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首页> 外文期刊>Journal of Hazardous Materials >Theoretical and experimental investigation into the explosive boiling potential of thermally stratified liquid-liquid systems
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Theoretical and experimental investigation into the explosive boiling potential of thermally stratified liquid-liquid systems

机译:热分层液液系统爆炸沸腾势的理论和实验研究

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摘要

The occurrence of a rapid phase transition, or so-called explosive boiling, when a cold volatile liquid comes into contact with a hot liquid or hot surface is a potential hazard in industry. This study was focused on the explosive boiling potential of thermally stratified liquid-liquid systems that result from a runaway reaction. The experimental runs were performed on both a non-reacting and a reacting system. The experimental results showed that under the analysed conditions, the cold phase was super heated but did not evaporate explosively, as the limits of superheat of the phase were not achieved The response of the cold phase appeared to be completely controlled by the interface temperature between the hot and the cold phase. In general, based on the order of magnitude of temperature differences that result from a runaway reaction in a multi-phasic system and the fact that the system is pressurised by its own vapour pressure, the occurrence of explosive boiling under runaway conditions appears unlikely for these type of systems.
机译:当冷的挥发性液体与热的液体或热的表面接触时,发生快速的相变或所谓的爆炸沸腾是工业上的潜在危险。这项研究的重点是由失控反应导致的热分层液-液系统的爆炸沸腾势。实验运行是在非反应系统和反应系统上进行的。实验结果表明,在所分析的条件下,由于未达到相的过热极限,冷相被过热,但没有爆炸性蒸发。冷相的响应似乎完全受两相之间的界面温度控制。冷热阶段。通常,基于多相系统中失控反应导致的温度差的数量级,以及该系统受到自身蒸气压的压力,对于这些失控条件,爆炸失控的发生似乎不太可能系统类型。

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