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Quantifying Rainfall Interception Loss of a Subtropical Broadleaved Forest in Central Taiwan

机译:台湾中部亚热带阔叶林的降雨截留损失量化

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The factors controlling seasonal rainfall interception loss are investigated by using a double-mass curve analysis, based on direct measurements of high-temporal resolution gross rainfall, throughfall and stemflow from 43 rainfall events that occurred in central Taiwan from April 2008 to April 2009. The canopy water storage capacity for the wet season was estimated to be 1.86 mm, about twice that for the dry season (0.91 mm), likely due to the large reduction in the leaf area index (LAI) from 4.63 to 2.23 (m 2 ·m ?2 ). Changes in seasonal canopy structure and micro-meteorological conditions resulted in temporal variations in the amount of interception components, and rainfall partitioning into stemflow and throughfall. Wet canopy evaporation after rainfall contributed 41.8% of the wet season interception loss, but only 17.1% of the dry season interception loss. Wet canopy evaporation during rainfall accounted for 82.9% of the dry season interception loss, but only 58.2% of the wet season interception loss. Throughfall accounted for over 79.7% of the dry season precipitation and 76.1% of the wet season precipitation, possibly due to the change in gap fraction from 64.2% in the dry season to 50.0% in the wet season. The reduced canopy cover in the dry season also produced less stemflow than that of the wet season. The rainfall stemflow ratio ( P s f / P g ) was reduced from 12.6% to 8.9%. Despite relatively large changes in canopy structure, seasonal variation of the ratio of rainfall partitioned to interception was quite small. Rainfall interception loss accounted for nearly 12% of gross precipitation for both dry and wet seasons.
机译:基于对2008年4月至2009年4月在台湾中部发生的43次降雨事件的高温分辨率总降水量,直降和茎流的直接测量,使用双质量曲线分析法研究了控制季节性降雨截留损失的因素。雨季的冠层储水量估计为1.86毫米,约为旱季(0.91毫米)的两倍,这可能是由于叶面积指数(LAI)从4.63大大降低到2.23(m 2·m 2)。季节性冠层结构和微气象条件的变化导致截留部分数量随时间变化,降雨又分为茎流和贯穿流。降雨后湿冠层蒸发占湿季拦截损失的41.8%,但仅占干季拦截损失的17.1%。降雨期间湿冠层蒸发占旱季拦截损失的82.9%,但仅占湿季拦截损失的58.2%。穿透量占旱季降水的79.7%和湿季降水的76.1%,这可能是由于缺口比例从旱季的64.2%变为湿季的50.0%。与干旱季节相比,干旱季节的冠层覆盖减少,茎流减少。降雨茎流比(P s f / P g)从12.6%降低到8.9%。尽管冠层结构变化较大,但降雨分配与截留率之比的季节变化很小。在干季和湿季,降雨截留损失占总降水量的近12%。

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