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    • 65. 发明授权
    • Multistage pressure condenser
    • 多级压力冷凝器
    • US08505886B2
    • 2013-08-13
    • US12819513
    • 2010-06-21
    • Shun YadoriharaKoichi YoshimuraTakaaki Kezuka
    • Shun YadoriharaKoichi YoshimuraTakaaki Kezuka
    • B01F3/04
    • F28B1/02F28B7/00
    • According to one embodiment, there is provided a multistage-pressure condenser, including a first condenser, a second condenser and a third condenser, which are arranged in increasing order of internal pressure, the first condenser and the second condenser each including a first partition in which perforations from which condensate obtained by condensing turbine steam by cooling water drops are formed on a cooling water inflow side of the condenser rather than at a central part thereof, and a second partition which partitions a reheating room for reheating condensate dropping from the perforations in a direction perpendicular to an inflow direction of the cooling water, and a heating-steam flow path which supplies heated steam from the third condenser to the reheating room partitioned by the first partition and the second partition.
    • 根据一个实施例,提供了一种多级压力冷凝器,其包括以内部压力的递增顺序排列的第一冷凝器,第二冷凝器和第三冷凝器,第一冷凝器和第二冷凝器各自包括第一分隔件 在冷凝器的冷却水流入侧而不是在其中央部形成有通过冷凝水滴冷凝涡轮机蒸汽获得的冷凝物的穿孔,以及分隔出再加热室再次加热的再次加热室的第二隔板, 与冷却水的流入方向垂直的方向,以及将加热蒸汽从第三冷凝器供给到由第一分隔部和第二分隔壁分隔的再加热室的加热 - 蒸汽流路。
    • 66. 发明申请
    • CONDENSER
    • 冷凝器
    • US20130118723A1
    • 2013-05-16
    • US13719346
    • 2012-12-19
    • Akira NemotoNaoki SugitaniYoshio Mochida
    • Akira NemotoNaoki SugitaniYoshio Mochida
    • F28F1/00
    • F28F1/00F28B1/02F28B7/00F28B9/08Y10S165/192Y10S261/10
    • A condenser comprises a high pressure side condenser, a high pressure side cooling tube bank, a high pressure side hot well, a low pressure side condenser, a low pressure side cooling tube bank, a pressure shroud provided inside the low pressure side condenser, a low pressure side hot well, high pressure steam introducing portion, low pressure side condensate introducing portion, a flash box which communicates with at least one of the high pressure side hot well and the low pressure side hot well, flashes a heater drain from a feed water heater, and urges at least one of the high pressure side hot well and the low pressure side hot well to recover the flashed heater drain, and a flash steam path which introduces flash steam generated inside the flash box into at least one of the high pressure side hot well and the low pressure side hot well.
    • 冷凝器包括高压侧冷凝器,高压侧冷却管堤,高压侧热井,低压侧冷凝器,低压侧冷却管堤,设置在低压侧冷凝器内的压力罩, 低压侧热井,高压蒸汽引入部分,低压侧冷凝物引入部分,与高压侧热井和低压侧热井中的至少一个连通的闪光箱,从进料中闪烁加热器排水 并且促使高压侧热井和低压侧热井中的至少一个回收闪蒸的加热器排水口,并且将闪蒸箱内产生的闪蒸蒸汽引入至少一个高温的闪蒸蒸汽路径 压力侧热井和低压侧热井。
    • 67. 发明授权
    • Multi-pressure condenser and condensate reheating method
    • 多压冷凝器和冷凝水再加热法
    • US08360402B2
    • 2013-01-29
    • US12754972
    • 2010-04-06
    • Naoki SugitaniKoichi Yoshimura
    • Naoki SugitaniKoichi Yoshimura
    • B01F3/04
    • F28B1/02F01K9/00F28B7/00F28B9/08
    • A multi-pressure condenser has first and second condensers with vacuum pressures. The second condenser has a higher pressure. The first condenser has a first cooling water tube bundle, and a pressure barrier which extends below the first cooling water tube bundle. A heat-transfer tube introduces fluid from outside the first condenser into the first hot well below the barrier. Liquid is dropped into the first hot well through the through holes of the pressure barrier. The second condenser has a second cooling water tube bundle. Condensate generated in the high-pressure chamber is accumulated below the second cooling water tube bundle. The multi-pressure condenser further has a steam duct to connect the gas phase parts of the first hot well and the second condenser, and a pipe to communicate the liquid phase parts of the first hot well and the second condenser.
    • 多压冷凝器具有真空压力的第一和第二冷凝器。 第二冷凝器具有较高的压力。 第一冷凝器具有第一冷却水管束和在第一冷却水管束下方延伸的压力屏障。 传热管将流体从第一冷凝器外部引入屏障下方的第一热阱。 液体通过压力屏障的通孔落入第一个热井。 第二冷凝器具有第二冷却水管束。 在高压室中产生的冷凝物积聚在第二冷却水管束的下方。 多压力冷凝器还具有连接第一热水器和第二冷凝器的气相部分的蒸汽管道,以及用于连通第一热水器和第二冷凝器的液相部分的管道。
    • 68. 发明授权
    • Series-parallel condensing system
    • 串并联冷凝系统
    • US07926555B2
    • 2011-04-19
    • US11821816
    • 2007-06-26
    • Frank David SanderlinHerman Peter Fay
    • Frank David SanderlinHerman Peter Fay
    • F28B9/02F28F27/02
    • F28B1/02F28B1/06F28B7/00F28B9/06F28B11/00
    • A series-parallel condensing system comprised of an air-cooled condenser, a surface condenser, a circulating water system and a cooling tower, body of water, or other equivalent heat sink. The cooling tower, being an evaporative device, consumes water. In the simplest embodiment of the invention steam is condensed in a two-stage series process with steam first fed to an air-cooled condenser where the majority of the steam is condensed and then to a surface condenser, which in conjunction with the circulating water system and cooling tower condenses the remaining steam. This embodiment achieves the greatest degree of water conservation. The function of the surface condenser is to replace the dephlegmator of the air-cooled condenser, which results in a significant reduction in the size and cost of the air-cooled condenser and also yields improved plant performance and operational simplicity. In a second embodiment, where additional makeup water is available, a steam bypass system is added converting the system from a series condensing process into a series-parallel process. In this arrangement steam exiting the turbine flows through both the air-cooled condenser and also through the bypass system with final condensation taking place in the surface condenser.
    • 一种串并联冷凝系统,包括空气冷却冷凝器,表面冷凝器,循环水系统和冷却塔,水体或其他等效散热器。 作为蒸发装置的冷却塔消耗水。 在本发明的最简单的实施方案中,蒸汽在两级串联方法中冷凝,蒸汽首先进料到空气冷却的冷凝器中,其中大部分蒸汽被冷凝,然后到达表面冷凝器,其结合循环水系统 并且冷却塔冷凝剩余的蒸汽。 该实施例达到最大程度的节水。 表面冷凝器的功能是取代空冷冷凝器的分凝器,这导致空冷冷凝器的尺寸和成本的显着降低,并且还产生改进的设备性能和操作简单性。 在第二实施例中,在可用附加补充水的情况下,添加蒸汽旁路系统,将系统从串联冷凝过程转换为串并联过程。 在这种布置中,离开涡轮的蒸汽流过空气冷却的冷凝器,并且还通过旁路系统,在表面冷凝器中发生最终的冷凝。
    • 69. 发明申请
    • MULTI-PRESSURE CONDENSER AND CONDENSATE REHEATING METHOD
    • 多压缩冷凝器和冷凝再生方法
    • US20100319879A1
    • 2010-12-23
    • US12754972
    • 2010-04-06
    • Naoki SugitaniKoichi Yoshimura
    • Naoki SugitaniKoichi Yoshimura
    • F28D15/00
    • F28B1/02F01K9/00F28B7/00F28B9/08
    • A multi-pressure condenser has first and second condensers with vacuum pressures. The second condenser has a higher pressure. The first condenser has a first cooling water tube bundle, and a pressure barrier which extends below the first cooling water tube bundle. A heat-transfer tube introduces fluid from outside the first condenser into the first hot well below the barrier. Liquid is dropped into the first hot well through the through holes of the pressure barrier. The second condenser has a second cooling water tube bundle. Condensate generated in the high-pressure chamber is accumulated below the second cooling water tube bundle. The multi-pressure condenser further has a steam duct to connect the gas phase parts of the first hot well and the second condenser, and a pipe to communicate the liquid phase parts of the first hot well and the second condenser.
    • 多压冷凝器具有真空压力的第一和第二冷凝器。 第二冷凝器具有较高的压力。 第一冷凝器具有第一冷却水管束和在第一冷却水管束下方延伸的压力屏障。 传热管将流体从第一冷凝器外部引入屏障下方的第一热阱。 液体通过压力屏障的通孔落入第一个热井。 第二冷凝器具有第二冷却水管束。 在高压室中产生的冷凝物积聚在第二冷却水管束的下方。 多压力冷凝器还具有连接第一热水器和第二冷凝器的气相部分的蒸汽管道,以及用于连通第一热水器和第二冷凝器的液相部分的管道。