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   毒气 在 航空航天科学与工程 分类中 的翻译结果: 查询用时:0.019秒
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毒气
相关语句
  poisonous gas
    Also in the paper, the software architecture that is including the basic data layer used to store the basic system, GIS platform layer used for GIS operation and the application layer for poisonous gas diffusion and emergency treatment is also mentioned.
    着重阐述了系统软件体系,用于存放系统的基本数据的基础数据层; 完成操作GIS数据的GIS平台层和应用层,包括:毒气散逸分布和应急联动等功能。
短句来源
    In this paper, the design of the real-time safe channel indicating, falling place analysis and selecting and the range of the poisonous gas and shrapnel diffusion is achieved.
    完成了系统实时预示安全管道、落区分析和落点选择、毒气散逸和弹片散布范围、地面应急联动等模块的设计。
短句来源
    According to the dangerous degree of using propellant, put forward individual protection system, collective protection system, poisonous gas monitoring and warning system and urgency rescue system compose of the propellant security protection system.
    根据推进剂作业的危险程度,提出了由个人防护系统、集体防护系统、毒气监测报警系统以及应急救援系统组成的推进剂安全防护系统。
短句来源
    According to the experiment of the explosion of liquid propellant,a method is raised to evaluate the range of the pollution of poisonous gas on the space vehicle launching site when a rocket explodes. The diffusion distance and the affact time of the poisonous gas are computed when a typical rocket explodes in the condition of a given wind velocity, a given fly altitude and different season.
    利用液体火箭推进剂爆炸实验研究结果 ,提出了航天发射场有毒气体污染范围内安全性评估方法 ,并以典型火箭为例计算出了不同季节、不同风速、火箭在垂直起飞段不同高度上发生意外爆炸事故时 ,推进剂毒气作用时间和毒气扩散危害可能的最远距离。
短句来源
  相似匹配句对
    In this paper, the design of the real-time safe channel indicating, falling place analysis and selecting and the range of the poisonous gas and shrapnel diffusion is achieved.
    完成了系统实时预示安全管道、落区分析和落点选择、毒气散逸和弹片散布范围、地面应急联动等模块的设计。
短句来源
    According to the dangerous degree of using propellant, put forward individual protection system, collective protection system, poisonous gas monitoring and warning system and urgency rescue system compose of the propellant security protection system.
    根据推进剂作业的危险程度,提出了由个人防护系统、集体防护系统、毒气监测报警系统以及应急救援系统组成的推进剂安全防护系统。
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  poisonous gas
The impact of an asteroid exceeding tens of meters in size may cause both a tsunami wave and a catastrophic poisonous gas release in the atmosphere.
      
One is the direct approach, which applies the atmospheric dispersion model to compute the concentration of poisonous gas and then, the risk value.
      
Access to pipe cables is often via manholes and hazards that exist include; explosive gas mixtures, poisonous gas mixtures, deep water and insects.
      
A colourless, odourless, poisonous gas which is produced when fossil fuels are burned and there is a lack of air available.
      
A colorless, odorless, non-poisonous gas that is a normal part of the ambient air.
      
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Toxic gas formed by the non burning propellant which splashes down to the ground and evaporates and diffuses after the liquid propellant carrier rocket explods is harmful to missionary and ambience.The analytic model of the toxic gas,which is formed by residual propellant vapouring after liquid propellant rocket exploding and is diffusing in the atmosphere is presented.The distribution of the consistency field of ground gas in different environment and weather,and the process of toxic gas diffusion,are numerically...

Toxic gas formed by the non burning propellant which splashes down to the ground and evaporates and diffuses after the liquid propellant carrier rocket explods is harmful to missionary and ambience.The analytic model of the toxic gas,which is formed by residual propellant vapouring after liquid propellant rocket exploding and is diffusing in the atmosphere is presented.The distribution of the consistency field of ground gas in different environment and weather,and the process of toxic gas diffusion,are numerically simulated

提出了液体推进剂火箭爆炸后残余推进剂蒸发形成的有毒气体在大气中扩散的解析模型, 并数值模拟了地面有毒气体浓度场在不同的环境、天气情况下的分布情况及环境参数对毒气扩散过程影响的分析, 能为工程应用提供实用的数据。

This paper discusses the resuIts of the experimental research on the evaporation characteristic of stockable propellant in the air. as well as the calculating model of the evaporation rate. The experimental Results provided abundant and reliable data for the research on the pervasion mechansim of poisonous gas in the air and the forecast of the pollution area.

介绍了可贮存推进剂在大气中蒸发实验研究结果以及推进剂蒸发速率计算数学模型,简要讨论了实验结果。其结果为研究毒气在大气中扩散的机理,预算毒气范围提供了翔实科学的数据。

The evaporation characteristic of N 2O 4 and UDMH propellant in the air was disscussed The calculating model of the evaporation rate were introduced The experiment result and the model calculating result were basically identical

正确评估火箭爆炸后残留于地面的有毒推进剂形成的毒气的危害范围 ,关键问题之一是弄清楚渗入泥土中有毒推进剂的蒸发规律。介绍了 N2 O4/ UDMH推进剂在大气中蒸发的实验研究结果以及一种推进剂蒸发速率计算数学模型 ,实验结果与模型计算结果基本一致

 
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