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基于N-GAS模型的某沙发厂火灾烟气中HCN分布及烟气毒性分析 被引量:3
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作者 顾彩虹 《防灾科技学院学报》 2017年第3期66-73,共8页
引入湍流涡耗散概念(EDC)模型,以昆明市某沙发工厂火灾,获得了含有HCN的火灾烟气浓度的时空分布,采用N-GAS模型来评价火灾烟气综合毒性并讨论HCN对于多组分烟气耦合毒性的影响。为了讨论HCN对火灾烟气毒性的影响,本文进行了A、B两组模... 引入湍流涡耗散概念(EDC)模型,以昆明市某沙发工厂火灾,获得了含有HCN的火灾烟气浓度的时空分布,采用N-GAS模型来评价火灾烟气综合毒性并讨论HCN对于多组分烟气耦合毒性的影响。为了讨论HCN对火灾烟气毒性的影响,本文进行了A、B两组模拟计算,A组烟气组分不包含HCN,B组烟气组分包含HCN。将A、B两组的模拟结果进行对比,验证了引入EDC模型、讨论HCN对多组分火灾烟气毒性的影响具有可行性。基于N-GAS模型的计算结果,说明了HCN气体对于多组分烟气的耦合毒性的影响不可忽略,有时甚至起着至关重要的作用。 展开更多
关键词 烟气毒性评价 n-gas模型 EDC模型 数值模拟
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An approach for predicting the toxicity of smoke 被引量:1
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作者 XING Jia-jia JIANG Yong PAN Long-wei 《中国安全生产科学技术》 CAS CSCD 2013年第8期72-82,共11页
The N-GAS model for predicting smoke toxicity has been proposed for many years by NIST.However,almost all the existing CFD software cannot accurately predict the toxicity of smoke using the model because of the absenc... The N-GAS model for predicting smoke toxicity has been proposed for many years by NIST.However,almost all the existing CFD software cannot accurately predict the toxicity of smoke using the model because of the absence of the toxic gas concentration of HCN,NO x,HCl and HBr.In this work,an approach for predicting fire smoke toxicity was developed and demonstrated.A detailed mechanism including these fire effluents was constructed firstly,and the subsequent generation of state relationship among fire effluents,mixture fraction and strain rate was conducted by using opposed-flow flame technique.A mixture fraction-based combustion model used in FDS code was modified,and meanwhile the scalar dissipation rate transport equation was numerically solved.Thus the concentration of fire effluents as the function of mixture fraction and scalar dissipation rate can be calculated through a look-up table,and the toxic potency based on the 7-gas model can be obtained.The method was applied into an underground commercial street in Chongqing.It showed that the results between the 7-gas model and 3-gas model(CO,CO 2,and O 2) were obviously different.It indicated that there needs some modifications in conclusions and results from 3-gas model for fire-risk assessments. 展开更多
关键词 combustion gases n-gas model flame surface model FIRE TOXICITY
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