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ANALYTICAL MODELING OF A LOOP HEAT PIPE AT POSITIVE ELEVATION

机译:阳性高度环路热管的分析模型

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A two-phase heat transfer device, a loop heat pipe (LHP), is studied analytically. It is noted that a LHP behaves differently when it is operated against gravity (adverse elevation) or at gravity assisted (positive elevation) conditions. Steady-state modeling of LHP operating characteristics at adverse or zero elevation was broadly studied in the past. This paper presents a steady-state model of a LHP when it is operated at positive elevation based on experimental results. The effects of elevation on the trend of steady-state operating temperature (SSOT) are then studied using the newly developed steady-state model. Experimental results agree with the model predictions at adverse (88.9mm), zero, and positive (88.9mm) elevations. This steady-state model is the only model known to have the capability to predict the operating characteristics at positive elevation. The model will help to design the LHPs utilized in terrestrial applications.
机译:在分析上研究了两相传热装置,环热管(LHP)。应注意,当其防止重力(不利升高)或重力辅助(正高程)条件时,LHP的行为方式不同。过去研究了不利或零海拔的LHP操作特性的稳态建模。本文在基于实验结果的正高程运行时,提出了一种LHP的稳态模型。然后使用新开发的稳态模型研究高程对稳态工作温度(SSOT)趋势的影响。实验结果与不利(88.9mm),零和正(88.9mm)高度的模型预测。该稳态模型是已知具有预测正高程处的操作特性的能力的唯一模型。该模型将有助于设计在地面应用中使用的LHP。

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