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首页> 外文期刊>Journal of hydrometeorology >Surface Flux Equilibrium Estimates of Evapotranspiration at Large Spatial Scales
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Surface Flux Equilibrium Estimates of Evapotranspiration at Large Spatial Scales

机译:大型空间尺度蒸散蒸腾的表面通量平衡估计

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A recent theory proposes that inland continental regions are in a state of surface flux equilibrium (SFE), in which tight coupling between the land and atmosphere allow estimation of the Bowen ratio at daily to monthly time scales solely from atmospheric measurements, without calibration, even when the land surface strongly constrains the surface energy budget. However, since the theory has only been evaluated at quasi-point spatial scales using eddy covariance measurements with limited global coverage, it is unclear if it is applicable to the larger spatial scales relevant to studies of global climate. In this study, SFE estimates of the Bowen ratio are combined with satellite observations of surface net radiation to obtain large-scale estimates of latent heat flux lambda E. When evaluated against multiyear mean annual lambda E obtained from catchment water balance estimates from 221 catchments across the United States, the resulting error statistics are comparable to those in the catchment water balance estimates themselves. The theory is then used to diagnostically estimate lambda E using historical simulations from 26 CMIP6 models. The resulting SFE estimates are typically at least as accurate as the CMIP6 model's simulated lambda E, when compared with catchment water balance estimates. Globally, there is broad spatial and temporal agreement between CMIP6 model SFE estimates and the CMIP6 model's simulated lambda E, although SFE likely overestimates lambda E in some arid regions. We conclude that SFE applies reasonably at large spatial scales relevant to climate studies, and is broadly reproduced in climate models.
机译:最近的一种理论提出,内陆大陆地区处于地表通量平衡(SFE)状态,在这种状态下,陆地和大气之间的紧密耦合允许仅从大气测量值在日至月时间尺度上估算鲍恩比,而无需校准,即使在陆面强烈限制地表能量收支的情况下也是如此。然而,由于该理论仅在准点空间尺度上使用有限全球覆盖范围内的涡动协方差测量进行评估,因此尚不清楚它是否适用于与全球气候研究相关的更大空间尺度。在本研究中,波文比的SFE估计值与地面净辐射的卫星观测值相结合,以获得潜热通量lambda E的大规模估计值。当根据美国221个集水区的集水平衡估计值获得的多年平均年lambda E进行评估时,由此产生的误差统计数据与流域水平衡估计数据本身具有可比性。然后,利用26个CMIP6模型的历史模拟,利用该理论对lambda E进行诊断性估计。与流域水平衡估计值相比,得出的SFE估计值通常至少与CMIP6模型的模拟λE一样准确。在全球范围内,CMIP6模型SFE估计值与CMIP6模型模拟的lambda E之间存在广泛的时空一致性,尽管SFE可能高估了某些干旱地区的lambda E。我们得出结论,SFE在与气候研究相关的大空间尺度上合理应用,并在气候模型中广泛复制。

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