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From the Cover: Anomalous heat transport and condensation in convection of cryogenic helium

机译:从封面开始:低温氦气对流中的异常传热和冷凝

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摘要

When a hot body A is thermally connected to a cold body B, the textbook knowledge is that heat flows from A to B. Here, we describe the opposite case in which heat flows from a colder but constantly heated body B to a hotter but constantly cooled body A through a two-phase liquid–vapor system. Specifically, we provide experimental evidence that heat flows through liquid and vapor phases of cryogenic helium from the constantly heated, but cooler, bottom plate of a Rayleigh–Bénard convection cell to its hotter, but constantly cooled, top plate. The bottom plate is heated uniformly, and the top plate is cooled by heat exchange with liquid helium maintained at 4.2 K. Additionally, for certain experimental conditions, a rain of helium droplets is detected by small sensors placed in the cell at about one-half of its height.
机译:当热体A与冷体B热连接时,教科书上的知识是热量从A流向B。这里,我们描述了相反的情况,热量从较冷但不断加热的体B流动到较热但不断地加热通过两相液体-蒸汽系统冷却了主体A。特别是,我们提供了实验证据,表明热量从低温氦气的液相和气相中流过,它们从瑞利-贝纳德对流池的不断加热但温度较低的对流板一直流到较热但不断冷却的对流室的顶板。均匀加热底板,并通过与保持在4.2 K的液氦进行热交换来冷却顶板。此外,在某些实验条件下,通过放置在电池中约一半的小传感器检测到氦滴雨其高度。

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