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Introducing a Modificated Local Model of MODIS with Respect to Radiosonde Data, and Estimation of LWIR Radiation Transmission

机译:介绍关于无线电探空仪数据的改进的MODIS局部模型以及LWIR辐射传输的估计

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Aims: Using a latitude dependent local corrected model and based on MODIS data around Mehrabad Synoptic Station of Tehran, the spectral radiance in long wavelength infrared region was modeled and calculated for total upward and downward radiation flux and direct downward radiation flux for cold and hot seasons.?Study Design: Design of the study includes? the calculations of local atmospheric profile of the subjected region by radiosonde data, calculations of the atmospheric profile by MODIS data for same region. It presents? a latitude dependent relation for modifying the MODIS data of any point which properly could be used instead of radiosonde data at that point and finally model and calculate LWIR’s total emitted flux at different heights for the area around subjected region with local profile for both hot (June, July, August) and cold (January, February, March) seasons.[G7]?[G8]?Place and Duration of Study: Department of Optic and Laser, Faculty of science, I. H.U University, between February 2016 and December 2017.Methodology: The radiosonde and MODIS raw data of 13 stations with different latitudes in 1995-2015 were used for modification purpose. By applying statistic calculations on raw data, the atmospheric profile was extracted. Radiosonde data were not available in any points of a region, while the MODIS data were available. A latitude dependent relation is presented in this work for modifying the MODIS data of any point which properly could be used instead of radiosonde data at that point.????Results: The results were compared and assessed with the default profiles of sub-arctic winter and tropical models. The RMSEs for total upward, downward, and direct radiation fluxes in terms of wavelength in long wavelength infrared in cold and hot seasons were 2.45 Wm-2μ-1 and 1.722 Wm-2μ-1, respectively.Conclusion: The results showed that local atmospheric profile plays a key role in modifying atmospheric effects on TIR hyperspectral radiance and their accurate understanding improves the quality and quantity of the radiances reaching a sensor and helps better detection of the spectral? signature of the study objectives.
机译:目的:使用依赖于纬度的局部校正模型,并基于德黑兰Mehrabad天气站周围的MODIS数据,对长波红外区域的光谱辐射率进行建模并计算冷热季节的总向上和向下辐射通量和直接向下辐射通量研究设计:研究的设计包括?用探空仪数据计算受灾地区的局部大气廓线,用MODIS数据计算同一地区的大气廓线。礼物吗?依赖于纬度的关系来修改任何点的MODIS数据,这些点可以适当地代替该点的探空仪数据,并最终对受热区域周围区域的区域进行建模和计算LWIR在不同高度的总发射通量,这两个区域都是局部高温(6月) [G7]?[G8]研究的地点和持续时间:2016年2月至2017年12月之间,是IHU大学理学院光学与激光系。方法:将1995-2015年13个不同纬度电台的探空仪和MODIS原始数据用于修改目的。通过对原始数据进行统计计算,提取了大气廓线。无线电探空仪数据在一个地区的任何一点都不可用,而MODIS数据可用。在这项工作中提出了一种与纬度相关的关系,用于修改可以正确使用的任何点的MODIS数据,而不是当时该点的无线电探空仪数据。结果:将结果与亚北极的默认剖面进行了比较和评估冬季和热带模式。在寒冷和炎热季节,长波红外的总向上,向下和直接辐射通量的RMSE分别为2.45Wm-2μ-1和1.722Wm-2μ-1。结论:结果表明,局部大气轮廓在修改大气对TIR高光谱辐射的影响中起着关键作用,对它们的准确理解可以提高到达传感器的辐射的质量和数量,并有助于更好地检测光谱?研究目标的签名。

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