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A simple model for local-scale sensible and latent heat advection contributions to snowmelt

机译:融雪的局部尺度对流和潜热对流贡献的简单模型

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Local-scale advection of energy from warm snow-free surfaces to cold snow-covered surfaces is an important component of the energy balance during snow-cover depletion. Unfortunately, this process is difficult to quantify in one-dimensional snowmelt models. This paper proposes a simple sensible and latent heat advection model for snowmelt situations that can be readily coupled to one-dimensional energy balance snowmelt models. An existing advection parameterization was coupled to a conceptual frozen soil infiltration surface water retention model to estimate the areal average sensible and latent heat advection contributions to snowmelt. The proposed model compared well with observations of latent and sensible heat advection, providing confidence in the process parameterizations and the assumptions applied. Snow-covered area observations from unmanned aerial vehicle imagery were used to update and evaluate the scaling properties of snow patch area distribution and lengths. Model dynamics and snowmelt implications were explored within an idealized modelling experiment, by coupling to a one-dimensional energy balance snowmelt model. Dry, snow-free surfaces were associated with advection of dry air that compensated for positive sensible heat advection fluxes and so limited the net influence of advection on snowmelt. Latent and sensible heat advection fluxes both contributed positive fluxes to snow when snow-free surfaces were wet and enhanced net advection contributions to snowmelt. The increased net advection fluxes from wet surfaces typically develop towards the end of snowmelt and offset decreases in the one-dimensional areal average melt energy that declines with snow-covered area. The new model can be readily incorporated into existing one-dimensional snowmelt hydrology and land surface scheme models and will foster improvements in snowmelt understanding and predictions.
机译:从温暖的无雪表面到寒冷的积雪表面的局部能量平流是积雪枯竭过程中能量平衡的重要组成部分。不幸的是,这一过程很难在一维融雪模型中进行量化。本文针对融雪情况提出了一个简单的感性和潜热对流模型,该模型可以轻松地与一维能量平衡融雪模型耦合。现有的对流参数化与概念性的冻土入渗地表水保持模型耦合,以估计区域平均显热和潜热对流对融雪的贡献。所提出的模型与潜热和显热对流的观测结果进行了很好的比较,从而为工艺参数化和所采用的假设提供了信心。来自无人飞行器图像的积雪区域观测数据被用来更新和评估积雪区域分布和长度的缩放特性。通过与一维能量平衡融雪模型耦合,在理想化的建模实验中探索了模型动力学和融雪含义。干燥,无雪的表面与干燥空气的平流有关,该平流补偿了正显热平流通量,因此限制了平流对融雪的净影响。当无雪表面潮湿时,潜热和显热对流通量均对雪产生正通量,对雪融化的净对流通量也有所增强。来自湿表面的增加的净平流通量通常会在融雪结束时发展,而抵消的一维平面平均熔体能量会随着积雪面积的减少而减少。新模型可以很容易地并入现有的一维融雪水文学和地表方案模型中,并将促进融雪理解和预测方面的改进。

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