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Mechanisms of vapor cloud explosion and its chain reaction induced by an explosion venting flame

机译:岩云爆炸机制及爆炸排气火焰诱导的链反应

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This experimental study focused on vapor cloud explosion and its chain reaction induced by an explosion venting flame. Two vapor clouds were installed in front of the explosion venting container along the horizontal direction. Explosion flame evolution process was recorded by a high-speed camera and a schlieren system. Pressure sensors at different locations were used to acquire the pressure data. The temperature data were collected by a high-speed infrared thermal imager and three thermocouples. The changes in flame propagation characteristics, flame temperature, and pressure distribution were determined, and the mechanisms of the vapor cloud explosion and its chain reaction induced by the venting flame were deeply analyzed. Results indicate that the venting flame could induce vapor cloud explosion and set off a chain reaction, leading to the high explosion intensity. As for the ignition condition, the venting flame directly came in contact with the vapor cloud and provided the required energy for the ignition. The pressure first increased and then decreased as the distance from the venting port increased, and the highest pressure appeared in the central region of the vapor cloud. The temperature distribution also presented a similar phenomenon. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:该实验研究专注于蒸汽云爆炸及其爆炸通风火焰引起的链反应。沿水平方向安装两个蒸汽云。爆炸火焰演化过程由高速相机和Schlieren系统记录。使用不同位置的压力传感器来获取压力数据。温度数据由高速红外线热成像仪和三个热电偶收集。确定了火焰传播特性,火焰温度和压力分布的变化,并且深受通风火焰诱导的蒸气云爆炸的机制及其链反应。结果表明,通风火焰可以诱导蒸汽云爆炸并脱离链反应,导致高爆炸强度。至于点火条件,通风火焰直接与蒸汽云接触,并为点火提供所需的能量。压力首先增加,然后随着从通风口的距离增加而降低,并且在蒸汽云的中心区域中出现的最高压力。温度分布也呈现了类似的现象。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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