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Mesoscale Circulations and Surface Energy Balance During Snowmelt in a Regional Climate Model

机译:区域气候模型中融雪过程中的中尺度环流和地表能量平衡

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The Canadian Regional Climate Model has recently been coupled with an advanced, second generation land surface model ― the Canadian Land Surface Scheme. In addition, high resolution land cover and soils data sets have been assembled on a 1 km horizontal resolution grid over North America. These data sets, along with the coupled model, provide a powerful tool for the examination of regional climate processes in complex, heterogeneous terrain. In a first application of the new modelling system, simulations of progressively higher horizontal resolution are performed over the Mackenzie Basin for the spring of 1995 in order to determine if turbulent fluxes associated with a heterogeneous land surface can generate mesoscale atmospheric circulations of relevance to the surface energy budget during the critical snow melt period. We have found that shallow, diurnally forced mesoscale circulations associated with surface flux heterogeneity developed regularly throughout the snow melt period in the higher resolution experiments. In one case, a localized down-draft associated with a low level isothermal layer was found to enhance turbulent heat exchange with the underlying snow. The net importance of this process to the overall energy balance of the snowpack did increase with resolution, but remained relatively small for the resolutions considered here.
机译:加拿大区域气候模型最近已与先进的第二代陆地表面模型-加拿大陆地表面方案结合在一起。此外,高分辨率的土地覆盖和土壤数据集已经在北美1公里的水平分辨率网格上进行了组装。这些数据集以及耦合模型为检验复杂,异质地形中的区域气候过程提供了强大的工具。在新的建模系统的首次应用中,为了确定1995年春季与麦肯齐盆地之间湍流通量是否能产生与地表相关的中尺度大气环流,对Mackenzie盆地进行了逐步提高的水平分辨率模拟。关键融雪期的能源预算。我们已经发现,在更高分辨率的实验中,整个雪融化期间,与表面通量非均质性有关的浅,昼夜强迫的中尺度环流有规律地发展。在一种情况下,发现与低等温层相关的局部下降气流增强了与下层积雪的湍流热交换。此过程对积雪的整体能量平衡的净重要性确实随着分辨率的提高而增加,但对于此处考虑的分辨率而言,仍然相对较小。

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