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    • 72. 发明授权
    • Air cooled vapor condenser module
    • 空气冷却蒸汽冷凝器模块
    • US3800861A
    • 1974-04-02
    • US3800861D
    • 1969-12-05
    • GEN ELECTRIC
    • NEUGEBAUER FFLITNER DLA HAYE P
    • F28B1/06
    • F28B1/06F28B2001/065Y10S165/222Y10S261/11
    • A module air cooled condenser with two generally vertical rows of horizontally extending heat exchanger tubes has an inlet tube sheet comprised of a structural member or a pair of structural members and a pair of outlet tube sheets to which are attached condensate headers. The module is appropriately enclosed on the top and frontal areas by sheet metal to provide an air plenum for the air flow which passes across the tube bundles from the fan mounted below the air plenum chamber. In another embodiment an additional row of tubes is provided whereby a reverse flow of vapor is maintained in order to decrease the occurrence of freeze up. In a further embodiment directed to freeze protection, all of the heat exchanger tubes slope downwardly toward the inlet tube sheet thereby having the condensate in contact with vapor at all times.
    • 具有两个大致垂直排的水平延伸的热交换器管的模块空气冷却冷凝器具有由结构构件或一对结构构件和一对出口管板组成的入口管板,其连接有冷凝物集管。 模块通过金属板适当地封闭在顶部和正面区域上,以便为安装在空气增压室下方的风扇穿过管束提供空气通道。 在另一个实施例中,提供另外一排管,由此维持蒸汽的逆流以减少冻结的发生。 在针对冻结保护的另一实施例中,所有热交换器管向下朝向入口管板倾斜,从而使冷凝物始终与蒸气接触。
    • 75. 发明公开
    • White smoke reducing system and method of recovering waste heat and water using the same
    • 系统和Verfahren zurRückgewinnungvonAbwärmeund Abwasser damit
    • EP2749832A2
    • 2014-07-02
    • EP13172922.0
    • 2013-06-19
    • Cho, Kil HwanCho, Han Ule
    • Cho, Kil HwanCho, Han Ule
    • F28F9/02F28D9/00F28D21/00
    • F28D7/0083F23J2219/70F24D2200/18F24H8/006F28B1/06F28B2001/065F28D9/0093F28D21/0003F28F9/0209Y02B30/106
    • Disclosed therein are a white smoke reducing system and a method of recovering waste heat and water using the white smoke reducing system. The white smoke reducing system includes a discharge gas inflow pipe, a water recovery part, a sensible heat exchanger, a first latent heat exchanger, a second latent heat exchanger, a steam separator, a discharge part, a circulation duct, and a mixing duct.
      The method of recovering waste heat and water includes a first step of supplying exhaust gas to the water recovery part, a second step of supplying the exhaust gas of the water recovery part to the sensible heat exchanger, a third step of supplying the exhaust gas of the sensible heat exchanger to the first latent heat exchanger, a fourth step of supplying the exhaust gas of the first latent heat exchanger to the second latent heat exchanger, a fifth step of supplying the exhaust gas of the second latent heat exchanger to the steam separator; and a sixth step of supplying the exhaust gas of the steam separator to the discharge part.
    • 其中公开了一种白烟减少系统和使用白烟减少系统回收废热和水的方法。 白烟降低系统包括排出气体流入管,水回收部,显热交换器,第一潜热交换器,第二潜热交换器,蒸汽分离器,排出部,循环管和混合管 。 回收废热和水的方法包括向废水回收部分供给废气的第一步骤,向显热交换器供给水回收部分的废气的第二步骤, 第一潜热交换器的显热交换器,将第一潜热交换器的废气供给到第二潜热交换器的第四工序,将第二潜热交换器的废气供给到蒸汽分离器的第五工序 ; 以及将蒸汽分离器的废气供给到排出部的第六步骤。
    • 79. 发明公开
    • Steam condensing apparatus and methods
    • Vorrichtung und Verfahren zum Kondensieren von Dampf
    • EP0801281A2
    • 1997-10-15
    • EP97302365.8
    • 1997-04-07
    • Hudson Products Corporation
    • Goldsmith, James DavidKluppel, George EdwardMillas, George SteveStrock, Thomas Wayne
    • F28B1/06F28B9/10
    • F28B9/08F28B1/06F28B9/10F28B2001/065Y10S165/913
    • A two-stage steam condenser (70) prevents freezing from occurring in its tube rows (80,102) by continual purging of the tube rows. Such continual purging prevents any steam from back-flowing into a tube row (80,102) thereby eliminating the possibility that condensate or noncondensable gases will become trapped therein. This is achieved by isolating each of the tube rows (102) in the second stage (92) of the condenser (70) so that the pressure of one tube row is not exposed to the pressure occurring in another adjacent tube row. The condensate collected in the various tube rows (102) of this second stage (92) is delivered to a common drain pot (114) that is hydraulically balanced to accommodate the various pressures in these tube rows (102). Such hydraulic balancing also prevents any back-flowing from occurring from one tube row (102) into another. Furthermore, in this second stage (92) of the steam condenser (70), the steam (88) and resulting condensate both flow concurrently downward while any noncondensable gases (94) are vented counter-currently upward against such steam and condensate flow.
    • 两级蒸汽冷凝器(70)通过连续吹扫管排来防止在其管排(80,102)中发生冻结。 这种连续吹扫防止任何蒸汽回流到管排(80,102)中,从而消除了冷凝物或不可冷凝气体将被捕获在其中的可能性。 这通过隔离冷凝器(70)的第二级(92)中的每个管排(102)来实现,使得一个管排的压力不暴露于在另一相邻管排中发生的压力。 收集在该第二级(92)的各管排(102)中的冷凝物被输送到液压平衡以容纳这些管排(102)中的各种压力的公共排水罐(114)。 这种液压平衡还防止从一个管排(102)进入另一管排(102)的任何反向流动。 此外,在蒸汽冷凝器(70)的第二阶段(92)中,蒸汽(88)和产生的冷凝物两者同时向下流动,而任何不可冷凝气体(94)相对于这种蒸汽和冷凝物流反向排出。
    • 80. 发明公开
    • Air cooled vacuum steam condenser with flow-equalized mini-bundles
    • LuftgekühlterVakuum-Dampfkondensator mitKleinbündelnmit Ausgleich des Durchflusses。
    • EP0545366A1
    • 1993-06-09
    • EP92120497.0
    • 1992-12-01
    • Larinoff, Michael William
    • Larinoff, Michael William
    • F28B1/06
    • F28B9/005F28B1/06F28B9/10F28B2001/065Y10S165/188Y10S165/90
    • A single-row, two-pass steam condensing bundle (12) used for condensing steam in air-cooled vacuum steam condensers in power plant applications and the like is divided into a plurality of identically built mini-bundle sets (A-F). Each mini-bundle set has one centrally located 2nd-pass tube (14) with symmetrically placed 1st-pass tubes (13) positioned on either side of it. The steam leaving each 1st-pass tube (13) is controlled by a flow equalizing device (15) installed at the end of the tubes. The flow of the noncondensible gas mixture (32) leaving each 2nd-pass tube (14) is controlled by an individual orifice (17) in the gas piping system. The larger the number of mini-bundle sets incorporated into the bundle, the greater its counterflow freeze protection feature.
    • 用于在发电厂应用等中的空气冷却真空蒸汽冷凝器中冷凝蒸汽的单排二通蒸汽冷凝束(12)被分成多个相同构造的小束组(A-F)。 每个迷你束组具有一个位于中心的第二通管(14),对称放置的第一通管(13)位于其两侧。 离开每个第一通管(13)的蒸汽由安装在管末端的均流装置(15)控制。 离开每个二通管(14)的不凝性气体混合物(32)的流动由气体管道系统中的单个孔口(17)控制。 捆绑在一起的迷你束集数量越多,其逆流冻结保护功能就越大。