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首页> 外文期刊>Applied optics >PREDICTION OF THE LIMITS OF DETECTION OF HAZARDOUS VAPORS BY PASSIVE INFRARED WITH THE USE OF MODTRAN
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PREDICTION OF THE LIMITS OF DETECTION OF HAZARDOUS VAPORS BY PASSIVE INFRARED WITH THE USE OF MODTRAN

机译:预测使用MODTRAN进行被动红外探测有害蒸气的极限

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摘要

Passive infrared remote detection of hazardous gases, vapors, and aerosols is based on the difference, Delta T, between the, air temperature of the threat vapor cloud and the effective radiative temperature of the background. In this paper I address the problem of detection with a low-angle-sky background. I used MODTRAN to predict Delta T and atmospheric transmittance for standard atmospheric models. The detection limits, at 2-cm(-1) resolution, are discussed for sulfur hexafluoride, Sarin, trichloroethylene, methyl isocyanate, mustard gas, methyl chloride, and sulfur dioxide for selected cases with the U.S. Standard, the Subarctic Winter, and the Tropical models. I used a particularly interesting case of Sarin detection with the Subarctic Winter atmospheric model to illustrate the power of MODTRAN to predict subtle changes in Delta T with angle of elevation (AGE). [References: 20]
机译:危险气体,蒸气和气溶胶的被动红外远程检测基于威胁蒸气云的空气温度与背景的有效辐射温度之间的差值ΔT。在本文中,我解决了低角度天空背景下的检测问题。我使用MODTRAN来预测标准大气模型的Delta T和大气透射率。讨论了在2厘米(-1)分辨率下对六氟化硫,沙林,三氯乙烯,异氰酸甲酯,芥子气,甲基氯和二氧化硫针对美国标准,亚北极冬季和热带模式。我在北极冬季冬季大气模型中使用了一个特别有趣的Sarin探测案例,以说明MODTRAN预测随着仰角(AGE)变化的Delta T细微变化的能力。 [参考:20]

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