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Suppression effects of ultrafine water mist on hydrogen/methane mixture explosion in an obstructed chamber

机译:超细水雾对阻塞室内氢气/甲烷混合物爆炸的抑制作用

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The mitigation effects of ultrafine water mist on hydrogen/methane mixture explosions with hydrogen fraction (phi) of the range from 0% to 60% were experimentally studied in a vented chamber with obstacles. The spraying time, droplets size of water mist and the volume ratio of hydrogen were varied in the tests, and the key parameters that reflect the explosion characteristics such as the flame propagation imagines, flame propagation velocity, and explosion overpressure were obtained. The results show that the ultrafine water mist presents a significant mitigation effect on hydrogen/methane mixture explosions. The flame propagation structures are similar under the condition of without and with ultrafine water mist while the flame temperature is declined by the physical and chemical inhibition by ultrafine water mist. In addition, the mitigation effect increases with the increase of water mist flux. As a result, the maximum flame speed and overpressure of phi = 30% hydrogen/methane mixture explosion are declined by 33.3% and 58.4% under the condition of spraying for 2 min with 15 mu m ultrafine water mist, respectively. Besides, the mitigation effects of ultrafine water mist on phi = 30% hydrogen/methane mixture explosion descends evidently with the increase of the droplets size of the range from 6 mu m to 25 mu m, which due to the easier evaporation and the greater total droplets surface area of the smaller water mist. However, the explosion mitigation effect of ultrafine water mist on the hydrogen/methane mixture actually descends with the increase hydrogen fraction. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在有障碍物的通风室内,通过实验研究了超细水雾对氢分数(phi)在0%至60%范围内的氢/甲烷混合物爆炸的缓解作用。试验中改变了喷雾时间,水雾的液滴大小和氢的体积比,得到了反映爆炸特性的关键参数,如火焰的传播想象,火焰的传播速度和爆炸的超压。结果表明,超细水雾对氢气/甲烷混合物爆炸具有显着的缓解作用。在没有和有超细水雾的条件下,火焰的传播结构是相似的,而通过超细水雾的物理和化学抑制使火焰温度下降。另外,缓解效果随着水雾通量的增加而增加。结果,在用15μm超细水雾喷雾2分钟的条件下,phi = 30%氢气/甲烷混合物爆炸的最大火焰速度和超压分别降低了33.3%和58.4%。此外,随着液滴直径从6μm到25μm的增加,超细水雾对phi = 30%氢气/甲烷混合物爆炸的缓解作用明显降低,这是由于更容易蒸发和总液滴更大。水滴表面积较小的水雾。但是,超细水雾对氢气/甲烷混合物的爆炸缓解效果实际上随着氢气分数的增加而降低。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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