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Estimation of maximum air temperature using COMS data in Northeast Asia

机译:在东北亚的COMS数据估算最大空气温度

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Air temperature (Ta) plays important role for the circulation of energy and water between the surface and atmosphere. Ta was accurately measured from ground observation stations. However, the number of ground observation stations is limited, and Ta is influenced from temporal and spatial change. In this study, Ta was estimated using satellite data from April 2011 to March 2012 in the Northeast Asia where consist of the various ecosystem. States of surface and atmosphere were considered through Normalized Difference Water Index (NDWI) and the differences of brightness temperature values of 11μm (TBB1) and 12μm (TBB2). Dataset was divided into nine cases that had seasonal characteristics according surface states (NDWI) and atmosphere states (TBB1-TBB2). Ta was acquired from 174 ground observation stations, and multiple regression equation of each case was consisted of LST, NDVI, TBB1-TBB2. The weighting region was set to be within 8.33% of total density from boundary area of cases in order to reduce the errors that can occur due to the small value. The weighting was applied as distance from the nearest four points. The spatial representativeness of estimated Ta was determined as 9 by 9 window size. R-squared of estimated Ta from satellite was 0.94, RMSE was 2.98 K, Bias was 0.56 K.
机译:气温(TA)对表面和大气之间的能量和水循环起重要作用。从地面观察站准确地测量TA。然而,地面观察站的数量是有限的,并且TA受时间和空间变化的影响。在本研究中,在2011年4月至2012年3月在东北亚的卫星数据中估计TA估计,其中包括各种生态系统。通过归一化差异水指数(NDWI)来考虑表面和大气的状态,亮度温度值为11μm(TBB1)和12μm(TBB2)的差异。数据集分为9例,根据表面状态(NDWI)和大气状态(TBB1-TBB2)。 TA从174个地面观察站获得,每种情况的多元回归方程都由LST,NDVI,TBB1-TBB2组成。加权区域被设定为来自边界区域的总密度的8.33%,以减少由于较小值导致的误差。加权作为距离最接近的四点的距离。估计Ta的空间代表性被确定为9乘9窗口大小。来自卫星的估计Ta的R线为0.94,RMSE为2.98 k,偏差为0.56 k。

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