Field Determination of Unsaturated Hydraulic Conductivity of Forest Soils
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概要
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This study introduces a field method to determine unsaturated hydraulic conductivity which is applicable to sloping terrain with a limited water supply. A single steel ring infiltrometer and an artificial rainfall simulator are used in this method to reduce the amount of water required to attain a steady-state flux condition. Six tensiometers and a time domain reflectometry (TDR) are employed as the soil capillary pressure head and the volumetric soil water content measurement devices, respectively. Water contents measured by the TDR are corrected using a simple calibration method suggested by Hook and Livingston (1996). Unsaturated hydraulic conductivities are computed based on the instantaneous profile method using capillary pressure head and water content changes measured during a drainage process. The proposed method was applied to a forest soil profile in Rokko Mountain range. Results showed that the relationships between the unsaturated hydraulic conductivity and capillary pressure head developed by the proposed method coincide well with those measured by the conventional steady-state laboratory experiment. The proposed in-situ method is the effective simple means to determine unsaturated hydraulic conductivities of forest soils, since this method is enough accurate and consuming less amount of water and time.
- 一般社団法人日本森林学会の論文
- 1998-02-16
著者
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Mizuyama Takahisa
Division of Forestry and Bio-material Sciences, Graduate School of Agriculture, Kyoto University
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Kosugi K
Division Of Forestry And Bio-material Sciences Graduate School Of Agriculture Kyoto University
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Mizuyama T
Division Of Forestry And Bio-material Sciences Graduate School Of Agriculture Kyoto University
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Mizuyama Takahisa
Department of Forestry, Graduate School of Agriculture, Kyoto University
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Mizuyama Takahisa
Department Of Forest Science Graduate School Of Agriculture Kyoto University
関連論文
- Spatial Variability of Soil Hydraulic Properties in a Forested Hillslope
- Field Determination of Unsaturated Hydraulic Conductivity of Forest Soils
- A New Model to Analyze Water Retention Characteristics of Forest Soils Based on Soil Pore Radius Distribution
- Temporal and spatial variations in the probability of debris flow initiation in volcanic watersheds