Remote sensing of shortwave solar radiation and near-surface air temperature changes in the south-eastern baltic

Remigijus Dailidė, I. Kozlov
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Abstract

The main aim of this work is to determine shortwave solar radiation and near surface air temperatures changes in the south-eastern (SE) Baltic region during 2000-2013 using satellite data and remote sensing methods. The amount of solar radiation that reaches the Earth surface (both land and sea surfaces) and its atmosphere defines the local temperatures, meteorological conditions and may indicate climate change processes in the environment systems. Therefore solar radiation reaching the Earth is the main energy source governing the surface temperature dynamics both on the land and in the ocean. While the grid of meteorological stations measuring the solar radiation is rather sparse, satellite remote sensing data can be effectively used instead. However, the latter should also be treated carefully taking into account signal absorption, atmospheric clarity, could coverage, etc. In this work Terra and Aqua, MODIS and AIRS data of 15 x 15 km resolution was used to evaluate the incoming shortwave solar radiation and near-surface air temperature in the SE Baltic. Space-derived estimates were then compared with regular observations taken at the meteorological stations. The results of the work fairly demonstrate how CM SAF satellite data could be applied for the coastal climate zone indication, breeze dynamics research and cartography of the whole Baltic region.
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波罗的海东南部短波太阳辐射和近地表气温变化的遥感
这项工作的主要目的是利用卫星数据和遥感方法确定2000-2013年期间波罗的海东南部(SE)地区的短波太阳辐射和近地表气温变化。到达地球表面(陆地和海洋表面)及其大气的太阳辐射量决定了当地的温度、气象条件,并可能指示环境系统中的气候变化过程。因此,到达地球的太阳辐射是控制陆地和海洋表面温度动态的主要能源。而气象站测量太阳辐射的网格比较稀疏,可以有效地利用卫星遥感数据。但是,后者也应仔细考虑信号吸收、大气清晰度、可覆盖范围等因素。本文利用Terra和Aqua、15 × 15 km分辨率的MODIS和AIRS数据对波罗的海东南部的入射短波太阳辐射和近地表气温进行了估算。然后将空间估算值与气象站的常规观测值进行比较。研究结果很好地证明了CM SAF卫星数据可以应用于整个波罗的海地区的沿海气候带指示、微风动力学研究和制图。
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