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New progress in deriving cloudy-sky land surface longwave radiation based on multiple remotely sensed data

机译:基于多个遥感数据的多云天空地表长波辐射的新进展

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Land surface longwave (LW) radiation (or longwave radiative flux), including longwave upwelling (LWUR), downward (LWDR) and net radiation (LWNR), are key components of the total energy that drives the surface energy balance at the interface between the earth's surface and the atmosphere. The importance of LW radiation in regulating air temperature and balancing surface energy is enlarged especially under cloudy-sky conditions. Unfortunately, to date, a tremendous attempts have been made to derive LW radiation from space only valid under clear-sky conditions leading to difficulty of utility of remote sensing-based LW radiation products in most land models due to their spatial discontinuity. Although few studies focused on LW radiation estimation under cloudy-sky conditions, while their global application are still problematic. In this paper, novel strategies are proposed aiming to derive high resolution cloudy-sky LWDR and LWUR by fusing collocated optical and microwave satellite data. The results reveal that the new approaches work rather well, thus, more importantly, providing unprecedented possibilities for generating high resolution global LW radiation datasets.
机译:陆地表面的长波(LW)辐射(或长波辐射通量),包括长波上升(LWUR),向下(LWDR)和净辐射(LWNR),是驱动总能量的关键组成部分,它驱动着表面之间的界面能量平衡。地球表面和大气层。 LW辐射在调节空气温度和平衡表面能方面的重要性日益增加,尤其是在多云的天空条件下。不幸的是,迄今为止,人们进行了巨大的尝试,仅在晴朗的天空条件下才从太空中获得LW辐射,由于其空间不连续性,导致在大多数土地模型中基于遥感的LW辐射产品难以使用。尽管很少有研究侧重于多云天空条件下的LW辐射估计,但它们的全球应用仍然存在问题。本文提出了新颖的策略,旨在通过融合并置的光学和微波卫星数据来获得高分辨率的多云天空LWDR和LWUR。结果表明,新方法效果很好,因此,更重要的是,为生成高分辨率全球LW辐射数据集提供了前所未有的可能性。

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