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The coupled effects of working fluid and solid wall on thermal performance of micro heat pipes

机译:工作流体和固体壁对微型热管热性能的耦合作用

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By incorporating the solid wall conduction, together with the continuity, momentum, and energy equations of the liquid and vapor phases, a mathematical model is developed based on the conservation laws and is solved to yield the heat and fluid flow characteristics of micro heat pipes. This work provides a comprehensive and insightful analysis on the effects of working fluid and solid wall on the thermal performance of micro heat pipes. The characteristics and performance of different types of working fluid and solid wall are elucidated. A well-defined exposition of the circulation effectiveness of the working fluid is proposed and the operation regime map for different types of working fluid is conceived for the identification of the optimal operating conditions. The coupled role of working fluid and solid wall is quantified by deriving a new non-dimensional group, which can be used to characterize the contribution of working fluid and the solid wall to the heat transport rate. The present study serves as a useful analytical tool in the micro heat pipe design and performance analysis, associated with the selection of both working fluid and solid wall material for specific operating conditions.
机译:通过结合固体壁传导以及液相和气相的连续性,动量和能量方程,建立了基于守恒定律的数学模型,并对其求解以产生微型热管的热和流体流动特性。这项工作对工作流体和固体壁对微型热管的热性能的影响提供了全面而有见地的分析。阐明了不同类型的工作流体和固体壁的特性和性能。提出了一种明确定义的工作流体循环效率的阐述,并构想了不同类型工作流体的工作状态图,以识别最佳工作条件。通过推导一个新的无量纲基团,可以量化工作流体和固体壁的耦合作用,该新的无量纲基团可用于表征工作流体和固体壁对热传输速率的贡献。本研究可作为微热管设计和性能分析中的有用分析工具,与针对特定操作条件的工作流体和固体壁材料的选择相关。

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