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Improved cooling performance of HeII channels separated by a porous spacer

机译:改善了通过多孔垫片分隔的HeII通道的冷却性能

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Cooling performance of superfluid helium (Hell) channels, separated by a porous spacer, has been experimentally investigated. The test channels were formed in parallel by FRP block. A spacer was used to separate two channels of the same shape. Both ends of the channels were kept open to an atmospherically pressurized Hell bath. Two types of spacers were examined-(1) FRP spacer, (2) the central portion of the FRP spacer was replaced by a porous spacer. The mean pore diameter was 1 mu m. The lambda transition heat flux, which is defined as the heat flux necessary to raise the helium temperature in the channel to the lambda transition temperature, T-lambda, increases remarkably when the porous spacer is used instead of the FRP spacer. It is also found that the use of porous spacers between Hell channels is effective to suppress a steep temperature rise in the heated channel because Hell flow is induced in the heated channel by a fountain effect. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 5]
机译:已经通过实验研究了由多孔垫片隔开的超流体氦(Hell)通道的冷却性能。测试通道由FRP块并行形成。间隔物用于分离相同形状的两个通道。通道的两端保持通向大气压加压的地狱浴。检查了两种类型的垫片-(1)FRP垫片,(2)FRP垫片的中央部分被多孔垫片代替。平均孔径为1μm。当使用多孔间隔物代替FRP间隔物时,λ跃迁热通量(其定义为将通道中的氦温度升高到λ跃迁温度T-lambda所需的热通量)显着增加。还发现在地狱通道之间使用多孔间隔物可有效地抑制加热通道中的急剧温度升高,因为通过喷泉效应在被加热通道中引起地狱流动。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:5]

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