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181.
地下储罐爆炸事故源强估算 总被引:1,自引:0,他引:1
从能量释放的角度出发,以爆炸理论为基础,利用爆破技术中已得出的结论,着重研究地下储罐爆炸事故源强的估算方法。确定各种伤害效应的安全距离,为预防事故和安全评价提供理论依据。 相似文献
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针对吸气沉淀地处理炼油废水时存在的问题,采取了相应的改进措施,取得了满意的效果。对沿回流缝多点进水装置的工艺设计进行了详细论述。 相似文献
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槽上卸料车及矿槽口尘源点具有移动性特征,有效的矿槽槽口密闭以及可靠的随卸料车移动的风管连接装置,是保证除尘良好效果的要点.常用的除尘方法各有其特点和适用条件,应根据作业方式及矿槽结构状况有针对性的采用. 相似文献
187.
针对大型油罐火灾爆炸对人员伤亡危害范围的问题,采用PHAST软件模拟定量分析了外部环境(风速、大气稳定度、空气湿度)、初始条件(泄漏点离地高度、泄漏孔直径)和其他因素(防火堤面积)对火灾爆炸伤亡半径的影响,根据模拟结果拟合了外部环境和初始条件与池火灾和蒸气云爆炸危害范围的关系式。结果表明:在相同条件下,软件模拟与实验结果误差较小,该研究具有可信性;池火灾危害范围随风速、泄漏点离地高度、泄漏孔当量直径和防火堤面积的增加而增加,而与大气稳定度的关系不大;蒸气云爆炸危害范围随风速的增加而降低,随大气稳定度和泄漏孔当量直径的增加而增加,而与泄漏点离地高度和空气湿度影响不大;拟合得到的外部环境和初始条件与池火灾和蒸气云爆炸危害范围的关系式可为大型油罐火灾爆炸事故中相关作业人员的应急撤离提供决策参考。 相似文献
188.
Industrial technical accidents caused by natural disasters are defined as Natech accidents, such as earthquakes and landslides, which can cause tremendous damage to industrial storage tanks, and lead to accidental leakage and even serious fire and explosion accidents. In this study, a landslide-induced storage tank accident model under earthquake disasters was proposed, and the relationship between landslide mass impact and target impact resistance was taken into account. Also, tank failure and the formation of the pool fire were considered to be the consequences of the Natech accident. Through scenario deduction, the dynamic process of landslide Natech was transformed qualitatively into a disaster chain network diagram composed of a scenario state, a disaster-causing factor and emergency management. The Bayesian network was used to learn and deduce the parameters of the network diagram, and in this process, the prior probability and conditional probability of nodes were obtained primarily by Monte Carlo simulation, and by an improved expert scoring method based on the fuzzy set theory. Through visualization software, the sensitivity analysis of landslide Natech was achieved. Finally, a case study of a liquor storage tank area in Guizhou Province, China was carried out, and the results show that a large amount of hazardous material leakage caused by buckling is key to the formation of pool fire accidents, and several prevention measures for earthquake-induced landslide Natech was proposed according to the sensitivity analysis. 相似文献
189.
In quantitative fault tree analysis of a system, exact failure probability values of components are utilized to calculate the failure probability of the system. However, in many real world problems, it is problematic to get precise and sufficient failure data of system components due to insufficient or imprecise information about components, changing environment or new components. A methodology has already been developed by employing fuzzy set theory for the system reliability evaluation by utilizing qualitative failure data of system components when quantitative failure data of components are inaccessible or insufficient. This paper extends the concept of fuzzy set to intuitionistic fuzzy set and proposes a novel approach to evaluate system failure probability using intuitionistic fuzzy fault tree analysis with qualitative failure data of system components. The qualitative failure data such as expert opinions are collected as linguistic terms. These linguistic terms are then quantified by triangular intuitionistic fuzzy numbers in form of membership function and non-membership function. Additionally, a method is developed for combining the different opinions of experts. To illustrate the applicability of proposed approach, a case study of the crude oil tank fire and explosion accident is performed. The obtained results are very close to the results from pre-existing approaches which confirm that the proposed approach is a more realistic alternative for the study of system reliability in intuitionistic fuzzy environment when quantitative failure data of system components are not known. To help decision makers for improving the security execution of the crude oil tank system, importance measures including Fussell-Vesely importance and cut sets importance are also executed. 相似文献
190.
为及时有效地抑制石油储罐内发生火灾后的初始火焰,防止火势蔓延后造成更为严重的连锁爆炸事故,研发1种由火灾快速探测系统和快速喷粉系统组成的快速灭火系统,并通过进行性能试验对此系统在石油储罐内的灭火效果进行验证。结果表明:火焰探测系统在探测器距火焰5 m范围内检验并输出报警信号的时间小于50 ms;快速喷粉装置在装粉量为5 kg时,可在310 ms内完成阀门开启至喷粉结束的整个过程。灭火系统可快速检测到火焰并使灭火剂快速有效地达到灭火点,避免火灾发生,具有一定工程应用价值。 相似文献