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首页> 外文期刊>Boundary-layer Meteorology >A Simple Scheme for Estimating Turbulent Heat Flux over Landfast Arctic Sea Ice from Dry Snow to Advanced Melt
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A Simple Scheme for Estimating Turbulent Heat Flux over Landfast Arctic Sea Ice from Dry Snow to Advanced Melt

机译:一种估算陆上北极海冰从干雪到高级融化的湍流通量的简单方案

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摘要

We describe a dynamic-parameter aggregation scheme to estimate hourly turbulent heat fluxes over landfast sea ice during the transition from winter to spring. Hourly albedo measurements are used to track the morphology of the surface as it evolved from a fairly smooth homogeneous dry snow surface to a rougher heterogeneous surface with spatially differential melting and melt ponds. The estimates of turbulent heat fluxes for 928 h are compared with eddy-covariance measurements. The model performance metrics (W m) for sensible heat flux were found to be: mean bias , root-mean-square error 6 and absolute accuracy 4, and for latent heat flux near zero, 3 and 2, respectively. The correlation coefficient between modelled and measured sensible heat fluxes was 0.82, and for latent heat fluxes 0.88. The turbulent heat fluxes were estimated more accurately without adjustments than with adjustments for atmospheric stability based on the bulk Richardson number. Overall, and across all metrics for both sensible and latent heat fluxes, the dynamic-parameter aggregation scheme outperformed the static Community Ice (C-ICE) scheme, part of the Community Climate System model, applied to the same winter-to-spring transition period.
机译:我们描述了一种动态参数聚集方案,以估计从冬季到春季过渡期间陆上海冰每小时的湍流热通量。每小时的反照率测量用于跟踪表面形态,因为它是从相当光滑的均质干雪表面演变为具有空间差异化融化和融化池的粗糙非均质表面。将928 h湍流通量的估计值与涡动协方差测量结果进行比较。发现显热通量的模型性能指标(W m)为:平均偏差,均方根误差6和绝对精度4,以及潜热通量分别接近零,3和2。建模和测量的感热通量之间的相关系数为0.82,而潜热通量之间的相关系数为0.88。根据总的理查森数,不进行调整就比对大气稳定性进行调整更准确地估计了湍流通量。总体而言,在适用于感热通量和潜热通量的所有指标中,动态参数聚合方案均优于静态社区冰(C-ICE)方案,后者是社区气候系统模型的一部分,适用于相同的冬春季过渡期。

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