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首页> 外文期刊>International Journal of Heat and Mass Transfer >Flow boiling heat transfer and pressure drop in stepped fin microchannels
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Flow boiling heat transfer and pressure drop in stepped fin microchannels

机译:阶梯式翅片微通道中的流沸腾传热和压降

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摘要

Experiments on flow boiling were conducted in stepped fin microchannels. The test vehicles were made from copper with two different footprint areas, designated as SFMC1 and SFMC2. The microchannels were formed by wire cut Electro Discharge Machining process and have surface roughness (Ra) of about 2.0 μm. Tests were performed, with deionized water, on channels having nominal width of 300 μm and a nominal aspect ratio of four over different mass velocity and heat flux range and inlet temperature of 90 ℃. The experimental results of flow boiling in stepped fin microchannels and discussion on its heat transfer characteristics, instabilities and two-phase pressure drop are presented. The experimental data was plotted on Taitel-Dukler flow regime map to predict the flow boiling regimes existing within the channel under different operating conditions. The heat transfer mechanism and the flow boiling instabilities are explained based on the existent flow boiling regime. High speed visualizations are shown to validate the explanation.
机译:在阶梯式翅片微通道中进行沸腾沸腾实验。测试车辆由具有两个不同覆盖区的铜制成,分别称为SFMC1和SFMC2。微通道通过线切割电火花加工工艺形成,并且具有约2.0μm的表面粗糙度(Ra)。使用去离子水在标称宽度为300μm,标称长宽比为4的通道上,在不同的质量速度和热通量范围以及90℃的入口温度下进行了测试。提出了翅片微通道内流沸腾的实验结果,并讨论了其传热特性,不稳定性和两相压降。将实验数据绘制在Taitel-Dukler流动状态图上,以预测在不同操作条件下通道内存在的流动沸腾状态。基于现有的沸腾机理,对传热机理和沸腾不稳定性进行了解释。显示了高速可视化效果以验证解释。

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