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    • 1. 发明申请
    • COOLING TOWER
    • 冷却塔
    • US20120318009A1
    • 2012-12-20
    • US13423941
    • 2012-03-19
    • Bernard F. Duesel, JR.Michael J. Rutsch
    • Bernard F. Duesel, JR.Michael J. Rutsch
    • F28C1/00
    • F28C3/06B01D1/0058B01D1/14B01D1/305C02F1/10
    • A cooling tower includes an evaporator vessel, a gas delivery tube partially disposed within the evaporator vessel and a liquid inlet that provides liquid to the evaporator vessel. A weir is disposed within the evaporator vessel adjacent the gas delivery tube to form a first liquid circulation path between a first weir end and a wall of the evaporator vessel and a second fluid circulation path between a second weir end and another wall of the evaporator vessel. During operation, gas introduced through the tube mixes with the liquid and the combined gas and liquid flow at a high rate with a high degree of turbulence along the first and second circulation paths defined around the weir, thereby promoting vigorous mixing and intimate contact between the gas and the liquid. This turbulent flow leads to a more efficient and complete heat and mass transfer between the gas and the liquid.
    • 冷却塔包括蒸发器容器,部分地设置在蒸发器容器内的气体输送管和向蒸发器容器提供液体的液体入口。 堰被设置在与气体输送管相邻的蒸发器容器内,以在蒸发器容器的第一堰端和壁之间形成第一液体循环路径,并且在第二堰端与蒸发器容器的另一个壁之间形成第二流体循环路径 。 在操作过程中,通过管引入的气体沿着围绕堰的第一和第二循环路径以高速率与高度的湍流高速混合液体和组合的气体和液体流,从而促进了湍流之间的剧烈混合和紧密接触 气体和液体。 这种湍流导致气体和液体之间更有效和完整的热和质量传递。