Results 211 to 220 of about 1,367 (234)
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Ecohydrology, 2016
AbstractInterception loss accounts for a substantial portion of incident precipitation and evapotranspiration in forest ecosystems. Hence, identifying its magnitude is crucial for our understanding of biogeochemical cycling and related hydrological processes.
Zongqiang Xie, Lei Su, Changming Zhao
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AbstractInterception loss accounts for a substantial portion of incident precipitation and evapotranspiration in forest ecosystems. Hence, identifying its magnitude is crucial for our understanding of biogeochemical cycling and related hydrological processes.
Zongqiang Xie, Lei Su, Changming Zhao
exaly +2 more sources
Journal of Forestry Research, 2017
Canopy interception is a significant proportion of incident rainfall and evapotranspiration of forest ecosystems. Hence, identifying its magnitude is vital for studies of eco-hydrological processes and hydrological impact evaluation. In this study, throughfall, stemflow and interception were measured in a pure Larix principis-rupprechtii Mayr.
Zebin Liu, Wei Xiong, Ashley A Webb
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Canopy interception is a significant proportion of incident rainfall and evapotranspiration of forest ecosystems. Hence, identifying its magnitude is vital for studies of eco-hydrological processes and hydrological impact evaluation. In this study, throughfall, stemflow and interception were measured in a pure Larix principis-rupprechtii Mayr.
Zebin Liu, Wei Xiong, Ashley A Webb
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Journal of Hydrology, 2010
Summary The throughfall, stemflow and interception during the growing season (June–September) of 2005 were observed in a pure stand of natural Pinus armandii forest in the Liupan Mountains of northwestern China. The results indicate that of the 544.0 mm of cumulative gross rainfall generated by 15 sampled events, throughfall, stemflow and canopy ...
Xu Lihong
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Summary The throughfall, stemflow and interception during the growing season (June–September) of 2005 were observed in a pure stand of natural Pinus armandii forest in the Liupan Mountains of northwestern China. The results indicate that of the 544.0 mm of cumulative gross rainfall generated by 15 sampled events, throughfall, stemflow and canopy ...
Xu Lihong
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Sparse Gash model applied to seasonal dry tropical forest
Journal of Hydrology, 2020Abstract Rainfall interception represents a significant component of the water balance and its modelling and simulation are essential to understanding the hydrologic cycles in different ecosystems. Caatinga is a seasonal dry tropical forest, characterized by a deciduous and xerophilous vegetation that covers large areas in Brazil. This domain appears
Daniela de Carvalho Lopes +5 more
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Modelling of rainfall partitioning by a deciduous shrub using a variable parameters
AbstractAlpine deciduous shrubs play an important role in local water cycle for ecosystems of Qinghai‐Tibet Plateau, but rainfall partitioning of the deciduous shrubs has not been fully understood due to significant variation in spatial coverage and leaf storage capacity, especially the lack of appropriate model to describe relevant processes.
Si‐Yi Zhang +4 more
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Hydrological Processes, 2012
AbstractApplication of models for estimating rainfall partitioning in deciduous forests may be considered time consuming and laborious given the need for two different parameter sets to describe leafed and leafless periods. This paper reports how rainfall partitioning modelling was done for a downy oak forest plot (Eastern Pyrenees Mountains, NE Spain)
A. Mużyło +3 more
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AbstractApplication of models for estimating rainfall partitioning in deciduous forests may be considered time consuming and laborious given the need for two different parameter sets to describe leafed and leafless periods. This paper reports how rainfall partitioning modelling was done for a downy oak forest plot (Eastern Pyrenees Mountains, NE Spain)
A. Mużyło +3 more
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Journal of Hydrology, 2006
Interception loss from a multi-species, deciduous, broad-leaved secondary forest in Japan was derived from gross rainfall, throughfall, and stemflow. The seasonal changes in the canopy structure were expressed using the leaf area index, which ranged from 1.65 to 4.31. In addition, the relationship between leaf area index (LAI) and relative light index (
Aiko Deguchi +2 more
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Interception loss from a multi-species, deciduous, broad-leaved secondary forest in Japan was derived from gross rainfall, throughfall, and stemflow. The seasonal changes in the canopy structure were expressed using the leaf area index, which ranged from 1.65 to 4.31. In addition, the relationship between leaf area index (LAI) and relative light index (
Aiko Deguchi +2 more
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Journal of Forest Research, 2013
Loss of precipitation by canopy interception constitutes a substantial portion of the water budget in a forested ecosystem, and accurate models to simulate canopy interception are critical for effective management of forest water resources. We modeled the canopy interception of an evergreen Chinese red pine (Pinus tabulaeformis) forest using the Gash ...
Shujun Chen +6 more
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Loss of precipitation by canopy interception constitutes a substantial portion of the water budget in a forested ecosystem, and accurate models to simulate canopy interception are critical for effective management of forest water resources. We modeled the canopy interception of an evergreen Chinese red pine (Pinus tabulaeformis) forest using the Gash ...
Shujun Chen +6 more
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Journal of Hydrology, 1981
Abstract Estimated interception losses using Gash's analytical model with a 2-yr. sequence of storm-rainfall and daily-rainfall amounts are compared with observed interception losses. Storm-rainfall-based estimates averaged 9% greater than observed losses.
A.J. Pearce, L.K. Rowe
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Abstract Estimated interception losses using Gash's analytical model with a 2-yr. sequence of storm-rainfall and daily-rainfall amounts are compared with observed interception losses. Storm-rainfall-based estimates averaged 9% greater than observed losses.
A.J. Pearce, L.K. Rowe
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