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Properties of linear contrails in the Northern Hemisphere derived from 2006 Aqua MODIS observations

机译:从2006 Aqua MODIS观测值得出的北半球线性凝结尾迹的特性

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Understanding the role of contrails in the Earth's radiation budget requires an accurate characterization of their macrophysical and microphysical properties, such as cloud top temperature, optical depth, and effective particle size. These properties are derived from 2006 MODerate-resolution Imaging Spectroradiometer data over the Northern Hemisphere using a bi-spectral, infrared-only retrieval technique. Contrail temperature is estimated using a quadratic relationship of flight track pressure with latitude. The results reveal distinct seasonal trends in contrail microphysical properties, with slightly greater mean optical depths and slightly smaller particle sizes during summer. The average contrail optical depth and particle effective diameter are 0.216 and 35.7 μm, respectively. Although fewer contrails occurred at night, there are no appreciable diurnal differences in their retrieved properties. These results should help to fill the gap in our knowledge of contrail properties and will be valuable for model validation. Key Points Quantify contrail properties on a broad scale using 1 year of satellite data Contrail properties are dependent on background Contrail properties vary seasonally but not diurnally
机译:要了解凝结尾迹在地球辐射预算中的作用,需要准确表征其宏观物理和微观物理特性,例如云顶温度,光学深度和有效粒径。这些属性是使用双光谱,仅红外检索技术从北半球的2006年中等分辨率成像光谱仪数据得出的。轨迹温度是使用航迹压力与纬度的二次关系估算的。结果显示,转换轨迹的微物理性质具有明显的季节性趋势,夏季平均光学深度略大,粒径较小。平均轨迹变化光学深度和颗粒有效直径分别为0.216和35.7μm。尽管夜间发生的凝结尾迹较少,但它们的回收特性在日间没有明显的差异。这些结果将有助于填补我们对转换轨迹特性的知识空白,对于模型验证非常有价值。关键点使用1年的卫星数据在大范围内量化轨迹转换特性轨迹转换特性取决于背景轨迹转换特性随季节而变化,但并非每日变化

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