首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Surface Water Temperature Heterogeneity at Subpixel Satellite Scales and Its Effect on the Surface Cooling Estimates of a Large Lake: Airborne Remote Sensing Results From Lake Geneva
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Surface Water Temperature Heterogeneity at Subpixel Satellite Scales and Its Effect on the Surface Cooling Estimates of a Large Lake: Airborne Remote Sensing Results From Lake Geneva

机译:Subspixel卫星秤的表面水温异质性及其对大型湖泊表面冷却估计的影响:湖日内瓦湖的机载遥感结果

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摘要

The dynamics of spatial heterogeneity of lake surface water temperature (LSWT) at subpixel satellite scale O(1 m) and its effect on the surface cooling estimation at typical satellite pixel areas O(1 km(2)) were investigated using an airborne platform. The measurements provide maps that revealed spatial LSWT variability with unprecedented detail. The cold season data did not show significant LSWT heterogeneity and hence no surface cooling spatial variability. However, based on three selected daytime subpixel-scale maps, LSWT patterns showed a variability of >2 degrees C in the spring and >3.5 degrees C in the summer, corresponding to a spatial surface cooling range of >20 and >40 W/m(2), respectively. Due to the nonlinear relationship between turbulent surface heat fluxes and LSWT, negatively skewed LSWT distributions resulted in negatively skewed surface cooling patterns under very stable or predominantly unstable atmospheric boundary layer (ABL) conditions and positively skewed surface cooling patterns under predominantly stable ABL conditions. Implementing a mean spatial filter, the effect of area-averaged LSWT on the surface cooling estimation up to a typical satellite pixel was assessed. The effect of the averaging filter size on the mean spatial surface cooling values was negligible, except for predominantly stable ABL conditions. In that situation, a reduction of similar to 3.5 W/m(2) was obtained when moving from high O(1 m) to low O(1 km) pixel resolution.
机译:利用空气平台研究了亚像素卫星尺度O(1M)处湖面水温(LSWT)的空间异质性的动态及其对典型卫星像素区域O的表面冷却估计的影响(1km(2))。测量提供了映射,显示出具有前所未有的细节的空间LSWT变异性。寒冷的季节数据没有显示出显着的LSWT异质性,因此没有表面冷却空间变异性。然而,基于三个选定的日间子像素尺度图,LSWT图案在弹簧中显示出> 2摄氏度的可变性,夏季> 3.5摄氏度,对应于> 20和> 40W / m的空间表面冷却范围。 (2)分别。由于湍流表面热通量和LSWT之间的非线性关系,负偏斜的LSWT分布在非常稳定或主要是不稳定的大气边界层(ABL)条件下产生负面倾斜的表面冷却图案,并且在主要是稳定的ABL条件下具有正倾斜的表面冷却图案。实施平均空间滤波器,评估面积平均LSWT对典型卫星像素的表面冷却估计的影响。除了主要稳定的ABL条件外,平均滤波器尺寸对平均空间表面冷却值的影响是可忽略的。在这种情况下,当从高O(1米)到低O(1km)像素分辨率时,获得类似于3.5W / m(2)的减少。

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