Department of Chemical Engineering, Indian Institute of Technology, Chennai 600 036, Tamil Nadu, India.
J Hazard Mater. 2012 Mar 30;209-210:177-85. doi: 10.1016/j.jhazmat.2012.01.007. Epub 2012 Jan 11.
Environmental risks are inherent in the operation of any complex chemical process industry. The indoor release of hazardous chemicals that are denser than air is a topic of special concern, since dense clouds tend to persist at ground level or human breath level which leads to a magnification of their harmful potential. In the present work, we propose a computational fluid dynamics (CFD) based model for indoor risk assessment considering accidental release of a sustained, small, undetected leak of a dense toxic gas (chlorine) in an industrial indoor environment. Results from simulations show that the denser chlorine gas spreads like a liquid and flows all along the floor. At the same time, its concentration at a point away from the ground level increases slowly, thus showing that both stratification and dilution effects are present as the dense gas spreads. The implications of this spreading pattern from a risk assessment and risk mitigation point of view are discussed.
在任何复杂的化工过程工业运行中都存在环境风险。比空气密度大的危险化学品在室内的释放是一个特别值得关注的问题,因为密集的云团往往会停留在地面或人类呼吸的高度,从而放大其有害潜能。在本工作中,我们提出了一种基于计算流体动力学(CFD)的模型,用于考虑在工业室内环境中意外持续、小、未被察觉的密集有毒气体(氯气)泄漏的室内风险评估。模拟结果表明,密度较大的氯气像液体一样扩散,并沿着地面流动。同时,其在远离地面的某一点的浓度增加缓慢,这表明在密集气体扩散的过程中同时存在分层和稀释效应。从风险评估和风险缓解的角度讨论了这种扩散模式的影响。