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Experimental investigation on micro-dynamic behavior of gas explosion suppression with SiO_2 fine powders 被引量:9
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作者 Xianfeng Chen,~(1,2,a)) Yin Zhang,~1 Qingming Zhang,~2 Shaofeng Ren,~1 and Jianxing Wu~1 1)School of Natural Resources and Environmental Engineering,Wuhan University of Technology, Wuhan 430070,China 2)State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology, Beijing 100081,China 《Theoretical & Applied Mechanics Letters》 CAS 2011年第3期58-61,共4页
To study the effect of inert dust on gas explosion suppression mechanism,SiO_2 fine powders were sprayed to suppress premixed CH_4-Air gas explosion in a 20 L spherical experimental system.In the experiment,high speed... To study the effect of inert dust on gas explosion suppression mechanism,SiO_2 fine powders were sprayed to suppress premixed CH_4-Air gas explosion in a 20 L spherical experimental system.In the experiment,high speed schlieren image system was adopted to record explosion flame propagation behaviors,meanwhile,pressure transducers and ion current probes were used to clearly record the explosion flame dynamic characteristics.The experimental results show that the SiO_2 fine powders suppressed evidently the gas explosion flame,and reduced the peak value of pressure and flame speed by more than 40%.The ion current result shows that the SiO_2 super fine powders were easy to contact with and absorb free radicals near the combustion reaction region,which greatly reduced the combustion reaction intensity,and in turn influenced the flame propagation and pressure rising. 展开更多
关键词 fine powder gas explosion explosion suppression reaction mechanism
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Experimental study on gas explosion suppression based on ferrocene 被引量:4
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作者 Ming-Gao YU Kai ZHENG +1 位作者 Li-Gang ZHENG Xiao-Ping WEN 《Journal of Coal Science & Engineering(China)》 2013年第3期358-362,共5页
In order to study the gas explosion suppression performance based on ferrocene, the self-constructed experimental facility was used to accomplish the experiment of gas explosion suppression. By means of thermogravimet... In order to study the gas explosion suppression performance based on ferrocene, the self-constructed experimental facility was used to accomplish the experiment of gas explosion suppression. By means of thermogravimetric analysis, the thermal characteristics of ferrocene have been gotten and the gas explosion suppression mechanism of ferrocene has been analyzed. The results show that ferrocene had good effects on gas explosion suppression, and the explosion pressure and flame propagation speed declined obviously. When ferrocene concentration is 0.08 g/L and methane volume concentration is 9.5%, the maximum explosion overpressure and maximum flame propagation speed of methane-air respectively decreased by about 59.5% and 19.6%, respectively. TG and DSC curves showed that the mass loss of ferrocene consists of two processes, which are sublimation and lattice fracture. The temperature of mass loss ranged from 128 ℃ to 230 ℃. The results showed profoundly theoretical significance to gas explosion suppression by ferrocene in coal mines. 展开更多
关键词 FERROCENE gas explosion THERMOGRAVIMETRIC mass loss explosion suppression mechanism
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Combined effects of obstacle and fine water mist on gas explosion characteristics 被引量:5
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作者 Xiaoping Wen Mengming Wang +2 位作者 Fahui Wang Minggao Yu Haoxin Deng 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第12期131-140,共10页
Combined effects of obstacles and fine water mist on a methane-air explosion of a semi-closed pipe were investigated experimentally.In this study,the diameter of the water mist,the location,and the number of obstacles... Combined effects of obstacles and fine water mist on a methane-air explosion of a semi-closed pipe were investigated experimentally.In this study,the diameter of the water mist,the location,and the number of obstacles was considered.The results demonstrated that 5 μm water mist present a significant suppression affected while 45 μm shows a slight promotion effected on a gas explosion of the condition without obstacles.In the presence of an obstacle,however,the inhibitory effect of 5 μm water veils of mist dropped significantly during flame propagation,and the effect of 45 μm water veils of mist changed from the enhancement of inhibition,and its inhibitory effect was significant.The inhibitory effect of 45 μm water veils of mist on gas explosion weakened firstly and then enhanced with the increasing distance between obstacle location from the ignition location as well as in several obstacles. 展开更多
关键词 Fine water mist gas explosion suppression OBSTACLE Couple effects
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Comparative experimental study on inhibiting gas explosion using ABC dry powder and diatomite powder 被引量:6
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作者 DENG Jun PU Guang-mei +1 位作者 LUO Zhen-min CHENG Fang-ming 《Journal of Coal Science & Engineering(China)》 2012年第2期138-142,共5页
Using a 20 L spherical explosion suppressing test system, the largest gas explosion pressure and maximum pressure rising rate with additives of ultra-fine ABC dry powder and diatomite powder were tested and compared, ... Using a 20 L spherical explosion suppressing test system, the largest gas explosion pressure and maximum pressure rising rate with additives of ultra-fine ABC dry powder and diatomite powder were tested and compared, and the explosion suppression effect of the two kinds of powder was analyzed. Experimental results show that both powders can suppress gas ex- plosion and ABC dry powder is superior to diatomite powder. Adding two powders under the same experimental conditions, when methane concentration is 7.0%, the maximum explosion pressure decreased 39% and 4%, respectively, while the rising rate of the maximum pressure decreased 80% and 53%, respectively. When methane concentration is 9.5%, the maximum ex- plosion pressure decreased 14% and 12%, respectively, the rising rate of maximum pressure decreased 62% and 27%, respec- tively, the maximum explosion pressure decreased 23% and 18%, respectively, while the rising rate of the maximum pressure decreased 77% and 70%, respectively. When methane concentration is 12.0%, the explosion suppression effect of ultra-fine ABC dry powder is not affected by the methane concentration, and the explosion suppression effect of diatomite powder under high methane concentrations is more obvious. 展开更多
关键词 gas explosion ABC dry powder explosion suppression DIATOMITE
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Active protection of work area against explosion of dust-gas mixture
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作者 Zbigniew Szkudlarek Sebastian Janas 《International Journal of Coal Science & Technology》 EI CAS CSCD 2021年第4期674-684,共11页
Potentially explosive atmosphere can occur not only in the production systems of the food,energy,chemical and petrochemical industries but also in the production processes of the mining industry.Gases,vapours,mists an... Potentially explosive atmosphere can occur not only in the production systems of the food,energy,chemical and petrochemical industries but also in the production processes of the mining industry.Gases,vapours,mists and dusts arise can escape in an uncontrolled way during production,processing,transportation and storage of flammable substances.In combination with oxygen,they create explosive atmospheres that,if ignited,lead to an explosion causing catastrophic damage to peopled lives and property.To protect against the results of hazardous dust-gas mixtures explosions in a confined work space,where employees can stay,various control and protection mechanisms are used in the form of an active explosion-proof system.The article presents the results of tests on an active system for limiting the effects of ignition of gas and/or dust based on a highly efficient explosion suppression system-equipped with an ignition detection system,high-pressure fire extinguisher and a power supply and trigger system.Smokeless powder was used as the explosive charge and sodium bicarbonate as the suppressive material.Tests of the effectiveness of the active explosion suppression system were carried out on two devices:a small-size dry dust collector and a zone extinguishing system adapted for direct explosion suppression in closed working spaces.In both cases,the explosion suppression process took place through the action of extinguishing powder blown out of the fire extinguisher after membrane perforation by compressed combustion products. 展开更多
关键词 gas hazard Explosive dust suppression of explosion Safety of work area
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泄爆条件下高速响应抑爆装置抑制淀粉爆炸研究
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作者 姜一昌 宋辰 +1 位作者 邹杰 肖飞 《消防科学与技术》 CAS 北大核心 2023年第6期735-741,共7页
为探究能有效抑爆大型连通容器内粉尘爆炸的安全技术,以ABC干粉为抑爆介质,利用自主研制的抑爆装置,基于爆炸泄放条件下的5 m^(3)工业级容器内开展玉米淀粉-空气混合物爆炸抑制试验,探究该工况下粉尘爆炸超压峰值和火焰传播速度变化规律... 为探究能有效抑爆大型连通容器内粉尘爆炸的安全技术,以ABC干粉为抑爆介质,利用自主研制的抑爆装置,基于爆炸泄放条件下的5 m^(3)工业级容器内开展玉米淀粉-空气混合物爆炸抑制试验,探究该工况下粉尘爆炸超压峰值和火焰传播速度变化规律,并对自主研发的抑爆装置能否有效抑爆进行试验测试。结果表明:泄放条件下容器内最大爆炸压力为19.59 kPa,自容器至连通管道末端压力峰值逐渐减小,火焰传播速度呈现随距离增加而增大的趋势;化学抑爆是爆炸压力波-火焰与高压氮气-抑爆剂雾段相互反应,包含气流对冲、惰化与吸放热的复杂过程,因此抑爆装置的使用需要保留足够的抑爆距离。 展开更多
关键词 淀粉爆炸 爆炸泄放 抑爆装置 连通容器 化学抑爆
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水抑制瓦斯爆炸的机理研究 被引量:67
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作者 陆守香 何杰 +1 位作者 于春红 秦友花 《煤炭学报》 EI CAS CSCD 北大核心 1998年第4期417-421,共5页
分析水参与瓦斯爆炸的化学反应动力学机理,并通过爆炸反应平衡计算,说明在瓦斯爆炸链反应过程中,主要是水作为第三体或惰性液滴破坏其中的链载体,从而降低瓦斯爆炸反应能力.瓦斯空气混合物水含量增大,瓦斯爆炸能力下降,强度降低... 分析水参与瓦斯爆炸的化学反应动力学机理,并通过爆炸反应平衡计算,说明在瓦斯爆炸链反应过程中,主要是水作为第三体或惰性液滴破坏其中的链载体,从而降低瓦斯爆炸反应能力.瓦斯空气混合物水含量增大,瓦斯爆炸能力下降,强度降低,爆炸极限浓度范围缩小.这些结论与实验结果一致. 展开更多
关键词 瓦斯爆炸 爆炸抑制 化学平衡 水抑制
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真空环境下铝粉粒度与形状对RDX基炸药爆炸场压力和温度的影响 被引量:10
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作者 黄亚峰 田轩 +1 位作者 冯博 王晓峰 《含能材料》 EI CAS CSCD 北大核心 2016年第2期144-148,共5页
为研究真空环境下铝粉对含铝炸药爆炸场压力和温度的影响规律,利用密闭爆炸罐测量了粒度为4,13,28μm的球状铝粉和130μm的片状铝粉的四种含铝炸药的爆炸场压力和温度。结果表明,铝粉对含铝炸药爆炸场压力的降低显著性的顺序是13μm球... 为研究真空环境下铝粉对含铝炸药爆炸场压力和温度的影响规律,利用密闭爆炸罐测量了粒度为4,13,28μm的球状铝粉和130μm的片状铝粉的四种含铝炸药的爆炸场压力和温度。结果表明,铝粉对含铝炸药爆炸场压力的降低显著性的顺序是13μm球状铝粉>4μm球状铝粉>28μm球状铝粉>130μm片状铝粉,铝粉对含铝炸药爆炸场温度的提升作用大小顺序是28μm球状铝粉>130μm片状铝粉>4μm球状铝粉>13μm球状铝粉,显示铝粉对含铝炸药爆炸场压力和温度的影响与铝粉粒度大小不具有相关性。 展开更多
关键词 化学反应动力学 含铝炸药 平衡压力 平衡温度
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含化学反应膛口流场的无网格数值模拟 被引量:6
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作者 吴伟 许厚谦 +1 位作者 王亮 薛锐 《爆炸与冲击》 EI CAS CSCD 北大核心 2015年第5期625-632,共8页
基于无网格方法,对包含大位移运动边界和非平衡化学反应的膛口流场进行了数值模拟。所发展算法是基于线性基函数最小二乘显式无网格方法,忽略黏性及湍流的影响,对流场采用ALE(arbitrary Lagrangian-Eulerian)形式的Euler方程描述,对流... 基于无网格方法,对包含大位移运动边界和非平衡化学反应的膛口流场进行了数值模拟。所发展算法是基于线性基函数最小二乘显式无网格方法,忽略黏性及湍流的影响,对流场采用ALE(arbitrary Lagrangian-Eulerian)形式的Euler方程描述,对流通量和化学反应源项采用多组分HLLC(Harten-Lax-van Leer-Contact)格式和有限速率反应模型计算,对于运动边界造成的点云畸形采用局部点云重构方法处理,重构过程中采用虚拟边阵面推进。对圆柱绕流和激波诱导燃烧流场进行了数值模拟,验证了重构方法和化学反应计算的有效性。最后对12.7mm口径机枪膛口流场进行了模拟,结果同实验照片、非结构网格方法结果吻合较好,数值结果清晰地再现了膛口初始冲击波、膛口冲击波、欠膨胀射流波系结构的动力学发展过程,以及膛口焰的时间、空间分布特征。 展开更多
关键词 爆炸力学 动态点云 无网格方法 膛口流场 非平衡反应流
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惰性颗粒抑制CH_4/O_2/N_2爆炸过程的二维数值模拟与实验验证 被引量:3
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作者 董刚 邱榕 +2 位作者 蒋勇 范宝春 谢波 《燃烧科学与技术》 EI CAS CSCD 北大核心 2005年第4期329-335,共7页
使用带基元化学反应的两相Eu ler方程,对惰性颗粒抑制高温火团诱导的CH4/O2/N2爆炸过程进行了二维数值模拟.其中,采用全耦合二阶精度的TVD格式求解气相方程,采用M acCorm ack格式求解惰性颗粒相方程,同时用分步方法处理方程组的耦合刚性... 使用带基元化学反应的两相Eu ler方程,对惰性颗粒抑制高温火团诱导的CH4/O2/N2爆炸过程进行了二维数值模拟.其中,采用全耦合二阶精度的TVD格式求解气相方程,采用M acCorm ack格式求解惰性颗粒相方程,同时用分步方法处理方程组的耦合刚性,用Gear隐式方法处理化学反应刚性.计算并讨论了不同颗粒相浓度条件下,气相压力场、气相密度和颗粒相浓度的分布、爆炸衰减的气相结构以及两相间的能量传递.结果表明,惰性颗粒相的堆积可阻碍气相爆炸波的传播,使其衰减为引导激波,引导激波继续向颗粒相传递能量,而进一步衰减最终使得爆炸波被抑制.随着颗粒相浓度的增大,爆炸波的抑制更明显.计算结果与大型水平管的实验结果进行了比较,定性证明了计算的合理性. 展开更多
关键词 爆炸抑制 惰性颗粒 基元化学反应 两相化学反应流
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PBX9502炸药爆轰产物的状态方程 被引量:3
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作者 赵艳红 刘海风 张广财 《爆炸与冲击》 EI CAS CSCD 北大核心 2010年第6期647-651,共5页
采用van der Waals等效单组分流体模型和Ross硬球微扰理论软球修正模型,计算了爆轰气相产物的状态方程;用石墨相、金刚石相、类石墨液相和类金刚石液相4种相态描述凝聚成分,由Gibbs自由能最小确定了不同状态下的凝聚产物相态。对爆轰产... 采用van der Waals等效单组分流体模型和Ross硬球微扰理论软球修正模型,计算了爆轰气相产物的状态方程;用石墨相、金刚石相、类石墨液相和类金刚石液相4种相态描述凝聚成分,由Gibbs自由能最小确定了不同状态下的凝聚产物相态。对爆轰产物混合系统采用自由能最小原理,通过化学平衡方程组求解了炸药爆轰产物系统的平衡组分。使用该理论计算了高含碳炸药PBX9502 Chapman-Jouguet(CJ)点的爆轰参数,计算值与实验值符合很好;同时计算了3条等温线,并与Sesame库比较,发现温度超过1000℃时,计算值与Sesame库的计算结果比较接近。在计算的5 802K等温线上发现了一个拐点,分析发现是由于在此处游离态的碳发生了相变。 展开更多
关键词 爆炸力学 状态方程 化学平衡方程组 爆轰产物 PBX9502炸药
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化学隔离抑爆系统在纺织行业的应用
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作者 石建中 汪秀清 王正纲 《武汉纺织大学学报》 2011年第6期37-39,共3页
介绍化学隔离抑爆系统的工作原理及其基本组成,以及典型的化学隔离抑爆系统产品,探讨在纺织行业化学隔离抑爆系统的安装位置。指出设备安装化学隔离抑爆系统后,不仅可预防和抑制其爆炸的发生,而且可以降低对其强度的要求,从而节省设备... 介绍化学隔离抑爆系统的工作原理及其基本组成,以及典型的化学隔离抑爆系统产品,探讨在纺织行业化学隔离抑爆系统的安装位置。指出设备安装化学隔离抑爆系统后,不仅可预防和抑制其爆炸的发生,而且可以降低对其强度的要求,从而节省设备的经济投入。最后,为更全面更安全的保护过程设备,建议化学隔离抑爆系统应与更多的保护方案组合使用。 展开更多
关键词 化学隔离 抑爆 纺织 应用
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Methane absorption and application of mixed organic aggregate prepared from Span80 and alkaline salt 被引量:1
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作者 ZHANG ZengZhi GU Na +1 位作者 CAO Lei SHU XinQian 《Science China(Technological Sciences)》 SCIE EI CAS 2009年第8期2155-2160,共6页
The water-based materials for mine gas absorption and explosion suppression were prepared, in which the mixed organic aggregate of Span80 and alkaline salt can be used as methane absorbent. Methane was used as a model... The water-based materials for mine gas absorption and explosion suppression were prepared, in which the mixed organic aggregate of Span80 and alkaline salt can be used as methane absorbent. Methane was used as a model of mine gas, and the absorptions of methane with different complex materials were studied using head space gas chromatography. Then the state of aqueous material was characterized with laser light scattering instrument and the effects of different complex materials on explosion suppression were preliminarily studied in explosion chamber which can simulate mine gas explosion. The research results showed that complex material could absorb methane and there was some corre- lation between the mean diameter of organic aggregate in aqueous material and the absorption effect. Additionally, the aqueous material could suppress the methane explosion to some degree. The material can absorb mine gas in atomization condition, therefore, degrease mine gas concentration and influence the distribution of mine gas in the space, and then suppress the mine gas explosion to some extent. 展开更多
关键词 sorbitan monooleate ALKALINE SALT ORGANIC AGGREGATE METHANE ABSORPTION mine gas explosion suppression
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