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Vol.44, No.2, PP.97-190
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1
The Effects of the Cover Ratio of Erosion Control Geosynthetic Mesh on Soil Losses along Hillslopes
44(2):158-164
Shih-Hao Jien* Ming-Hsi Lee Wei-Hsin Chien Tzu-Yang Tai Chung-Chi Wang Chun-Ting Chen
* Corresponding Author. E-mail : shjien@mail.npust.edu.tw
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2
The Factors of Evacuation Decisions for Local Governments and Inhabitants in Debris-Flow Potential Areas
44(2):165-178
Chen-Yu Chen*
* Corresponding Author. E-mail : cychen59@gmail.com
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3
Characteristic Analysis of Rainfall-induced Landslide Potential in Western Taiwan
44(2):179-189
Chien-Hsin Chen[1]* Yi-Hsun Chen[1] Chih-Hao Tan[1] Shu-Yeong Chi [1] Tai-Wei Su[2]
* Corresponding Author. E-mail : chchen@sinotech.org.tw
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4
Numerical Analysis of Slope Stability at the 115.9k Point of the Su-Hua Highway
44(2):97-104
Huang-Kuei Chu[1] Chia-Ming Lo[2]* Yu-Lin Chang[3]
* Corresponding Author. E-mail : cmlo@ctu.edu.tw
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5
3-D Mechanical Conversion Model for the Soil-Root System of the Predominant Plant in the Shi-Men Watershed
44(2):105-120
Der-Guay Lin Bei-Jian Chiou Sheng-Hsien Wang* Shin-Hwei Lin
* Corresponding Author. E-mail : twarvin@ems.chiayi.gov.tw
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3-D Mechanical Conversion Model for the Soil-Root System of the Predominant Plant in the Shi-Men Watershed
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Der-Guay Lin Bei-Jian Chiou Sheng-Hsien Wang* Shin-Hwei Lin

Abstract
Firstly, a series of field surveys of root morphology and mechanical tests of root material were carried out on Trema orientalis (L.) Blume (India charcoal trema), a plant species commonly used for slope land vegetation in Taiwan. Subsequently, a three-dimensional (3-D) numerical model of the soil-root system was established to simulate an in-situ pull-out test of the soil-root system. The validities of the 3-D numerical model, simulation procedures and various input
material parameters in the model were also verified. Subsequently, a 3-D numerical model identical to the soil-root system used in pull-out test was repeatedly adopted for the simulation of a direct shear test to estimate the shear strength increment of the soil-root system due to root ΔSr. Eventually, a mechanical conversion model was developed to correlate the ΔSr with the basal diameter of plant D
and the simulation of ultimate pull-out resistance of root Pus, namely, the relationship function ΔSr =f(D) and ΔSr =f(Pus). In addition, the proposed model can be used to determine the required strength parameters for the stability analysis of vegetated slopes and quantitatively evaluate the contribution of a root system to the stability of a slope.
Key Words : Soil-root system, 3-D numerical model, increment of shear strength due to roots, ultimate pull-out resistance.
Dept. of Soil and Water Conservation, National Chung Hsing University, Taichung , Taiwan, R.O.C.
* Corresponding Author. E-mail : twarvin@ems.chiayi.gov.tw
Received: 2012/01/16
Revised: 2012/07/10
Accepted: 2013/03/04
6
Analysis of Environmental Factors and Landslide Susceptibility Prediction for the Watershed Landslides
44(2):121-130
Mu Jing[1] Chao-Yuan Lin[2]*
* Corresponding Author. E-mail : cylin@water.nchu.edu.tw
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7
Soil Water Index Applied as a Debris Flow Warning- Reference Based on a Tank Model
44(2):131-143
Su-Chin Chen[1] Chiao-Wen Tsai [1]* Chen-Yu Chen[2] Mei-Chen Chen[2]
* Corresponding Author. E-mail : d099042001@mail.nchu.edu.tw
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8
The Monitoring and Flow Dynamics of Gravelly Debris Flows
44(2):144-157
Hsien-Ter Chou[1] Ching-Fang Lee[2]* Chih-Hsuan Huang[3] Yu-Long Chang[1]
* Corresponding Author. E-mail : cflee@sinotech.org.tw
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