首页> 外文会议>The 2001 ASME International Mechanical Engineering Congress and Exposition, 2001, Nov 11-16, 2001, New York, New York >THE EFFECT OF SINK TEMPERATURE ON A CAPILLARY PUMPED LOOP EMPLOYING A FLAT EVAPORATOR AND SHELL AND TUBE CONDENSER
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THE EFFECT OF SINK TEMPERATURE ON A CAPILLARY PUMPED LOOP EMPLOYING A FLAT EVAPORATOR AND SHELL AND TUBE CONDENSER

机译:水槽温度对使用平板蒸发器,壳管冷凝器的毛细管泵的影响

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摘要

An experimental facility for conducting research on capillary pumped loop (CPL) systems was developed. In order to simulate shipboard cooling water encountered at various locations of the ocean, the heat sink temperature of the facility could be varied. A flat plate, CPL evaporator was designed and tested under various heat sink temperatures. The sink temperature ranged from 274.3 to 305.2 K and the heat input varied from 250 to 800 W which corresponds to heat fluxes up to 1.8 W/cm~2. The CPL flat plate evaporator performed very well under this range of heat input and sink temperatures. The main result obtained showed that a large degree of subcooling developed between the evaporator vapor outlet line and liquid return line. This condensate depression increased with increasing heat input.
机译:开发了用于进行毛细管泵回路(CPL)系统研究的实验设施。为了模拟在海洋的各个位置遇到的舰载冷却水,可以改变设施的散热器温度。在各种散热器温度下设计并测试了平板CPL蒸发器。接收器温度在274.3至305.2 K之间,热输入在250至800 W之间变化,对应于高达1.8 W / cm〜2的热通量。 CPL平板蒸发器在此热量输入和沉温度范围内表现非常出色。获得的主要结果表明,在蒸发器蒸汽出口管线和液体返回管线之间产生了很大程度的过冷。随着热量输入的增加,冷凝水的压降增加。

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