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首页> 外文期刊>Journal of hydrometeorology >Challenges in Modeling Turbulent Heat Fluxes to Snowpacks in Forest Clearings
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Challenges in Modeling Turbulent Heat Fluxes to Snowpacks in Forest Clearings

机译:将湍流热通量建模到森林清除中的积雪中的挑战

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Forest clearings are common features of evergreen forests and produce snowpack accumulation and melt differing from that in adjacent forests and open terrain. This study has investigated the challenges in specifying the turbulent fluxes of sensible and latent heat to snowpacks in forest clearings. The snowpack in two forest clearings in the Canadian Rockies was simulated using a one-dimensional (1D) snowpack model. A trade-off was found between optimizing against measured snow surface temperature or snowmelt when choosing how to specify the turbulent fluxes. Schemes using the Monin-Obukhov similarity theory tended to produce negatively biased surface temperature, while schemes that enhanced turbulent fluxes, to reduce the surface temperature bias, resulted in too much melt. Uncertainty estimates from Monte Carlo experiments showed that no realistic parameter set could successfully remove biases in both surface temperature and melt. A simple scheme that excludes atmospheric stability correction was required to successfully simulate surface temperature under low wind speed conditions. Nonturbulent advective fluxes and/or nonlocal sources of turbulence are thought to account for the maintenance of heat exchange in low-wind conditions. The simulation of snowmelt was improved by allowing enhanced latent heat fluxes during low-wind conditions. Caution is warranted when snowpack models are optimized on surface temperature, as model tuning may compensate for deficiencies in conceptual and numerical models of radiative, conductive, and turbulent heat exchange at the snow surface and within the snowpack. Such model tuning could have large impacts on the melt rate and timing of the snow-free transition in simulations of forest clearings within hydrological and meteorological models.
机译:森林清除是常绿森林的常见特征,并在相邻的森林和开放地形中产生与融资的积雪积累和融化。本研究调查了指定森林清除中的湍流和潜热的湍流通量的危险。使用一维(1D)Snowpack模型模拟加拿大落基罗基斯的两个森林清除的积雪。在选择如何指定湍流通量时,在优化测量的雪表面温度或散雪之间进行了折衷。使用Monin-Obukhov相似性理论的方案倾向于产生带负偏置的表面温度,而提高湍流通量的方案,以降低表面温度偏差,导致太多熔体。来自Monte Carlo实验的不确定性估计表明,没有现实参数集可以在表面温度和熔体中成功消除偏差。需要一种排除大气稳定校正的简单方案来在低风速条件下成功模拟表面温度。据认为,无瘟的平行性通量和/或非函数的湍流源是在低风条件下的热交换维持。通过在低风条件下允许增强的潜热通量来改善雪光的模拟。当Snowpack模型在表面温度上进行优化时,保证谨慎,因为模型调谐可以弥补雪花,导电和湍流热交换的概念和数值模型的缺陷,并且在积雪中和在积雪中。这种模型调整可能对水文和气象模型中的森林清除模拟中的无雪过渡的熔体速率和定时产生了大的影响。

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