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Providing a non-deterministic representation of spatial variability of precipitation in the Everest region

机译:提供珠穆朗玛峰区域在沉淀的空间变异性的非确定性表示

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This paper provides a new representation of the effect of altitude on precipitation that represents spatial and temporal variability in precipitation in the Everest region. Exclusive observation data are used to infer a piecewise linear function for the relation between altitude and precipitation and significant seasonal variations are highlighted. An original ensemble approach is applied to provide non-deterministic water budgets for middle and high-mountain catchments. Physical processes at the soil–atmosphere interface are represented through the Interactions Soil–Biosphere–Atmosphere (ISBA) surface scheme. Uncertainties associated with the model parametrization are limited by the integration of in situ measurements of soils and vegetation properties. Uncertainties associated with the representation of the orographic effect are shown to account for up to 16?% of annual total precipitation. Annual evapotranspiration is shown to represent 26?%?±?1?% of annual total precipitation for the mid-altitude catchment and 34%?±?3?% for the high-altitude catchment. Snowfall contribution is shown to be neglectable for the mid-altitude catchment, and it represents up to 44?%?±?8?% of total precipitation for the high-altitude catchment. These simulations on the local scale enhance current knowledge of the spatial variability in hydroclimatic processes in high- and mid-altitude mountain environments.
机译:本文提供了高度对沉淀的效果的新表示,其代表了珠穆朗玛峰地区沉淀的空间和时间变异性。独家观测数据用于推断用于高度和降水之间关系的分段线性函数,并且突出显示了显着的季节性变化。应用原始合奏方法,为中高山集水区提供非确定性水预算。土壤 - 气氛界面处的物理过程通过相互作用的土壤 - 生物圈 - 气氛(ISBA)表面方案表示。与模型参数化相关的不确定性受到土壤和植被特性的原位测量的整合。与地形效应的表示相关的不确定性被证明占年度总降水量的16?%。每年蒸散量显示为26?%?±1?1?1?%的中高空集水区的总沉淀和34%?±3?3?%,为高空集水区。降雪贡献被认为是中高空集水区的疏忽,它占高空集水量的总沉淀的最多44?%?±8?%。这些模拟本地规模增强了高海拔高度山环境中液压过程中空间变异性的电流知识。

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