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Boiling heat transfer during flow of distilled water in an asymmetrically heated rectangular minichannel

机译:蒸馏水在不对称加热的矩形小通道中流动时的沸腾传热

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This paper discusses test results concerning flow boiling heat transfer in a minichannel 1.7 mm in depth, 16 mm in width and 180 mm in length. The essential part of the experimental stand was a vertically oriented rectangular minichannel, which was heated asymmetrically with a plate made of Haynes-230 alloy. Distilled water was used as the cooling fluid. Changes in the temperature on the outer side of the heated plate in the central, axially symmetric part of the channel were measured using infrared thermography. Simultaneously, the other side of the heated plate in contact with the fluid was observed through a glass pane to identify the two-phase flow patterns. The one-dimensional model used for the heat transfer analysis took into account the heat flow direction, which was perpendicular to the direction of the fluid flow in the minichannel. The study involved determining local values of the heat transfer coefficient and generating boiling curves. The data for water were compared with the findings reported for the FC-72 fluid.
机译:本文讨论了在深度为1.7 mm,宽度为16 mm,长度为180 mm的小通道中进行沸腾传热的测试结果。实验台架的基本部分是垂直定向的矩形微型通道,该通道用由Haynes-230合金制成的板不对称加热。蒸馏水用作冷却液。使用红外热像仪测量通道中央,轴对称部分中加热板外侧的温度变化。同时,通过玻璃板观察加热板与流体接触的另一侧,以识别两相流型。用于传热分析的一维模型考虑了热流动方向,该方向垂直于微型通道中的流体流动方向。该研究涉及确定传热系数的局部值并生成沸腾曲线。将水数据与报告的FC-72流体发现进行了比较。

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