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Vol.54, No.2, PP.091-183
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1
Mechanical Analysis of Steel Check Dam Subjected to Loading of Debris Flow
54(2):91-107
Der-Guey Lin Yu-Po Huang Ya-Chu Chiu*
* Corresponding Author. E-mail : clarice.chiou@gmail.com
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2
Trend of Sediment-related Disasters Triggered by Rainfall in Taiwan from 2006 to 2020
54(2):108-118
Yung-Chiau Lin[1][2] Chen-Yu Chen[1]* Cheng-Ying Chuang[1][2] Jyun-Wei Chen[1] Wan-Yu Chan[1]
* Corresponding Author. E-mail : cychen59@gmail.com
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3
Application of Statistical Cluster Analysis and Multitemporal Surface Displacement Data for the Analysis of Slope Subzone Activity
54(2):119-129
Pi-Wen Tsai1 [1] Chih-Yu Kuo [2,3]* Yi-Chun Chen [4] Rou-Fei Chen [4]
* Corresponding Author. E-mail : cykuo06@gate.sinica.edu.tw
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4
Development of Splash Erosion Estimation Equation
54(2):130-140
Zhen-Yuan Wu[1]* Chia-Chun Wu[1] Jheng-Yun Sie[1] Xin-Jie Lin[1]
* Corresponding Author. E-mail : wu871003@gmail.com
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5
Development of Workflow for Slope Hazard Warning System Based on Coupled Hydromechanical Model and Observations
54(2):141-149
Chuen-Fa Ni[1]* Wei-Ci Li[2] Chien-Fan Chen[3] Cheng-Fa Tsai[3] Min-Hsi Hsieh[3] Yi-Yun Hsieh[3]
* Corresponding Author. E-mail : nichuenf@ncu.edu.tw
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6
Database of Vegetation Engineering Plants in Soil and Water Conservation of Taiwan
54(2):150-163
Ying-Ren Chen[1] Tien-Chien Chen[2]* Hung-Li Lin[1] Shan-Chou Hsieh[3]
* Corresponding Author. E-mail : tcchen@mail.npust.edu.tw
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7
The Study of Multi-category Image Analysis by Using Convolutional Neural Network for Land Use of Watershed
54(2):164-173
Peng Hsin-Wei* Wan Shiuan Yu-Hsin Cheng
* Corresponding Author. E-mail : rqw85068506@gmail.com
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8
Desilting Efficiency of Drainage Pipe Installed at the Bottom of a Vertical Shaft in a Farm Pond
54(2):174-183
Chyan-Deng Jan[1] Tung-Yang Lai[1]* Ji-Shang Wang[2] Yu-Chao Hsu[2] Hong-Xiang Ko[1]
* Corresponding Author. E-mail : N88104018@gs.ncku.edu.tw
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Desilting Efficiency of Drainage Pipe Installed at the Bottom of a Vertical Shaft in a Farm Pond
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Chyan-Deng Jan[1] Tung-Yang Lai[1]* Ji-Shang Wang[2] Yu-Chao Hsu[2] Hong-Xiang Ko[1]

Abstract
This study investigated the desilting efficiencies of a pond by using both the shaft orifice of the pond and the horizontal pipe that was connected to the shaft orifice. The experiments were conducted in a square acrylic tank. The tank featured one vertical square shaft, and the shaft had a bottom orifice that could be used for removing sediment from the tank. The shaft orifice could be installed using a horizontal pipe with three circular orifices that
allowed for sediment removal. Water-flow tests without sediment were first conducted to determine the relationship
between water level and discharge through the orifices. Desilting experiments were then conducted using fine sands as the pond deposit under both constant head and falling head conditions. The final topographies of scour cones formed through water flushing were used to analyze the influence of desilting arrangements and related conditions on the volume of desilted sediment and desilting efficiency.
Key Words: Farm pond, shaft orifice desilting, pipe orifice desilting, scour cone, desilting efficiency
〔1〕Department of Hydraulic and Ocean Engineering, National Cheng Kung University, Tainan, Taiwan, R.O.C.
〔2〕Ecological Soil and Water Conservation Research Center, National Cheng Kung University, Tainan, Taiwan, R.O.C.
* Corresponding Author. E-mail : N88104018@gs.ncku.edu.tw
Received: 2022/04/20
Revised: 2022/05/24
Accepted: 2022/09/27
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