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    • 41. 发明公开
    • 열 교환기 보호 방법 및 장치와, 열 교환기 보호 장치를구비한 증기 보일러
    • 一种用于保护换热器和蒸汽锅炉的方法和装置,其中包括用于保护换热器的装置
    • KR1020070028565A
    • 2007-03-12
    • KR1020077001434
    • 2005-06-29
    • 아멕 포스터 휠러 에너지아 오와이
    • 펠리카,조르마
    • F28D7/06F28D7/00
    • F28D7/06F28F9/0231F28F2265/12
    • The present invention relates to a method of and an apparatus for protecting a heat exchanger against stresses caused by boiling of heat exchange medium without external energy, and a steam boiler provided with an apparatus for protecting a heat exchanger. Said apparatus is preferably used in situations in which heat is recovered from the flue gas flow of thermal power boilers in conditions, where there is a risk of boiling of the water used as heat exchange medium. A protection circuit of a heat exchanger in accordance with the present invention comprises an expansion vessel (52), which in case of boiling, provides natural circulation of water, for cooling a heat exchanger (36) without external energy or control. ® KIPO & WIPO 2007
    • 本发明涉及一种用于保护热交换器免受没有外部能量的热交换介质的沸腾所引起的应力的方法和装置,以及设置有用于保护热交换器的装置的蒸汽锅炉。 所述装置优选用于在热力锅炉的烟道气流从其中存在用作热交换介质的水沸腾的风险的条件下回收热量的情况。 根据本发明的热交换器的保护电路包括膨胀容器(52),其在沸腾的情况下提供水的自然循环,用于在没有外部能量或控制的情况下冷却热交换器(36)。 ®KIPO&WIPO 2007
    • 49. 发明专利
    • Heat exchanger
    • 热交换器
    • JP2004044873A
    • 2004-02-12
    • JP2002201232
    • 2002-07-10
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • ENDO NAOKIMAEDA TETSUHIKO
    • F25B39/04F25B1/08F25B43/04F28F9/02F28F27/02
    • F28F9/0278F25B1/08F25B43/043F28F9/0231
    • PROBLEM TO BE SOLVED: To solve a problem wherein non-condensable gas involves condensed liquid flowing on a lower side in a pipe and the condensed liquid is vaporized again in a heat exchanger for separating non-condensable gas and the condensed liquid from mixed gas of non-condensable gas and condensable gas and taking the gas and liquid from the same opening.
      SOLUTION: This heat exchanger 1 guides the mixed gas of the non-condensable gas and condensable gas into a heat exchanger 2 to condense the condensable gas. In a T-shaped joint 7 provided in a discharge port for discharging the non-condensable gas and the condensed liquid with condensed condensable gas, a partition member 3 having an arc shape in cross section is disposed with a gap to make the condensed liquid flow out between the member 3 and a lower surface of the discharge port. One end of the partition member 3 is supported by a partition spacer 10 provided on a downstream side of a branch pipe part 8 for discharging the condensed liquid and is extended up to the inside of the heat exchanger 2, and the vicinity of the other end part is supported by a spacer 11. As a result, the condensed liquid condensed within the heat exchanger 2 flows on a lower surface of a partition plate, and the condensed liquid can be prevented from being involved in the non-condensable gas flowing on the upper surface.
      COPYRIGHT: (C)2004,JPO
    • 解决的问题为了解决不冷凝气体包括在管道下侧流动的冷凝液体,并且在用于将不可冷凝气体和冷凝液体分离的热交换器中的冷凝液体再次蒸发的问题 不可冷凝气体和可冷凝气体的混合气体,并从同一开口取气体和液体。 解决方案:该热交换器1将不可冷凝气体和可冷凝气体的混合气体引入热交换器2以冷凝可冷凝气体。 在设置在用于排出不可冷凝气体的排出口和冷凝的可冷凝气体的冷凝液体的T形接头7中,具有间隙的具有圆弧形状的分隔构件3设置有间隙,以使冷凝液流 在构件3和排出口的下表面之间。 分隔构件3的一端由设置在分支管8的下游侧的隔离间隔件10支撑,用于排出冷凝液体,并延伸到热交换器2的内部,另一端附近 部分由间隔件11支撑。结果,在热交换器2内冷凝的冷凝液体在分隔板的下表面上流动,并且可以防止冷凝液体流入不可冷凝气体 上表面。 版权所有(C)2004,JPO
    • 50. 发明专利
    • Radiator
    • 散热器
    • JP2003065696A
    • 2003-03-05
    • JP2001254431
    • 2001-08-24
    • Honda Motor Co Ltd本田技研工業株式会社
    • TSUKAHARA KENJIDOBASHI TOMIO
    • F01P3/18F28F9/02F28F9/22
    • F28F9/0278F28D1/05391F28F9/0231F28F9/0265
    • PROBLEM TO BE SOLVED: To enhance the performance of separating air from cooling water without using an expansion tank.
      SOLUTION: The radiator R comprises a radiator core 11 connecting a large number of water tubes 14 by a large number of cooling fins 15, an upper tank 12 disposed above the radiator core 11 to communicate with the upper end of the water tubes 14, a lower tank 13 disposed below the radiator core 11 to communicate with the lower end of the water tubes 14, and a pressure cap 18 provided on the upper surface of the upper tank 12. Interior of the upper tank 12 is partitioned by a baffle plate 21 extending horizontally into an upper chamber 22 and a lower chamber 23. The upper chamber 22 is provided with a cooling water supply opening 25 and a passage 24 interconnecting the upper chamber 22 and the lower chamber 23 is formed at least a part of the baffle plate 21.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提高在不使用膨胀箱的情况下将空气与冷却水分离的性能。 解决方案:散热器R包括通过大量散热片15连接大量水管14的散热器芯11,设置在散热器芯11上方以与水管14的上端连通的上部箱体12, 下部箱13设置在散热器芯11下方以与水管14的下端连通,以及设置在上部箱12的上表面上的压力盖18.上部箱12的内部由挡板21 水平延伸到上部腔室22和下部腔室23中。上部腔室22设置有冷却水供应开口25,并且连通上部腔室22和下部腔室23的通道24形成为挡板的至少一部分 21。