamber (14). A plurality of heating tube bundles (26, 28, 30) are mounted in the chamber (14), each bundle including a plurality of elongated serpentine heating tubes which are each arranged in a configuration having a major axis which extends across the chamber in a direction transverse to the longitudinal axis of the vessel. Each tube (32, 34) includes a plurality of curved tube portions (36) and a plurality of linking tube portions (38) which interconnect the curved tube portions. The tube portions (36) of each tube are all arranged in common plane that is arranged in essential parallelism relative to the longitudinal axis of the vessel and the tube configuration is essentially rectangular so as to present a pair of opposite edges disposed in essential parallelism relative to one another.
    • 聚合物脱挥发预热器(10)及其使用方法来预热聚合物/溶剂溶液。 预热器(10)包括限定加热室(14)的细长直立中空容器(12)。 入口(16)位于邻近室(14)的上端(18)处,并且出口(20)位于邻近室(14)的下端(22)处。 多个加热管束(26,28,30)安装在室(14)中,每个束包括多个细长的蛇形加热管,每个管状螺旋管加热管以具有长轴的构型布置,该长轴在一个 横向于容器纵轴的方向。 每个管(32,34)包括多个弯曲管部分(36)和多个连接管部分(38),它们连接弯曲的管部分。 每个管的管部分(36)都布置在相对于容器的纵向轴线以基本平行度布置的共同平面中,并且管构造基本上是矩形的,以便呈现出基本平行度相对设置的一对相对边缘 彼此。
    • 40. 发明申请
    • SALT MAKING APPARATUS
    • 盐制造设备
    • WO00007939A1
    • 2000-02-17
    • PCT/JP1998/003449
    • 1998-08-04
    • B01D1/02C01D3/06
    • C01D3/06B01D1/02
    • A salt making apparatus capable of efficiently boiling down brine and collecting salt without requiring a large installation space, whereby, by using a plurality of boilers (2-1 to 2-10) disposed in stages in a vertical direction, brine inside the boilers in all the stages is simultaneously boiled with a high-temperature steam flowing inside a steam piping (3) of each boiler, water is poured from a boiler (2-2) in the next upper stage whenever the water level of a boiler in the lowermost stage (2-1) drops by a predetermined quantity, and the drops of the water levels of boilers in the other stages are similarly supplemented by pouring water from boilers in the next upper stages so that brine can be boiled down always inside the boiler (2-1) in the lowermost stage at a boiling temperature and moreover, the salt from the boilers in the upper stages is successively built up to obtain brine of increasingly higher concentration.
    • 一种能够有效地将盐水煮沸并收集盐而不需要大的安装空间的制盐装置,由此通过使用在垂直方向上分级设置的多个锅炉(2-1至2-10),锅炉内的盐水 在每个锅炉的蒸汽管道(3)内,高温蒸汽同时沸腾的所有阶段同时煮沸,每当最下层锅炉的水位达到最低水平 阶段(2-1)下降预定量,并且在其他阶段的锅炉的水位的下降类似地通过从下一个上段的锅炉中倒出的水来补充,使得盐水可以总是在锅炉内部被煮沸 2-1)在沸腾温度的最下阶段,并且上级锅炉中的盐依次建成以获得浓度越来越高的盐水。