首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Viewing Global Megacities Through MODIS 4-μm Radiance: Effects of Time of Year, Latitude, Land Cover, and View Zenith Angle
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Viewing Global Megacities Through MODIS 4-μm Radiance: Effects of Time of Year, Latitude, Land Cover, and View Zenith Angle

机译:通过MODIS4-μm辐射线查看全球特大城市:一年中的时间,纬度,土地覆盖和查看天顶角的影响

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摘要

Cities are often obscured by haze and smoke when viewed in the visible and near infrared, but the longer wavelengths of the middle infrared can penetrate fine aerosol layers. We characterized variation in 4-μm radiance in and nearby eight global megacities using MODIS band 23 calibrated radiance. The seasonality of middle infrared (MIR) radiance was more pronounced at higher latitudes. Precipitation attenuated MIR radiance. The seasonality of MIR radiance from exposed soils was very similar to urban surfaces, complicating discrimination. The variety of urban surfaces across the megacities also affected the seasonality of MIR radiance. Additional data and MIR radiance with higher spatial resolution could improve and refine/detail information about MIR radiance behavior for further investigation.
机译:在可见光和近红外中观察时,城市常常被雾霾和烟雾遮盖,但是中红外的较长波长可以穿透精细的气溶胶层。我们使用MODIS band 23校准的辐射度表征了附近8个全球大城市中4μm辐射度的变化。在较高的纬度,中红外(MIR)辐射的季节性更加明显。降水减弱了MIR辐射。来自裸露土壤的MIR辐射的季节性与城市表面非常相似,这使辨别变得更加复杂。整个特大城市的城市表面变化也影响了MIR辐射的季节性。具有更高空间分辨率的其他数据和MIR辐射可以改善和完善/详细有关MIR辐射行为的信息,以供进一步研究。

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