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毒气泄漏
相关语句
  toxic gas leakage
    Study of toxic gas leakage accident injury model of transportable hazards
    流动危险源毒气泄漏事故伤害模型研究
短句来源
  “毒气泄漏”译为未确定词的双语例句
    Analysis on the Leaking Process of Toxic Gases from Chemical Accidents and Determination of the Risky Area
    毒气泄漏过程及其危险区域分析
短句来源
    Deadly Gas Leakage Event Of Bhopal,India
    印度博帕尔毒气泄漏事件
短句来源
    Facing uo to Disaster: the US Response to Chemical Accidents in the Wake of Bhopal
    直面灾难: 美国鉴于印度博帕尔毒气泄漏事件采取的化学品事故应对措施
短句来源
    Based on the theory of the gas diffusing and the toxic injury model, the area of accident harm was divided into the death zone, the severe harm zone, the slight harm zone and sucking reaction zone. The model of equivalent length, the feasibility of the evacuation route and the concepts of the coefficient of pass difficulty, ease and danger were put forward.
    当毒气泄漏时 ,正确的疏散指挥是避免和减少人员伤亡的关键 ,而选择最佳疏散路线又是正确指挥的前提·基于扩散理论和毒物伤害模型之上 ,把事故伤害范围划分为致死区、重伤区、轻伤区和吸入反应区·接着 ,讨论了疏散路径的可行性和当量长度模型 ,提出了通行难易程度系数和危险系数的概念 ;
短句来源
    The right evacuation direction system is the key that avoids and reduces the injuries and deaths, and the best evacuation route is the precondition directs correctly. based on the theory of the gas diffusing and the toxic injury model, the model of equivalent length and the feasibility of the evacuation route, the concepts of the coefficient pass difficulty and easy and danger are put forward.
    当毒气泄漏时 ,正确的疏散指挥系统是避免和减少人员伤亡的关键 ,而选择最佳疏散路线又是正确指挥的前提 在基于扩散理论和毒物伤害模型之上 ,讨论了疏散路径的可行性和当量长度模型 ,提出了通行难易程度系数和危险系数的概念 ;
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Based on the theory of the gas diffusing and the toxic injury model, the area of accident harm was divided into the death zone, the severe harm zone, the slight harm zone and sucking reaction zone. The model of equivalent length, the feasibility of the evacuation route and the concepts of the coefficient of pass difficulty, ease and danger were put forward. The method to solve the k shortest route between 2 spots is discussed on the basis of the network theory. The length of three shortest route is respectively...

Based on the theory of the gas diffusing and the toxic injury model, the area of accident harm was divided into the death zone, the severe harm zone, the slight harm zone and sucking reaction zone. The model of equivalent length, the feasibility of the evacuation route and the concepts of the coefficient of pass difficulty, ease and danger were put forward. The method to solve the k shortest route between 2 spots is discussed on the basis of the network theory. The length of three shortest route is respectively 24?780?m, 27?221?m and 38?679?m from the chlorine leakage spot to evacuation safety zone in a chemistry factory.

毒气泄漏时 ,正确的疏散指挥是避免和减少人员伤亡的关键 ,而选择最佳疏散路线又是正确指挥的前提·基于扩散理论和毒物伤害模型之上 ,把事故伤害范围划分为致死区、重伤区、轻伤区和吸入反应区·接着 ,讨论了疏散路径的可行性和当量长度模型 ,提出了通行难易程度系数和危险系数的概念 ;然后根据网络理论的k最短路解法 ,讨论了两点间k条最短疏散路径的求法·最后 ,以某市化工厂的氯气泄漏为例 ,求出从泄漏点到疏散安全地点的 3条最短路线的当量长度分别为 2 4780m ,2 72 2 1m和 386 79m·

The right evacuation direction system is the key that avoids and reduces the injuries and deaths, and the best evacuation route is the precondition directs correctly. based on the theory of the gas diffusing and the toxic injury model, the model of equivalent length and the feasibility of the evacuation route, the concepts of the coefficient pass difficulty and easy and danger are put forward. Then the model is established and the method that solve the k shortest route between 2 spots is discussed on the basis...

The right evacuation direction system is the key that avoids and reduces the injuries and deaths, and the best evacuation route is the precondition directs correctly. based on the theory of the gas diffusing and the toxic injury model, the model of equivalent length and the feasibility of the evacuation route, the concepts of the coefficient pass difficulty and easy and danger are put forward. Then the model is established and the method that solve the k shortest route between 2 spots is discussed on the basis of the genetic algorithm which is characterized by several best solutions.1fig., 3tabs.,11refs.

毒气泄漏时 ,正确的疏散指挥系统是避免和减少人员伤亡的关键 ,而选择最佳疏散路线又是正确指挥的前提 在基于扩散理论和毒物伤害模型之上 ,讨论了疏散路径的可行性和当量长度模型 ,提出了通行难易程度系数和危险系数的概念 ;然后根据遗传算法具有全局优化搜索最优解集的特点 ,建立了其模型 ,并讨论了两点间k条最短疏散路径的求法 图 1,表 3 ,参 11

With the development of chemical industries, disasters usually happen after the leaking of hazardous chemicals. Base on the leaking forms, the leaking sources may be divided into instantaneous and continuous ones. The model of the leakage and gaseous diffusion from chemical accidents is analyzed. The toxic gas concentrations and risky zones have been estimated according to difference distance from the leaking source. The method for determining the risky area is put forward. It could be taken as a theoretical...

With the development of chemical industries, disasters usually happen after the leaking of hazardous chemicals. Base on the leaking forms, the leaking sources may be divided into instantaneous and continuous ones. The model of the leakage and gaseous diffusion from chemical accidents is analyzed. The toxic gas concentrations and risky zones have been estimated according to difference distance from the leaking source. The method for determining the risky area is put forward. It could be taken as a theoretical guidance for fire brigade to determine the risky area on time and implement the rescue efficiently.

在化学事故中 ,毒气的大量泄漏扩散不仅会造成极其严重的人员和财产损失 ,同时会产生很大的社会影响。而在各种毒气泄漏方式中 ,以灾难性破裂引发的泄漏危害最大 ,而连续泄漏则更具广泛的代表性。笔者利用已有的理论模型 ,分析了这两种泄漏类型的特点及其扩散规律 ,提出了伤害区域的划分和估算方法 ,为准确地预测毒气扩散危险区域 ,及时采取有效措施组织抢险救援活动 ,提供了一种行之有效的方法

 
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