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COMPARISON OF GAS NUCLEATION AND POOL BOILING SITE DENSITIES

机译:气体成核与池沸腾密度的比较

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摘要

It has been well established that the rate of heat transfer associated with boiling systems is strongly dependent on the nucleation site density. Over many years attempts have been made to predict nucleation site density in boiling systems using a variety of techniques. With the exception of specially prepared surfaces, these attempts have met with little success. This paper presents an experimental investigation of nucleation site density measured on roughly polished brass and stainless steel surfaces for gas nucleation and pool boiling over a large parameter space. The fluids used for this study, distilled water and ethanol, are moderately wetting and highly wetting, respectively. Using distilled water it has been observed that the trends of nucleation site density versus the inverse of the critical radius are similar for pool boiling and gas nucleation. The nucleation site density is higher for gas nucleation than for pool boiling. An unexpected result has been observed with ethanol as the heat transfer fluid, which casts doubt on the general validity of heterogeneous nucleation theory. Due to flooding, few sites are active on the brass surface and at most two are active on the stainless steel surface during gas nucleation experiments. However, nucleation sites readily form in large concentration on both the brass and stainless steel surfaces during pool boiling. The nucleation site densities for the rough and mirror polished brass surfaces are also compared. It shows that there is no large difference for the measured nucleation site density.
机译:众所周知,与沸腾系统有关的传热速率很大程度上取决于成核位点密度。多年来,已经尝试使用多种技术来预测沸腾系统中的成核位点密度。除了特殊准备的表面以外,这些尝试均收效甚微。本文介绍了在大的参数空间上对气体和表面沸腾进行粗抛光的黄铜和不锈钢表面上测量的成核位点密度的实验研究。用于这项研究的液体,蒸馏水和乙醇,分别是中等润湿和高度润湿的。使用蒸馏水已经观察到,对于池沸腾和气体成核,成核位置密度与临界半径的倒数的趋势相似。气体成核的成核点密度高于熔池沸腾。用乙醇作为传热流体观察到了出乎意料的结果,这使人们对异相成核理论的一般有效性产生怀疑。由于溢流,在气体成核实验中,黄铜表面上几乎没有活性位,而不锈钢表面上最多有两个活性位。但是,在池沸腾过程中,容易在黄铜和不锈钢表面上大量形成形核部位。还比较了粗糙和镜面抛光黄铜表面的形核位点密度。结果表明,所测量的成核位点密度没有太大差异。

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