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可燃气体爆速测试仪的研制 被引量:2
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作者 屈植 甄英彪 李列平 《工业安全与环保》 2005年第5期6-7,48,共3页
爆炸速度是反映可燃气体爆炸性质的一个重要参数,掌握各种可燃气体的爆炸速度,对预防和控制在工业生产中可燃气体爆炸灾害,制定可燃性气体爆炸事故应急计划具有重要意义。所述的爆速测试仪就是通过光纤传感将可燃气体在一定距离内的爆... 爆炸速度是反映可燃气体爆炸性质的一个重要参数,掌握各种可燃气体的爆炸速度,对预防和控制在工业生产中可燃气体爆炸灾害,制定可燃性气体爆炸事故应急计划具有重要意义。所述的爆速测试仪就是通过光纤传感将可燃气体在一定距离内的爆炸时间由显示屏直观地显示出来,进而得到可燃气体的爆炸速度。研制该测试仪的初衷是为了能够完善DBZ1爆炸范围测试系统功能,使该系统不仅可以按原设计测试方法,使用声级计测量爆炸声音的大小,再通过声级来反映气体浓度的变化,而且还可以通过测试可燃气体的爆炸速度来反映气体浓度的变化。 展开更多
关键词 可燃气体 测试仪 研制 爆速 爆炸速度 气体爆炸事故 气体浓度 爆炸性质 爆炸灾害 工业生产 应急计划 爆炸时间 光纤传感 系统功能 爆炸范围 测试方法 通过测试 可燃性 显示屏 声级计
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Experimental investigation of flame propagation characteristics in the in-line crimped-ribbon flame arrester
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作者 SUN ShaoChen DING ChunHui +3 位作者 HU XiYu LIU Gang YE Chen BI MingShu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第5期678-691,共14页
An experimental system that consisted of gas mixing equipment, a sensor detection system, a data acquisition device, and an electric spark ignition device was set up to investigate fuel/air deflagration flame propagat... An experimental system that consisted of gas mixing equipment, a sensor detection system, a data acquisition device, and an electric spark ignition device was set up to investigate fuel/air deflagration flame propagation and quenching processes through a crimped-ribbon flame arrester in an enclosed horizontal pipe. Deflagration suppression experiments showed that when the concentration of flammable gas was close to the stoichiometric ratio, the evolution processes of explosion pressure for the propane-air and ethylene-air premixed gases in the pipe diameter (DN32-DN400) were similar and could be divided into four stages: isobaric combustion, slow pressure rise, quick pressure rise, and pressure oscillation. However, the explosion duration of the hydrogen-air premixed gas was relatively short, and the peak explosion pressure was high. The pressure rose quickly after the isobaric combustion stage. Therefore, the process can be divided into three stages in the pipe diameter (DN15-DN150). Deflagration speed results indicated that the propane-air flame speed initially increased and eventually decreased along with increases in the pipe diameter (DN32-DN400); however, the ethylene-air flame speed gradually increased with the increase of the pipe diameter (DNS0-DN400). No notable pattern of change in the hydrogen-air flame speed was observed in the pipe diameter (DN15-DN150). The maximum propane-air flame speed occurred at 5% concentration. The maximum flame speed for ethylene-air and hydrogen-air happened when the mixture was close to stoichiometric ratio. Under the conditions of the same size of experimental tube configuration and the same ignition distance but different pipe lengths, or the same pipe length but different ignition distances, experimental results showed that the flame arrester successfully stopped the flames at high flame speed and low explosion pressure, but failed at low flame speed and high explosion pressure. 展开更多
关键词 deflagration flame crimped-ribbon flame arrester explosion pressure flame speed flammable gas concentration
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