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    • 36. 发明申请
    • Complex flow-path heat exchanger having U-shaped tube and cantilever combined coil
    • 具有U形管和悬臂组合线圈的复杂流路热交换器
    • US20050109495A1
    • 2005-05-26
    • US10956163
    • 2004-09-30
    • Lin ChengZengyuan Guo
    • Lin ChengZengyuan Guo
    • F22D1/32F28D7/00F28D7/06F28F13/10F28D1/00
    • F22D1/32F28D7/0066F28D7/0083F28D7/06F28F13/10
    • A complex flow-path heat exchanger having U-shaped tube and cantilever combined coil, which can achieve, in this type heat exchanger, a simple construction, a complex flow of steam within the same one heat exchange shell body, a high heat exchange efficiency, and a low energy loss. The technical gift of the present invention is that, after entering into the heat exchanger, steam firstly effects heat exchange on the U-shaped tube flow path shell side to be cooled and condensed, thereafter entering into flow path tube side of the cantilever combined coil, which are disposed within the same one shell, for a secondary heat exchange, and subsequently flowing out of the heat exchanger after being subcooled. Such steam-water heat exchanger having a complex flow path are advantageous in a small steam flow resistance of the U-shaped tube flow path shell side; a higher condensate water flow velocity in the cantilever combined coils flow path tube; a high heat exchange coefficient; good coordination of the temperature difference fields of the hot and cold fluids in the heat exchanger; and a high heat exchange efficiency. Therefore, the present heat exchanger can be a new generation product relative to the currently-used conventional low-temperature, low-pressure and corrosion-free heat exchangers.
    • 一种具有U形管和悬臂组合线圈的复杂流路热交换器,在这种类型的热交换器中可以实现简单的结构,同一个热交换壳体内蒸汽的复杂流动,高的热交换效率 ,和低能量损失。 本发明的技术内容是,在进入热交换器之后,蒸汽首先在U形管流路壳体侧进行热交换以冷却和冷凝,然后进入悬臂组合线圈的流路管侧 它们被设置在相同的一个壳体内,用于二次热交换,并且随后在过冷却之后流出热交换器。 这种具有复杂流动路径的蒸汽 - 水热交换器在U形管流动通道壳侧的小的蒸汽流动阻力方面是有利的; 悬臂组合线圈流路管中冷凝水流速较高; 高热交换系数; 热交换器中冷热流体的温差场的协调良好; 并具有较高的热交换效率。 因此,本发明的热交换器可以相对于目前常规的低温,低压和无腐蚀的热交换器而言是新一代产品。