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1.
油田注空气工艺防爆实验的研究   总被引:3,自引:1,他引:2  
通过实验,研究可燃气体(甲烷)的爆炸极限规律和加入惰性气体(氮气)后可燃气体临界氧含量的变化规律,测定在特定条件下甲烷的爆炸极限范围和安全氧含量,根据实验结果,确定氧含量的安全标准并提出相应的事故预防与控制措施,确保注空气采油技术实施过程中的风险处于可控制范围内,使注空气采油技术得到更广泛的应用。  相似文献   

2.
可燃气体(液体蒸气)爆炸测试装置的改进研究   总被引:3,自引:2,他引:1  
以可燃气体(液体蒸气)爆炸测试装置改进为主线,综述国内外各种测试装置的优缺点。对不同装置、测试方法以及测试原理进行比较分析,研讨可燃气体爆炸的特点和爆炸参数测试方法以及对现有测试装置的改进方案。即对20 L爆炸测试装置的配气系统和控制系统进行了合理改进,使引射混合配气与循环混合配气相结合,使可燃气体(液体蒸气)与空气混合更均匀,控制操作更简便,还指出了今后研究工作中应注意的一些问题和研究重点。  相似文献   

3.
李英 《劳动保护》2003,(7):61-63
空气中易燃易爆物质主要是指空气中存在的可燃气体和易燃液体蒸气(简称为可燃气体)。可燃气体与空气混合时遇火源可发生燃爆的最低浓度称为爆炸下限(LEL),用容积百分数(V%)或每立方米中的毫克数表示(mg/m^3)。最高浓度称为爆炸上限。上、下限之间的爆炸浓度称为爆炸范围。  相似文献   

4.
利用20L圆柱形可燃气体(蒸气)爆炸测试实验装置,用预先配制好浓度的盐酸溶液和亚氯酸钠溶液现场发生反应生成二氧化氯气体,对二氧化氯气体爆炸特性参数进行测定。采用TST6150动态数据储存仪和压力传感器等实验设备获得了高清晰度的二氧化氯气体爆炸压力变化曲线。通过综合分析实验结果,得到了二氧化氯气爆炸极限和爆炸压力变化规律。根据该研究结果,对于预防二氧化氯气体爆炸事故的发生提供数据参考,对指导安全生产和使用,均具有实际意义。  相似文献   

5.
多功能球形爆炸容器研究   总被引:1,自引:0,他引:1  
20L球形爆炸容器是通用的研究气体、可燃液体蒸气和粉尘等爆炸参数的重要仪器。本文以现有的压力容器标准为依据,将爆炸瞬态载荷转换成等效静态载荷,运用动力系数法,研究出了一种可用来做气体、可燃液体蒸气和粉尘爆炸实验的球形爆炸容器。用此球形爆炸容器进行液压实验和爆炸极限实验,实验得到甲烷的爆炸下限为4.5%,上限为14.0%;乙醇蒸气爆炸下限为2.5%,上限为15.0%;10μm镁粉粉尘爆炸下限为45g/m3,实验所得数据与文献中的差别不大。结果证明本文所设计的多功能球形爆炸容器科学合理,能够满足爆炸实验要求。  相似文献   

6.
一种新型可燃气体动态爆炸浓度极限测试与演示装置已由中国地质大学研制成功。它可用于一般可燃气体爆炸浓度极限测试,以及连续直观观察爆炸极限范围内随可燃气体与助燃气体混合比例变化出现的各种化学反应状况。该装置使用小型空气压缩机作为助燃空气输送源,经混合器与可燃气体混合,由流量计与微调开关调节混合比,通过高压电火  相似文献   

7.
对可燃气体(或蒸气)最大试验安全间隙值的测定方法进行了研究,设计了一套测定可燃气体(或蒸气)与空气混合物混合爆炸的最大试验安全间隙值的装置,用其所测数据与IEC标准中的推荐数据具有较好的可比性,为爆炸性气体(或蒸气)的分级、分组以及隔爆型电气设备的设计提供了理论依据。  相似文献   

8.
一、概述 爆炸极限是表示可燃气体、蒸气和可燃粉尘危险特性的重要参数之一,爆炸极限范围越宽,其危险性越大。对爆炸极限影响因素的了解,有助于搞好安全管理及安全生产,能有效防止和遏制燃烧爆炸事故的发生。  相似文献   

9.
多元可燃性混合气体临界氧浓度的测定   总被引:7,自引:0,他引:7  
可燃性气体(蒸气)的临界氧浓度目前只限于对单元气体混合物的研究,且影响因素较少提及。通过实验测定了人工煤气、液化石油气的爆炸极限和临界氧浓度,对可燃性气体(蒸气)临界氧浓度的影响因素进行了研究,所测定的数据为煤气、液化石油气的安全防爆工作提供了依据。  相似文献   

10.
为研究矿井火区中一氧化碳(CO),氢气(H2),乙烯(C2H4)和乙烷(C2H6)等可燃气体对空气中甲烷(CH4)爆炸极限和爆炸危险度(F值)的影响及双组份可燃气体爆炸界限和爆炸危险度的变化,采用空气中可燃气体爆炸极限测定方法完成一系列试验,测定加入不同体积分数其他可燃气体时CH4的爆炸极限。其他可燃气体的加入,均使空气中CH4和混合可燃气体的爆炸界限加宽;同时加大了CH4和混合可燃气体的爆炸危险度。试验结果表明:加入C2H4气体对CH4爆炸极限影响较大,使CH4及其双组份混合气体的爆炸危险度明显增大;加入量为2.0%时,CH4的F值增加了540%。而加入CO气体比加入C2H6,C2H4和H2等气体对CH4及混合气体的爆炸极限影响都小。  相似文献   

11.
This paper reports the results of flammability studies for methane, propane, hydrogen, and deuterium gases in air conducted by the Pittsburgh Research Laboratory. Knowledge of the explosion hazards of these gases is important to the coal mining industry and to other industries that produce or use flammable gases. The experimental research was conducted in 20 L and 120 L closed explosion chambers under both quiescent and turbulent conditions, using both electric spark and pyrotechnic ignition sources. The data reported here generally confirm the data of previous investigators, but they are more comprehensive than those reported previously. The results illustrate the complications associated with buoyancy, turbulence, selective diffusion, and ignitor strength versus chamber size. Although the lower flammable limits (LFLs) are well defined for methane (CH4) and propane (C3H8), the LFLs for hydrogen (H2) and its heavier isotope deuterium (D2) are much more dependent on the limit criterion chosen. A similar behavior is observed for the upper flammable limit of propane. The data presented include lower and upper flammable limits, maximum pressures, and maximum rates of pressure rise. The rates of pressure rise, even when normalized by the cube root of the chamber volume (V1/3), are shown to be sensitive to chamber size.  相似文献   

12.
化学品事故应急响应中危害距离的确定   总被引:2,自引:0,他引:2  
介绍了不同国家、机构确定的毒性物质、易燃易爆物质紧急暴露限值和化学品事故中危害距离的确定方法,并以液氯钢瓶泄漏事故说明毒性危害距离的确定,以天然气管线泄漏火灾、爆炸事故说明火灾爆炸事故危害距离的确定。  相似文献   

13.
井喷失控点火时间与方位探讨   总被引:1,自引:0,他引:1  
利用计算流体力学方法(CFD)对井喷失控后天然气扩散过程进行研究,在有限元基础上建立模型,采用κ-ε紊流模型求解得出井喷失控后可燃性蒸气云随时间、风速变化的影响情况,求出稳态以后易爆区域的蒸气云形状。取5.0%和15%作为甲烷的爆炸上、下限,在不同区域进行点火求解爆燃结果,通过比较给出推荐的点火时间和点火方位。该研究成果可对井喷失控蒸气云爆燃危害性进行预测,有助于指导井喷失控进行点火放喷工作,避免爆燃事故的发生。  相似文献   

14.
In industries some dangerous liquefied gases may accidentally release and it may form a flammable or toxic mixture after mixing with air. One tool that is being developed in industry for two-phase cloud dispersion modeling is computational fluid dynamics (CFD). In this paper, the dispersion processes of different dangerous materials including liquefied chlorine, liquefied ammonia and liquefied petroleum gas were simulated in the same condition to analyze the characteristics of the initial expansion processes by CFD tool. The heat and mass transfer between droplets and the vapor after an instantaneous release event was calculated by using the Eulerian–Lagrangian method. The results from a number of 3-D CFD based studies were compared with the available small-scale experimental results. The results show that the present model and numerical simulation are reliable.  相似文献   

15.
The thermal runaway of lithium-ion battery (or Li-ion battery, LIB) results in scrap of battery and fire, with the toxic and flammable gases generated. In this work, a self-made device was to collect gases from LIB thermal runaway, when the batteries were under different states of charge (SOC), temperatures of the environment and powers of external heating. Three samples of the collected gases were analyzed to get the results of the composition and content by chromatography-mass spectrometry system (GC-MS). The lower explosion limits (LELs) of the gases was tested by FRTA explosion limit instrument. And then the LEL of three analyzed samples whose composition and content were known by GC-MS were calculated via theoretical formulas. The calculated LELs were compared with those of the instrument test. The errors of the two results of three samples are 2.1%, 1.9%, and 0.4%. The Le Chatelier Formula and empirical formula provide a way to evaluate the LEL of the battery runaway gas more quickly.  相似文献   

16.
液化石油气爆炸范围及爆炸力的测定   总被引:1,自引:0,他引:1  
液化石油气、瓦斯等可燃气体的爆炸防治是一个非常迫切需要解决的问题.利用自制可燃气体爆炸箱来模拟可燃气体爆炸,并通过光干涉甲烷测定仪来测定混合气体爆炸时的甲烷百分含量,再推算出液化石油气的爆炸范围和计算爆炸力.  相似文献   

17.
气体、粉尘爆炸灾害及其安全技术   总被引:9,自引:14,他引:9  
对可燃性气体、蒸汽、粉尘的爆炸特性及其抑爆、隔爆安全技术进行了系统的研究 ,并对常见的可燃性气体、蒸汽和粉尘的各种爆炸特性参数和气体抑爆安全技术参数进行了实验测定。根据实验测定结果得到的结论对这种可燃性物质的安全应用具有重要的参考价值  相似文献   

18.
工厂三维建模及其事故模拟   总被引:1,自引:1,他引:0  
利用Microstation软件对某化工厂区进行三维建模,在考虑实际外界风向、风速,不同点火源位置等重要影响因素的条件下,运用计算流体动力学(CFD)软件FLACS,研究了有毒、易燃易爆的氯乙烯液化气体储罐安全阀气体泄漏和储罐底部物料管线液态氯乙烯的泄漏、蒸发、扩散和爆炸作用等过程,计算结果可以给出氯乙烯火灾、爆炸或扩散中毒等事故后果的影响范围和相关精确物理量。模拟结果表明,对于常温下的氯乙烯液化气体球罐,球罐安全阀泄漏后罐区及周边不会有燃烧或爆炸危险;而物料管线在特定的液相泄漏情景下,蒸发扩散的氯乙烯气云则有可能发生气云爆炸;但在弱约束条件下,爆炸冲击波作用比较微弱。该研究方法及其结果可以为石油化工企业选址、设计布局、安全规划、风险分析、应急救援及事故调查等提供更加准确的依据。  相似文献   

19.
The flammability characteristics of refrigerants are affected by environmental factors, making them prone to flammability and explosion accidents in cooling systems. In this paper, the flammability characteristics of R1234yf–air mixtures with N2 and CO2 were investigated comparatively at temperatures between 20 and 50 °C at 80% relative humidity. The lower and upper flammability limits of R1234yf were measured. The limiting oxygen concentration (LOC), critical flammable ratio (CFR), and critical flammable concentration (CFC) of the R1234yf–air mixtures with inert gases were investigated. The paper developed a linear formula between the flammability limit of R1234yf and the temperature. The changes in CFC with different temperatures were negligible for R1234yf. Furthermore, the mixed refrigerant had both non-flammability and the lowest vapor pressure when the CFR of the R1234yf/CO2 mixture was 2.9. The experimental results were used to propose a new prediction model to estimate the flammability limits of R1234yf. Finally, molecular simulation explained the effect of inert gases on the flammability of R1234yf from a microscopic point of view. The research aimed to provide valid evidence and data for preventing flammable and explosive refrigerant incidents.  相似文献   

20.
Organic flammable liquids and their mixtures, which possess high risk of combustion and explosion, are widely used as raw materials and solvents in chemical and pharmaceutical industries. Lower flammability limits (LFL) is one of the most important parameters to characterize the combustion and explosion hazards of combustible gases and liquid vapors. The LFL of various ternary organic mixtures consist of ketone (acetone and butanone), ester (ethyl acetate) and alcohol (ethanol and isopropanol) were tested at 25 °C and atmospheric pressure. The results showed that resulted LFL values of the experiment were always lower than those calculated by volume fraction weighting method when the volume fraction of alcohol was less than 20 vol% but more than 10 vol%. The co-existence of alcohol and ethyl acetate had synergistic effect on reducing the LFL values of ternary organic mixtures and thus increased their explosive risk. The mechanism of synergistic effect was analyzed, and the results showed that the OH· and H· radicals produced by the oxidation decomposition of alcohols and esters accelerated the oxidation process of ternary organic mixtures, which led to the decrease of experimental LFL values and thus corresponding increased of their explosive risk. This study would be expected to provide some guidance for designing or choosing safer and more suitable ternary organic mixtures prior to their applications for engineering.  相似文献   

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