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Vol.43, No.2, PP.1-187
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1
Flow Pattern Simulation and Resistance Analysis in Step Channels
43(2):97-108
Yi-Liang Chen Kwan Tun Lee*
* Corresponding Author. E-mail : ktlee@ntou.edu.tw
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2
Relationship Between Landscape Metrics and Nitrate Concentrations of Streamwater in the Upper Shui-Li Creek Watershed
43(2):109-122
Chun-Kuo Yeh[1] Shyue-Cherng Liaw[1]* Jihn-Fa Jan[2] Jeen-Lian Hwong[3] Mei-Li Hsueh[4]
* Corresponding Author. E-mail : liaw@cc.ntnu.edu.tw
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3
The Investigation of the Failure Mechanisms and Repair Planning of the Alishan Forest Railway
43(2):123-138
Jung-Tai Lee[1]* Ding-Kuai Ziao[1] Chong-Ren Huang[1] Hong-Zhi Yang[2] Yi-Ching Shen[3]
* Corresponding Author. E-mail : lee2406@mail.sinotech.com.tw
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4
An Evaluation Model of Hazard Potential for Rainfall Induced Sediment-Related Slope Disaster
43(2):139-157
Der-Guey Lin Yung-Hsin Lin Cheng-Yi Wu Fan-Chieh Yu*
* Corresponding Author. E-mail : fcyu@nchu.dragon.edu.tw
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An Evaluation Model of Hazard Potential for Rainfall Induced Sediment-Related Slope Disaster
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Der-Guey Lin Yung-Hsin Lin Cheng-Yi Wu Fan-Chieh Yu*

Abstract
To make an immediate evaluation for the hazard potential of sediment-related slope disaster (or slope-type debris flow) caused by torrential rainfalls, this study aimed to establish a feasible procedure including the currently available numerical tools and analytical techniques using
historical cases. In which, the numerical models included: (1) Rainfall-Seepage-Factor Safety Model or R-S-F Model and (2) Rainfall-Flow-Deposition Model or R-F-D Model. The R-S-F Model is used to calculate the collapse scale of a failure slope characterized by different slope angles, slope lengths,colluvium thicknesses, geological materials, and rainfall intensities. Subsequently, the collapse scale from the R-S-F Model was further converted into the quantity of sediment required for the R-F-D Model to simulate the influence zone of the flowing sediment. Finally, integrating the calculated results of parametric study using the R-S-F Model and R-F-D Model, a series of simplified application
charts could be generated. Accompanying simple field investigations, the application charts can be implemented at the potential area to evaluate the hazard potential of sediment-related slope disaster.hey can be used as a reference for disaster prevention, warning systems, and evacuation aspects during torrential rainfall in typhoon season.
Key Words : Sediment-related disaster of slope, slope-type debris flow, numerical model, R-S-F model, R-F-D model, factor safety of hazard potential.
Department of Soil and Water conservation, National Chung Hsing University, Taichung, Taiwan, R.O.C.
* Corresponding Author. E-mail : fcyu@nchu.dragon.edu.tw
Received: 2010/05/07
Revised: 2011/04/18
Accepted: 2011/07/06
5
Hydraulic Analysis of Flow Passing Over Grassed Ground
43(2):158-166
Ching-Ya Tang Ping-Cheng Hsieh*
* Corresponding Author. E-mail : pchsieh@dragon.nchu.edu.tw
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6
The Application of Logistic Regression for Landslide Susceptibility Analysis-A Case Study in Alishan Area
43(2):167-176
Jung-Tai Lee[1] Chia-Chi Chang[2] Hsun-Chuam Chan[2]* Pei-Yu Laio[2] Yu-Jou Hung[2]
* Corresponding Author. E-mail : hcchan@nchu.edu.tw
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7
A Study of the Mechanical Behavior of Soils Reinforced by Bahia Grass Roots
43(2):206-213
Hsin-Wan Yu* Shu-Wei Fan
* Corresponding Author. E-mail : kjshou@dragon.nchu.edu.tw
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8
Tensile and Punch Tests of Hexagonal Wire Meshes
43(2):187-195
Chiwan-Wayne Hsieh;Ren-Sheng Liu;Ying-Wei Liu;;
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