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Assessment of chlorine leak dispersion around Gebeng industrial area and potential evacuation route

机译:格蚌工业区氯泄漏扩散情况及潜在疏散途径的评估

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摘要

This paper evaluates the effect of topographical and wind condition on the dispersion of chlorine leaks around Gebeng industrial area Malaysia using a computational fluid dynamics (CFD). The actual data on wind speed and direction was obtained from a local weather station. The turbulent flow was resolved using a scale-adaptive simulation (SAS) model, whereas the chlorine dispersion was modelled using the species transport equation and compared with the area location of hazardous atmosphere (ALOHA) model. The simulation was compared with the laser doppler anemometry (LDA) measurement on a scaled-down terrain model. A good agreement between the CFD prediction and LDA measurement was obtained. The finding showed that the terrain surface, wind direction and wind speed have a combined effect on the dispersion of chlorine. Residential areas R1 and R2 are affected by the chlorine leak during June to September and November to January, respectively. The plume reached the residential area rapidly under the wind speed above 7.2 m/s but the hazard zone is reduced about 50%. CFD prediction agrees with that of ALOHA in the case of flat terrain, whereas CFD provide a better prediction for the case involving complex terrain. The finding in this work may provide a useful guide to estimate the risk zone from a hypothetical chlorine leak which can be used to plan the safety evacuation procedure.
机译:本文使用计算流体力学(CFD)评估了地形和风况对马来西亚盖本工业区周围氯泄漏扩散的影响。风速和风向的实际数据是从当地气象站获得的。使用尺度自适应模拟(SAS)模型解决了湍流,而使用物种迁移方程对氯气扩散进行了建模,并与危险气氛的区域位置(ALOHA)模型进行了比较。将模拟与按比例缩小的地形模型上的激光多普勒风速仪(LDA)测量进行了比较。在CFD预测和LDA测量之间获得了很好的一致性。该发现表明,地形表面,风向和风速对氯的扩散有综合影响。住宅区R1和R2分别在6月至9月和11月至1月受到氯泄漏的影响。在风速超过7.2 m / s时,烟羽迅速到达居民区,但危险区域减少了约50%。在平坦地形的情况下,CFD预测与ALOHA的预测一致,而在复杂地形的情况下,CFD提供更好的预测。这项工作中的发现可能会提供一个有用的指导,可以从假设的氯泄漏估算危险区域,该泄漏可用于计划安全疏散程序。

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