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Experimental and Theoretical Investigation of a Capillary Pumped Loop

机译:毛细管泵送回路的实验和理论研究

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The objective of this paper is to present a theoretical investigation of the operational characteristics on a small-scale Capillary Pump Loop (CPL). A typical design of a CPL is composed of a capillary evaporator, a condenser, a two-phase reservoir, and liquid and vapor lines. The capillary evaporator generates the required pressure pumping for moving the working fluid from the condenser to the evaporator section. The fundamental principles of the proposed modeling are: The overall pressure drop in the loop must be less than the maximum capillary pressure in order to ensure that the system will operate continuously. The major components of the CPL pressure drop are related to the flow in the wick structure, condenser, vapor and liquid lines. The wick structure present in the evaporator causes flow restriction that affects the CPL performance, which is dependent on the wick permeability, a property of the porous material that describes its ability to transport the liquid under an applied pressure gradient. An experimental lab-scale installation is used for the validation of the theoretical analysis. The results showed that the proposed CPL modeling is able to describe very well the CPL performance.
机译:本文的目的是对小型毛细管泵回路(CPL)的运行特性进行理论研究。 CPL的典型设计由毛细管蒸发器,冷凝器,两相容器以及液体和蒸气管线组成。毛细管蒸发器产生所需的压力泵,以将工作流体从冷凝器移至蒸发器部分。提出的模型的基本原理是:回路中的总压降必须小于最大毛细压力,以确保系统连续运行。 CPL压降的主要成分与油芯结构,冷凝器,蒸汽和液体管线中的流量有关。蒸发器中存在的油芯结构会导致影响CPL性能的流量限制,这取决于油芯渗透率,这是多孔材料的一种特性,描述了其在施加的压力梯度下输送液体的能力。实验性实验室规模的安装用于理论分析的验证。结果表明,所提出的CPL建模能够很好地描述CPL性能。

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