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首页> 外文期刊>Journal of hydrometeorology >Toward a robust canopy hydrology scheme with precipitation subgrid variability
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Toward a robust canopy hydrology scheme with precipitation subgrid variability

机译:建立一个具有降水亚网格可变性的鲁棒冠层水文方案

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Representation of the canopy hydrological processes has been challenging in land surface modeling due to the subgrid heterogeneity in both precipitation and surface characteristics. The Shuttleworth dynamic statistical method is widely used to represent the impact of the precipitation subgrid variability on canopy hydrological processes but shows unwanted sensitivity to temporal resolution when implemented into land surface models. This paper presents a canopy hydrology scheme that is robust at different temporal resolutions. This scheme is devised by applying two physically based treatments to the Shuttleworth scheme: 1) the canopy hydrological processes within the rain-covered area are treated separately from those within the nonrain area, and the scheme tracks the relative rain location between adjacent time steps; and 2) within the rain-covered area, the canopy interception is so determined as to sustain the potential evaporation from the wetted canopy or is equal to precipitation, whichever is less, to maintain somewhat wet canopy during any rainy time step. When applied to the Amazon region, the new scheme establishes interception loss ratios of 0.3 at a 10-min time step and 0.23 at a 2-h time step. Compared to interception loss ratios of 0.45 and 0.09 at the corresponding time steps established by the original Shuttleworth scheme, the new scheme is much more stable under different temporal resolutions.
机译:由于降水和地表特征的亚网格异质性,在土地表面建模中对冠层水文过程的表示一直具有挑战性。 Shuttleworth动态统计方法被广泛用于表示降水子网格变异性对冠层水文过程的影响,但在实施到地面模型中时却显示出对时间分辨率的有害敏感性。本文提出了一种在不同时间分辨率下都具有鲁棒性的冠层水文方案。该方案是通过对Shuttleworth方案进行两种基于物理的处理来设计的:1)雨水覆盖区内的冠层水文过程与非雨区分开进行,并且该方案跟踪相邻时间步长之间的相对降雨位置; 2)在雨水覆盖的区域内,确定顶篷截留量以维持从湿顶篷中蒸发的可能性或等于降水量(以较小者为准),以在任何下雨时间步长保持一定程度的湿顶篷。当应用于亚马逊地区时,新方案将在10分钟的时间步长上建立0.3的拦截损失比率,在2小时的时间步长上建立0.23的拦截损失比率。与原始Shuttleworth方案在相应的时间步长处获得的截获损耗比0.45和0.09相比,新方案在不同的时间分辨率下更加稳定。

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