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首页> 外文期刊>Environmental Research Letters >Adapting observationally based metrics of biogeophysical feedbacks from land cover/land use change to climate modeling
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Adapting observationally based metrics of biogeophysical feedbacks from land cover/land use change to climate modeling

机译:将基于观测的生物地球物理反馈量度从土地覆盖/土地利用变化适应气候模拟

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To assess the biogeophysical impacts of land cover/land use change (LCLUC) on surface temperature, two observation-based metrics and their applicability in climate modeling were explored in this study. Both metrics were developed based on the surface energy balance, and provided insight into the contribution of different aspects of land surface change (such as albedo, surface roughness, net radiation and surface heat fluxes) to changing climate. A revision of the first metric, the intrinsic biophysical mechanism, can be used to distinguish the direct and indirect effects of LCLUC on surface temperature. The other, a decomposed temperature metric, gives a straightforward depiction of separate contributions of all components of the surface energy balance. These two metrics well capture observed and model simulated surface temperature changes in response to LCLUC. Results from paired FLUXNET sites and land surface model sensitivity experiments indicate that surface roughness effects usually dominate the direct biogeophysical feedback of LCLUC, while other effects play a secondary role. However, coupled climate model experiments show that these direct effects can be attenuated by large scale atmospheric changes (indirect feedbacks). When applied to real-time transient LCLUC experiments, the metrics also demonstrate usefulness for assessing the performance of climate models and quantifying land鈥揳tmosphere interactions in response to LCLUC.
机译:为了评估土地覆盖/土地利用变化(LCLUC)对地表温度的生物地球物理影响,本研究探讨了两种基于观测的指标及其在气候模拟中的适用性。这两个指标都是根据地表能量平衡制定的,并提供了对陆地表面变化的各个方面(例如反照率,表面粗糙度,净辐射和表面热通量)对气候变化的贡献的深入了解。对第一个度量标准(固有的生物物理机制)的修订可用于区分LCLUC对表面温度的直接和间接影响。另一个是分解的温度度量,它直接描述了表面能平衡的所有组成部分的单独贡献。这两个指标可以很好地捕获观察到的响应LCLUC的表面温度变化并对其进行建模。 FLUXNET站点配对和土地表面模型敏感性实验的结果表明,表面粗糙度效应通常在LCLUC的直接生物地球物理反馈中占主导地位,而其他效应起次要作用。但是,耦合的气候模型实验表明,这些直接影响可以通过大规模的大气变化(间接反馈)来减弱。当应用于实时瞬时LCLUC实验时,这些度量标准还证明了对评估气候模型的性能以及量化响应LCLUC的土地-大气相互作用的有用性。

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