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Variational assimilation of land surface temperature and the estimation of surface energy balance components

机译:地表温度的变化同化和地表能量平衡分量的估计

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Recently, numerous studies have focused on the estimation of surface energy flux components, based on the assimilation of land surface temperature (LST) within a variational data assimilation (VDA) framework. Unlike the previous investigations based on the force-restore equation, in this study, the full heat diffusion equation is employed in the VDA scheme as an adjoint (constraint). In addition, a model error term is added to the surface energy balance (SEB) equation and the VDA scheme to include the model uncertainty. Both VDA schemes (with and without the model uncertainty) are tested over the First International Satellite Land Surface Climatology Project Field Experiment (FIFE) site. The comprehensive comparisons between the present model (with heat diffusion equation) and previous model (with the force-restore equation) demonstrate that the present model will decrease the phase error associated with the ground heat flux diurnal cycle, and improve the evaporative fraction and heat fluxes estimation. The numerical examples also conclude that the errors caused by model structures and noisy data in the SEB equation can be detected and quantified in the present model (with model uncertainty).
机译:近年来,许多研究都集中在基于变体数据同化(VDA)框架内地表温度(LST)的同化来估算表面能通量分量。与先前基于力恢复方程式进行的研究不同,在本研究中,全热扩散方程式在VDA方案中用作伴随(约束)。另外,将模型误差项添加到表面能平衡(SEB)方程和VDA方案中,以包括模型不确定性。两种VDA方案(带有和不带有模型不确定性)都在第一国际卫星陆地地面气候项目现场试验(FIFE)现场进行了测试。当前模型(带有热扩散方程)与先前模型(带有力恢复方程)之间的综合比较表明,该模型将减少与地面热通量昼夜循环相关的相位误差,并改善蒸发分数和热量通量估计。数值示例还得出结论,在本模型中(具有模型不确定性),可以检测和量化SEB方程中由模型结构和噪声数据引起的误差。

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