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Vol.44, No.3, PP.265
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1
Integration and Application of a Fiber-Optic Sensing System for Monitoring Debris Flows
44(3):191-201
Ching-Jer Huang[1]* Chung-Ray Chu[1] Tsung-Mo Tien[2] Hsiao-Yuen Yin[3]
* Corresponding Author. E-mail : cjhuang@mail.ncku.edu.tw
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2
The Spatial Analysis of Betel Nut Plantation Hot Spots in the Upper Shui-Li Creek Watershed
44(3):202-214
Chun-Kuo Yeh[1] Yung-Chung Chuang[2] Shyue-Cherng Liaw[1]*
* Corresponding Author. E-mail : liaw@ntnu.edu.tw
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3
Establishment of the Watershed Image Classified Rule-Set and Feasibility Assessment of Its Application
44(3):215-224
Cheng-Han Lin Hsin-Kai Chuang Ming-Lang Lin*
* Corresponding Author. E-mail : mlin@ntu.edu.tw
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4
The Influence of Accumulated Precipitation on Debris Flow Hazard
44(3):225-233
Ko-Fei Liu[1]* Shih-Chao Wei [1] Pao-Cheng Li [2]
* Corresponding Author. E-mail : kfliu@ntu.edu.tw
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5
Velocity Analysis of a Flow Passing over a Vegetated Slope
44(3):234-244
Ching-Ya Tang Ping-Cheng Hsieh*
* Corresponding Author. E-mail : pchsieh@nchu.edu.tw
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6
The Application of Borehole Hydrogeological Investigation for Assessing Landslide Susceptibility
44(3):245-254
Jung-Jun Lin[1]* Po-Yi Chou[1] Shih-Meng Hsu[1] Yen-Tsu Lin[2] Min-Hsiang Chang[2] Chi-Chao Huang[2] Li-Yuan Fei [3]
* Corresponding Author. E-mail : jjlin@sinotech.org.tw
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7
Study of the River Bed Variation after the Baling Check-Dam Failure
44(3):255-264
Yu-Lin Kao[1] Wen-Hsiao Tseng[2]* Shih-Chieh Chou[3] Chjeng-Lun Shieh[1]
* Corresponding Author. E-mail : caseytseng26@gmail.com
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Study of the River Bed Variation after the Baling Check-Dam Failure
Close
Yu-Lin Kao[1] Wen-Hsiao Tseng[2]* Shih-Chieh Chou[3] Chjeng-Lun Shieh[1]

Abstract
This study provides longitudinal and cross-sectional analysis of 8 pieces topography data collected from 1980 to 2011 and bed material particle size based on three investigations conducted between 2008 and 2012. The mainstream topography data in December 2007 shows that
the head-cutting distance was about 3 kilometers after the dam broke. The topography data since 2008 displays that river the channel is stable as well. The topography data shows that the longitudinal section in the tributary had a head-cutting distance of about 3 kilometers after the dam broke, and the river channel still is showing adjustment behavior. The scour-and-fill analysis result of the mainstream cross-section shows that the transverse adjust changed significantly upstream from the dam location from 2006~2008. The particle size of the bed material has shown a trend from coarsening to fining according to different sampling points. Therefore, the river bed is still adjusting continuously.Finally, this study is based on a debris flow and sediment laden flow numerical model. The simulation
result is fit for river-bed changes after dam-break.
Key Words : Baling dam, check-dam failure, river-bed variation, numerical simulation.
〔1〕Department of Hydraulic and Ocean Engineering, National Cheng Kung University, Tainan, Taiwan 701, R.O.C.
〔2〕Sun-Rise Engineering Consultant Company, LTD., Taichung, Taiwan 407, R.O.C.
〔3〕All-wisdom Engineering Consultants, LTD., Taipei, Taiwan 104, R.O.C.
* Corresponding Author. E-mail : caseytseng26@gmail.com
Received: 2012/10/15
Revised: 2013/03/14
Accepted: 2013/05/06
8
Water Volume and Salinity Forecasts of the Small Aral Sea for the Years 2025
44(3):265-270
Behzod Gaybullaev[1]* Su-Chin Chen[1] Yi-Ming Kuo[2]
* Corresponding Author. E-mail : bgaybullaev@yahoo.com
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