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481.
482.
More than thirty-five years ago, the Bhopal disaster shook the whole world and investigators found out that many people survived just because they turned on the fans in their bedrooms. It was postulated that the forced ventilation played an important role in diluting the toxic gas and saved these people. In order to provide evidence to solve this old mystery, this research employed FLACS software to assess the hazardous degree of a toxic gas (hydrogen sulfide) leakage within a petrochemical process. Series of gas dispersion simulations were performed to actualize the hazardous characteristics and the corresponding risks of the release accident. The study shows that the hazardous level and the hazard range can be greatly influenced when parameters, such as the gas leakage circumstances (atmospheric conditions and wind speed) and the mitigation measures (direction of fans and their speed) are altered.By using explosion-proof fans in different positions and ventilation directions, combined with the natural wind in a certain direction, this research attempts to detect the best combination from various mitigation designs and to compare the influence of fan directions on hazard mitigation. It is also the first time of its kind to simulate the effect of forced ventilation on hazard mitigation within a process plant. The results show that the hazardous level of a toxic release can be effectively alleviated, when the direction of the mechanical ventilation is against the natural wind direction. With the help of the CFD simulation and the quantitative risk analysis technique, different loss prevention strategies can be tested via this method in order to establish a safer working environment. 相似文献
483.
通过对辽河油田产生泥浆的12家单位的无害化处理的钻井泥浆进行了采样,完成了泥浆样品的各项检验指标的分析测试,对数据进行了统计分析,掌握了废弃钻井泥浆的污染现状和污染特征。并对废弃泥浆进行了进一步的分析,探讨其潜在的危害,提出钻井泥浆防治措施。 相似文献
484.
山东沂南金矿床流体包裹体特征及地质意义 总被引:3,自引:0,他引:3
本文从流体包裹体出发,讨论了沂南金矿床的成矿物质来源和成矿机制。各成矿阶段的矽卡岩矿物、石英和方解石中流体包裹体岩相学和显微测温研究结果表明,包裹体主要类型有气液水包裹体、含子矿物多相包裹体、CO2-H2O包裹体和晶质熔体包裹体,其中熔体包裹体在较早期的石榴石、绿帘石和石英中发育。Ⅰ、Ⅱ成矿阶段的成矿流体具有高温和高盐度的特征,均一温度分别为430~520℃、340~430℃,盐度分别为56.7 wt%NaCl2、2.2~53.5 wt%NaCl,代表铁矿化时的流体特征;Ⅲ成矿阶段流体具有中低温(190~250℃)、盐度范围变化较大(6.45~53.5 wt%NaCl)的特征,代表了Cu,Au矿化时的流体活动情况;Ⅳ成矿阶段包裹体均一温度100~190℃,盐度为2.07~15.76 wt%NaCl。根据不同类型包裹体共生组合及流体演化特征,认为流体的不混溶性是导致大量金属沉淀的主要原因,岩浆热液在成矿流体中占主导地位。 相似文献
485.
486.
钻井废液对环境影响分析 总被引:3,自引:0,他引:3
钻井废液(泥浆)是一种多相稳定胶态悬浮体系,含有多种无机盐、有机处理剂、聚合物、表面活性剂等物质,其中所含油类、盐类、钻井液添加剂以及一些可溶性的重金属离子污染土壤、水体,影响动植物生长,危害人类健康. 相似文献
487.
在混凝的基础上,阐述了流体动力因素,结合流体力化学基本原理,对流场分布、涡漩剪切碰撞频率、涡漩惯性离心碰撞频率、二次流流场下的颗粒碰撞频率进行理论分析,提出了流体剪切力的大小、剪切时间及流体力“化学反应”是混凝剂与胶体颗粒的作用、颗粒(絮体)的接触碰撞等一系列的物理化学反应,从而使最终的混凝效果达到最优状态.参10. 相似文献
488.
The need for measuring dynamic fluid saturation distribution in multi-dimensional three-fluid phase flow experiments is hampered by lack of appropriate techniques to monitor full field transient flow phenomena. There is no conventional technique able to measure dynamic three-fluid phase saturation at several array points of the flow field at the same time. A multispectral image analysis technique was developed to determine dynamic NAPL, water and air saturation distribution in two-dimensional three-fluid phase laboratory experiments. Using a digital near-infrared camera, images of sand samples with various degrees of NAPL, water and air saturation were taken, under constant lighting conditions and within three narrow spectral bands of the visible and near-infrared spectrum. It was shown that the optical density defined for the reflected luminous intensity was a linear function of the NAPL and the water saturation for each spectral band and for any two and three-fluid phase systems. This allowed the definition of dimensionless lump reflection coefficients for the NAPL and the water phase within each spectral band. Consequently, at any given time, two images taken within two different spectral bands provided two linear equations which could be solved for the water and the NAPL saturation. The method was applied to two-dimensional three-phase flow experiments, which were conducted to investigate the migration and the distribution of LNAPL in the vadose zone. The method was used to obtain continuous, quantitative and dynamic full field mapping of the NAPL saturation as well as the variation of the water and the air saturation during NAPL flow. The method provides a non-destructive and non-intrusive tool for studying multiphase flow for which rapid changes in fluid saturation in the entire flow domain is difficult to measure using conventional techniques. 相似文献
489.
Jun Gu Pengfei Lai Ju Huang Dexing Sun Jibiao He Guiping Wen 《International Journal of Sustainable Engineering》2014,7(4):313-321
The aim of this research was to reuse blast furnace slag (BFS) as a mud cake modifier (MCM) to improve the annular isolation quality in oil and gas wells. For the optimum formula of drilling fluid, the effects of MCM on the drilling fluid rheology were investigated. The relationship between the MCM addition and shear strength at cement–formation interface (SSCFI) was evaluated. The experimental results showed that the optimized formula of the drilling fluid has 1.0 wt% MCM and 0.5 wt% XY-27. The simulation results showed that SSCFI increased significantly with the addition of MCM. Based on the mechanism analysis of BFS as an MCM to improve SSCFI, it is found that the transformation of mud cake to agglomerated cake can be the main reason. The application results showed that the success rate of five wells reached 100%, and the rate of quality in cement was 100%. Especially, the average high quality rate of five wells reached 83.7%. Compared with conventional methods, the average high quality rate is increased by 32.6% points. This research provides a new way for sustainable utilization of BFS. 相似文献
490.
This paper presents model predictions obtained with the CFD tool FLACS for hydrogen releases and vented deflagrations in containers and larger enclosures. The paper consists of two parts. The first part compares experimental results and model predictions for two test cases: experiments performed by Gexcon in 20-foot ISO containers (volume 33 m3) as part of the HySEA project and experiments conducted by SRI International and Sandia National Laboratories in a scaled warehouse geometry (volume 45.4 m3). The second part explores the use of the model system validated in the first part to accidental releases of hydrogen from forklift trucks inside a full-scale warehouse geometry (32 400 m3). The results demonstrate the importance of using realistic and reasonably accurate geometry models of the systems under consideration when performing CFD-based risk assessment studies. The discussion highlights the significant inherent uncertainty associated with quantitative risk assessments for vented hydrogen deflagrations in complex geometries. The suggestions for further work include a pragmatic approach for developing empirical correlations for pressure loads from vented hydrogen deflagrations in industrial warehouses with hydrogen-powered forklift trucks. 相似文献