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A Parametric Study to Investigate Human Injury and Fatality due to Vapor Cloud Explosion

机译:参数研究,探讨蒸气云爆炸引起的人伤和死亡

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The processing area of an offshore platform consists of various equipment for handling, separation and transferring of crude oil and natural gas. Consequently, the chances of an accidental release are quite high as compared to other areas. Among the major hazard posed on an offshore platform, Vapor Cloud Explosion (VCE) is the fatal one. Among the various factors that impact the resulting overpressure developed due to VCE: leak rates, wind speeds, and wind directions are the important ones. The current paper investigates the effect of these factors (leak rates, wind speeds and wind directions) on explosion strength on an offshore platform. The release, dispersion and resulting VCE are modelled by utilizing Computational Fluid Dynamics (CFD) software Flame Acceleration Simulator (FLACS). Furthermore, risk estimation for human injury/fatality (risk of eardrum rupture, head impact, and whole-body displacement) has been done considering these factors using probit models. The results showed that these factors (leak rates, wind speeds, and wind directions) have a major impact on resulting explosion strength and consequently, on the risk of human injury/fatality. Risk of head impact is quite high while risk of eardrum rupture and whole-body displacement is low. The current study can be useful in designing effective safety measures to reduce the impact of such accidents.
机译:海上平台的处理面积包括用于处理,分离和转移原油和天然气的各种设备。因此,与其他区域相比,意外释放的机会非常高。在海上平台上的主要危险中,蒸汽云爆炸(VCE)是致命的抗体。在影响由于VCE产生的产生过压的各种因素中:泄漏率,风速和风向是重要的。目前的论文调查了这些因素(泄漏率,风速和风向)对海上平台上的爆炸强度的影响。通过利用计算流体动力学(CFD)软件火焰加速模拟器(FLACS)来建模释放,色散和产生的VCE。此外,考虑使用探测模型的这些因素,已经完成了人类伤害/死亡/死亡风险(耳垂破裂,头部冲击和全身位移的风险)。结果表明,这些因素(泄漏率,风速和风向)对导致爆炸强度的重大影响,因此对人体伤害/死亡的风险产生了重大影响。头部冲击的风险相当高,而耳膜破裂和全身位移的风险很低。目前的研究可用于设计有效的安全措施,以减少此类事故的影响。

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