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TRANSIENT LOCAL HEAT FLUXES DURING THE ENTIRE VAPOR BUBBLE LIFE TIME

机译:整个蒸气泡寿命期间的瞬态局部热量通量

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Recent experimental and numerical investigations of the nucleate boiling heat transfer process at a single active nucleation site are presented and used for an evaluation of the local heat fluxes during the entire life time of a vapor bubble from its nucleation to the rise through the thermal boundary layer. In a special boiling cell, vapor bubbles are generated at a single nucleation site on a 20 (mu)m thin stainless steel heating foil. An infrared camera captures the temperature distribution at the wall with high temporal and spatial resolution. The bubble shape is recorded with a high-speed camera. Measurements were conducted with the pure fluids FC-84 and FC-3284 and with its binary mixtures. For pure fluids, up to 50-60percent of the latent heat flows through the three-phase-contact line region. For mixtures, this ratio is clearly reduced. These observations are in agreement with the numerical model of the author's group. The fully transient model contains a multiscale approach ranging from the nanometer to the millimeter scale for the detailed description of the relevant local and global phenomena. It describes the transient heat and fluid flow during the entire periodic cycle of a growing, detaching and rising bubble including the waiting time between two successive bubbles from a single nucleation site. The detailed analysis of the computed transient temperature profiles in wall and fluid give accurate information about the heat supply, temporal energy storage and local evaporation rates.
机译:呈现了单一活动成核位点的核沸腾传热过程的最新实验性和数值研究,并用于评估蒸汽泡的整个寿命期间的局部热通量从其成核到通过热边界层的升高。在特殊的沸腾细胞中,在20(mU)薄的不锈钢加热箔上的单个成核位点处产生蒸汽气泡。红外相机捕获墙壁的温度分布,具有高时和空间分辨率。使用高速相机记录气泡形状。用纯流体Fc-84和Fc-3284进行测量并用其二元混合物进行。对于纯净流体,潜热的高达50-60平方米流过三相接触线区域。对于混合物,该比率显然降低。这些观察与作者组的数值模型一致。完全瞬态模型包含从纳米到毫米尺度的多尺度方法,以便详细描述相关的本地和全球现象。它描述了在生长,分离和上升泡的整个周期性周期期间的瞬态热量和流体流动,包括来自单个成核位点的两个连续气泡之间的等待时间。墙壁和流体中计算的瞬态温度曲线的详细分析提供了关于供热,时间能量存储和局部蒸发速率的准确信息。

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