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泄漏引发液体过热爆沸机理及规律研究

时事成 王苏盼 潘旭海 马煜衡 蒋军成

化工学报2019,Vol.70Issue(10):4089-4098,10.
化工学报2019,Vol.70Issue(10):4089-4098,10.DOI:10.11949/j.issn.0438-1157.20190617

泄漏引发液体过热爆沸机理及规律研究

Study on mechanism and law of liquid overheating and explosive boiling caused by leakage

时事成 1王苏盼 1潘旭海 2马煜衡 3蒋军成1

作者信息

  • 1. 南京工业大学安全科学与工程学院,江苏南京211816
  • 2. 南京工业大学火灾与消防研究所,江苏南京 211816
  • 3. 江苏省危险化学品本质安全与控制技术重点实验室,江苏南京211816
  • 折叠

摘要

Abstract

To explore the mechanism and law of liquid superheating and boiling caused by tank leakage, a small device was established to study the bubble evolution, pressure and medium superheat response during the bumping process. Upon the typical features of medium superheat degree, overheat time was further introduced to characterize the delay degree of boiling. The results show that a large number of bubbles were generated and grew rapidly in the medium after the vessel rupture. Bubble-growth process could be divided into a relatively stable stage and an accelerated stage, and the obvious pressure recovery was attributed to the accelerated growth of bubbles. According to the response of temperature sensors in the medium, the boiling occurred and spread from top to bottom and from the inner wall to the inside of the medium. And the medium underwent a cycle of supercoiling—saturation—superheat—saturation—supercooling during boiling. In addition, it was found that the increase of initial pressure and the decrease of initial liquid level could both improve the maximum superheat degree of medium, especially a maximum superheat of 9. 4℃with the initial liquid level of 50%. What’s more, the ascent of the initial pressure or the initial liquid level also hold a significant lower overheat time. And the rise of the initial liquid level would contribute to a more serious rebound phenomena of pressure. On the basis of the overheat time obtained by experiments, the mathematical model of the overheat time was also verified. The results showed that the calculation of the mathematical model was basically consistent with the experimental data.

关键词

爆沸/气化/两相流/过热度/过热时间/模型

Key words

explosive boiling/vaporization/two-phase flow/superheat degree/overheat time/model

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资源环境

引用本文复制引用

时事成,王苏盼,潘旭海,马煜衡,蒋军成..泄漏引发液体过热爆沸机理及规律研究[J].化工学报,2019,70(10):4089-4098,10.

基金项目

国家重点研发计划项目(2017YFC0804700, 2016YFC0800100) (2017YFC0804700, 2016YFC0800100)

化工学报

OA北大核心CSCDCSTPCD

0438-1157

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