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首页> 外文期刊>Safety science >Revisiting the dispersion safety factor (DSF) for vapor clouds of liquefied flammable gases (LNG and propane)
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Revisiting the dispersion safety factor (DSF) for vapor clouds of liquefied flammable gases (LNG and propane)

机译:重新探测液化易燃气体蒸气云的分散安全系数(DSF)(LNG和丙烷)

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The concept of the Dispersion Safety Factor (DSF) was introduced by Vilchez et al. (2013, 2014) and has been revisited in this work. The DSF is defined as the ratio between the flammable region of the vapor cloud (set at a concentration equal to the low flammability level (LFL)) and the corresponding visible boundary of the cloud. We have used a computational fluid dynamics model (FLACS v.10.4) to simulate the dispersion of two liquefied flammable fuels (LNG and propane). DSF results have been analyzed using main effects and interaction plots, and a complementary metric (DSF50) has been introduced in order to establish more conservative threat areas in flammable vapor cloud scenarios. We have observed an interaction between relative humidity and wind velocity for DSF in the low-to-medium range of RH and wind velocity values. Four regression models have been proposed for the computation of DSF and DSF50 for LNG and propane dependent on ambient wind velocity and relative humidity. Contour plots have been prepared to be used as a practical tool, because through the reading of these plots the DSF (and DSF50) can be obtained immediately given wind velocity and relative humidity data.
机译:Vilchez等人引入了分散安全系数(DSF)的概念。 (2013,2014)并已重新审视这项工作。 DSF定义为蒸汽云的易燃区域之间的比率(以等于低易燃水平(LFL)的浓度)和云的相应可见边界。我们使用了计算流体动力学模型(FLACS V.10.4)来模拟两个液化燃烧燃料(LNG和丙烷)的分散。已经使用主要效果和相互作用图分析了DSF结果,并引入了互补度量(DSF50),以便在易燃蒸汽云情景中建立更保守的威胁区域。我们在RH和风速值的低到中等范围内观察到DSF相对湿度和风速之间的相互作用。已经提出了四种回归模型,用于计算LNG和丙烷的DSF和DSF50,取决于环境风速和相对湿度。已经准备使用轮廓图作为实用工具,因为通过读取这些绘图,可以立即获得DSF(和DSF50),立即给定风速和相对湿度数据。

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