首页> 外国专利> SINGLE UNIT TYPE DEHUMIDIFICATION AND DRYING METHOD AND SYSTEM HAVING BOUNDARY LAYER CONTROL COOPERATING WITH ENHANCED HEAT-EXCHANGE BY MAIN STREAM DISTURBANCE

SINGLE UNIT TYPE DEHUMIDIFICATION AND DRYING METHOD AND SYSTEM HAVING BOUNDARY LAYER CONTROL COOPERATING WITH ENHANCED HEAT-EXCHANGE BY MAIN STREAM DISTURBANCE

机译:具有主流扰动增强换热的边界层控制合作的单单元式除湿干燥方法及系统

摘要

A single unit type dehumidification and drying method having boundary layer control cooperating with enhanced heat-exchange by main stream disturbance realizing sufficient heat-exchange by providing a boundary layer flow control device (12) at the flow boundary layer and providing a main stream disturbance device (15) on the main stream path. A single unit type dehumidification and drying system having boundary layer control cooperating with enhanced heat-exchange by main stream disturbance comprising a thermo-electrical semiconductor pair (2) provided in a thermally insulated casing (1), the thermo-electrical semiconductor pair (2) comprising an underlying cold end face (3) and an overlying hot end face (4), wherein cooling end ribs (11) connected to the cold end face (3) of the thermo-electrical semiconductor pair (2) are longitudinally provided with a plurality of boundary layer flow control devices (12) at positions near the face of a wall, and a main stream disturbance device (15) is provided on the main stream path between the cooling end ribs (11); and heating end ribs (14) connected to the top of the hot end face (4) are configured in the same way. The method overcomes the shortcomings of the boundary layer hindering heat transfer and the main stream and short stream not being able to be heated or cooled sufficiently.
机译:通过在流动边界层上设置边界层流量控制装置(12)并设置主流干扰装置,具有边界层控制与主流干扰增强的热交换协同作用的单单元型除湿干燥方法,从而实现了充分的热交换。 (15)在主流路径上。具有边界层控制和通过主流干扰增强的热交换协同作用的单单元型除湿干燥系统,包括设置在隔热壳体(1)中的热电半导体对(2),热电半导体对(2) )包括下面的冷端面(3)和上面的热端面(4),其中连接到热电半导体对(2)的冷端面(3)的冷却端肋(11)在纵向上设有在壁面附近的位置上设有多个边界层流量控制装置(12),在冷却端肋(11)之间的主流路上设有主流扰动装置(15)。与热端面(4)的顶部连接的加热端肋(14)以相同的方式构造。该方法克服了边界层阻碍传热的缺点,并且主流和短流不能被充分加热或冷却。

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