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Radiative scaling of the nocturnal boundary layer and the diurnal temperature range

机译:夜间边界层的辐射定标和昼夜温度范围

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A radiative scaling for the warm season nocturnal boundary layer (NBL) is proposed, based on the daily mean surface net longwave radiation flux. Using this scaling, a conceptual model is proposed for the NBL, with parameters estimated from multiple linear regression of model data from the European Centre reanalysis, averaged over river basins from the tropics to high latitudes. A radiative temperature scale, computed from surface net longwave radiation flux and the slope of the Stefan-Boltzmann law, primarily determines the strength of the NBL and the amplitude of the diurnal temperature range, although the length of the nighttime period and the surface wind stress play important subsidiary roles. A related radiative velocity scale or radiative conductance, the duration of the nighttime period and the ratio of the scaled surface heat flux (which increases with wind stress) to the NBL strength determine the depth of the NBL. From an observational perspective, this suggests that the diurnal temperature range may give a useful estimate of surface net longwave radiation flux. From a modeling perspective, this provides a framework for relating model physical parameterizations, especially the coupling at night between the surface, the ground and the atmosphere, to observables, the diurnal temperature range and the strength and depth of the NBL. The model is then applied to estimate the nocturnal rise in concentration of gases such as CO2 and radon that are emitted at the surface.
机译:温暖的季节夜间辐射定标边界层(NBL),提出了基于每日平均地表净长波辐射通量。使用这个扩展,概念模型提出了创新,参数估计多元线性回归的模型数据从欧洲中心再分析,取平均值在流域从热带到高纬度。从表面净长波辐射通量计算和斯蒂芬玻尔兹曼的斜率法,主要是确定NBL的强度和昼夜温度范围的振幅,尽管夜间段的长度和表面风应力发挥重要的子公司的角色。辐射电导的持续时间夜间期和缩放的比例表面热通量(增加风压力)NBL的强度确定的深度的创新。这表明,昼夜温度范围可能给一个有用的估计表面净吗长波辐射通量。的角度来看,这提供了一个框架有关物理参数化模型,特别是晚上之间的耦合表面,地面和大气可见,昼夜温度范围NBL的强度和深度。然后应用于估计的夜间上升气体如二氧化碳和氡的浓度在表面发射。

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