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Experimental and numerical studies of a fatty acid based phase change dispersion for enhancing cooling of high voltage electrical devices

机译:脂肪酸相变分散体用于增强高压电气设备冷却的实验和数值研究

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摘要

A fatty acid based phase change dispersion (PCD) for efficient high voltage electrical devices cooling has been developed and investigated in this paper. Experiments were firstly conducted to characterise the PCD thermophysical properties and to measure the bulk fluid and inner wall temperature of PCD flowing in a circular pipe by a self-designed rig. A 3D modelling based on the Euler-Euler model and homogenous single-phase model were then performed and validated through experiments, and further employed to evaluate the effects of particle size, concentration and operating conditions on flow characteristics, pressure drop, heat transfer and energy transport performance of the PCD. The results showed that both the particle size and concentration presented significant influences on heat transfer between the two phases, and average friction factor as well as heat transfer coefficient of the PCD. A higher averaged Nusselt number and a larger pressure drop were observed when the PCM particle diameter decreased to 7 μm. For the investigated conditions in this work, an optimal set of cooling performance for the developed fatty acid PCD was proposed and a PCM particle size of 7 μm under a flow velocity of 4 m/s and a concentration of 35% was recommended for industrial cooling applications.
机译:本文开发并研究了用于高效高压电气设备冷却的基于脂肪酸的相变分散液(PCD)。首先进行了实验,以表征PCD的热物理性质,并通过自行设计的钻机测量在圆管中流动的PCD的体液和内壁温度。然后进行了基于Euler-Euler模型和均相单相模型的3D建模,并通过实验进行了验证,并进一步用于评估粒径,浓度和操作条件对流动特性,压降,传热和能量的影响PCD的传输性能。结果表明,粒径和浓度均对两相之间的传热,PCD的平均摩擦系数以及传热系数产生了显着影响。当PCM粒径降低到7μm时,观察到更高的平均Nusselt数和更大的压降。对于这项工作中的研究条件,提出了针对开发的脂肪酸PCD的最佳冷却性能,并建议在4 m / s的流速和75%的浓度下将PCM颗粒尺寸设为7μm,以进行工业冷却应用程序。

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