首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer mechanism, pressure drop and flow patterns during FC-72 flow boiling in horizontal and vertical minichannels with enhanced walls
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Heat transfer mechanism, pressure drop and flow patterns during FC-72 flow boiling in horizontal and vertical minichannels with enhanced walls

机译:水平壁和垂直壁微通道内FC-72沸腾过程中的传热机理,压降和流型

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The paper discusses the results of the flow boiling heat transfer in horizontal (in two positions) and vertical minichannels of 1 mm depth, 40 mm width and 360 mm length. A single-sided enhanced foil with various depressions heats FC-72 laminar flow. Liquid crystal thermography was used for measuring the temperature distribution on the plain side of the foil. The observations of the flow structures were carried out on the enhanced side of the foil contacting fluid in the minichannel, which enabled the identification of flow structures and presentation of flow pattern maps. The void fraction was determined for some cross-sections of two-phase flow images and the vapour quality was determined on this basis. The study employed heat transfer analysis and results regarding local heat transfer coefficient, and boiling curves were constructed. In addition to the typical shapes of boiling curves, the untypical boiling curves with several "stepped" courses of nucleation hysteresis were found. The suitability of classical methods of the two phase pressure drop determination using the experimental verification was confirmed. The comparison of the total measured pressure drop with data obtained from the theoretical models shows that all predicted results fall within the range of ±30%, but only for the vertical minichannel. In most cases the experimental data reached values approaching approximate values in comparison with values from the theoretical models. Calculation of the pressure drop on the basis of the thermodynamic vapour quality and the vapour quality calculated from the experimentally determined void fraction showed a similar dependence.
机译:本文讨论了水平(两个位置)和垂直小通道(深度为1毫米,宽度为40毫米,长度为360毫米)中流沸腾传热的结果。具有各种凹陷的单面增强箔可加热FC-72层流。液晶热成像法用于测量箔的平侧上的温度分布。对流动结构的观察是在微型通道中箔接触流体的增强侧进行的,这使得能够识别流动结构并显示流动模式图。确定两相流图像的某些横截面的空隙率,并在此基础上确定蒸气质量。该研究采用传热分析,得出有关局部传热系数的结果,并绘制了沸腾曲线。除了典型的沸腾曲线形状外,还发现了具有几个“阶梯式”成核滞后过程的非典型沸腾曲线。证实了使用实验验证确定两相压降的经典方法的适用性。将总测得的压降与从理论模型获得的数据进行比较,结果表明,所有预测结果均在±30%的范围内,但仅适用于垂直小通道。在大多数情况下,实验数据达到的值与理论模型的值相比接近近似值。基于热力学蒸气质量的压降计算和根据实验确定的空隙率计算出的蒸气质量显示出相似的依赖性。

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