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Evaluation of alternative formulae for calculation of surface temperature in snowmelt models using frequency analysis of temperature observations

机译:使用温度观测值的频率分析评估融雪模型中表面温度的替代公式

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The snow surface temperature is an important quantity in the snow energy balance, since it modulates the exchange of energy between the surface and the atmosphere as well as the conduction of energy into the snowpack. It is therefore important to correctly model snow surface temperatures in energy balance snowmelt models. This paper focuses on the relationship between snow surface temperature and conductive energy fluxes that drive the energy balance of a snowpack. Time series of snow temperature at the surface and through the snowpack were measured to examine energy conduction in a snowpack. Based on these measurements we calculated the snowpack energy content and conductive energy flux at the snow surface. We then used these estimates of conductive energy flux to evaluate formulae for the calculation of the conductive flux at the snow surface based on surface temperature time series. We use a method based on Fourier frequency analysis to estimate snow thermal properties. Among the formulae evaluated, we found that a modified force-restore formula, based on the superimposition of the force-restore equation capturing diurnal fluctuations on a gradually changing temperature gradient, had the best agreement with observations of heat conduction. This formula is suggested for the parameterization of snow surface temperature in a full snowpack energy balance model.
机译:雪表面温度是雪能量平衡中的一个重要量,因为它调节表面和大气之间的能量交换以及能量向积雪中的传导。因此,在能量平衡融雪模型中正确建模雪表面温度非常重要。本文着重研究雪表面温度与驱动积雪能量平衡的导电能通量之间的关系。测量了地面和整个积雪的雪温的时间序列,以检查积雪中的能量传导。基于这些测量,我们计算了积雪表面的积雪能量含量和导电能通量。然后,我们使用这些导电能通量的估计值来评估基于表面温度时间序列的积雪表面导电通量的计算公式。我们使用基于傅立叶频率分析的方法来估算雪的热力性质。在评估的公式中,我们发现基于力恢复方程的叠加,它捕获了在逐渐变化的温度梯度上的昼夜波动,这是与热传导观测最一致的改进的力恢复公式。建议使用此公式在完整的积雪堆能量平衡模型中对雪面温度进行参数化。

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