题名

野溪河道一般沖刷深度現場試驗之研究

并列篇名

Field Experiments on General Scour in Upstream Creek Riverbeds

DOI

10.29417/JCSWC.201803_49(1).0002

作者

詹勳全(Hsun-Chuan Chan);宋羅安(Luo-An Sung);廖雯慧(Wen-Huil Liao);李正鈞(Zheng-Jun Li)

关键词

野溪 ; 沖刷 ; 無線追蹤粒子 ; Upstream creeks ; scour ; wireless tracer

期刊名称

中華水土保持學報

卷期/出版年月

49卷1期(2018 / 03 / 01)

页次

12 - 26

内容语文

繁體中文

中文摘要

本研究為了觀測野溪河道之一般沖刷深度,並改善現有觀測儀器於野溪河道觀測上之困難,蒐集河道沖刷型態、影響因子及沖刷觀測技術之文獻,分析評估後採用“無線追蹤粒子沖刷觀測技術”進行野溪河道一般沖刷觀測,於實驗室進行渠槽試驗及室外測試,針對觀測儀器操作特性及訊號傳輸穩定度進行測試,並對無線追蹤粒子之抗壓、耐水及訊號接收距離等性能進行分析與檢測,確認儀器於現地運作之能力後;於2016年5月31日及6月1日於南投縣仁愛鄉眉溪完成兩處沖刷觀測站建置,蒐集研究樣區汛期期間之現場水文水理及現地沖刷資料,成功於2016年6月13日觀測到暴雨事件之沖刷過程,並透過河道現地調查驗證無線追蹤粒子之觀測可信度,結果顯示無線追蹤粒子可成功於野溪河道觀測沖刷深度;而未來若有野溪河道沖刷觀測相關之研究,建議未來可採用無線追蹤粒子進行觀測,並透過觀測樣區及觀測資料數量的提升,增加改進沖刷估算公式,進而發展本土化之預估方法,回饋於現地沖刷監測與防災預警使用。

英文摘要

This study performed a literature review and analyzed the types, influencing factors, estimation formulas, and measurement techniques of the general scour in rivers. To improve the efficiency of existing scour depth measuring technologies, the existing measurement methods were evaluated, and the float-out device was identified as the most effective scouring measurement tool. The float-out device was tested in a laboratory channel. Subsequently, two measurement stations were constructed in the Mei river, Nantou County in Taiwan, on May 31 and June 1, 2016, respectively, to collect scouring data during floods. The scouring process of a heavy rainfall event was successfully observed on June 13, 2016. The float-out device proved suitable for measuring the scour depth in the Mei river. When the results of the field survey and measured data of the float-out device were compared, the float-out device was revealed to be an effective and efficient method of measuring riverbed scour. In the future, the applications of this monitoring technique can be increased. By increasing the amount of field data, the accuracy and localization of the scour estimation formulas can be improved.

主题分类 生物農學 > 農業
生物農學 > 森林
生物農學 > 畜牧
生物農學 > 漁業
生物農學 > 生物環境與多樣性
工程學 > 土木與建築工程
工程學 > 市政與環境工程
参考文献
  1. Camp, C.V.,Pezeshk, S.,Leatherwood, T.D.(1998).Detecting Bridge Scour by Measuring the Thermal Variation Across the Stream Bed.Water Resources Engineering Conference,U.S.A:
  2. Dowding, C.H.(1985).Blast Vibration Monitoring and Control.Englewood Cliffs, NJ:Prentice Hall, Inc..
  3. Lin, Y.B.,Chen, J.C.,Chang, K.C.(2004).Real-time monitoring of local scour by using fiber Bragg grating sensors.Smart Materials and Structures,14,664-670.
  4. Melville, B.W.,Coleman, S.E.(2000).Bridge scour.U.S.A., Colorado:Water Resources Publications, LLC.
  5. Schall, J.D.,Price, G.R.(2004).Portable scour monitoring equipment.Washington, D.C.:Transportation Research Board.
  6. Yang, H.C.,Su, C.C.(2015).Real-time river bed scour monitoring and synchronous maximum depth data collected during Typhoon Soulik in 2013.Hydrological Processes,29(6),1056-1068.
  7. 王傳益, C.Y.,呂紹吉, S.J.,張嘉玲, C.L.,林彥伶, Y.L.(2017)。河道沖淤量測技術及推估方法之研究。水土保持學報,49(2),2015-2118。
  8. 行政院農業委員會水土保持局南投分局, Soil and Water Conservation Bureau(2015)。行政院農業委員會水土保持局南投分局 (2015),「眉溪阿里山溪等二處集水區土砂控制測量與監測」,行政院農業委員會水土保持局南投分局。(Nantou Branch, Soil and Water Conservation Bureau. (2015). “Measurement and Monitoring of Sand Controling in Mei River and Alishan River” Nantou Branch, Soil and Water Conservation Bureau. (in Chinese))。
  9. 林呈, C.,高明哲, M.J.,蔡榮峻, R.J.,何鴻文, H.W.(2007)。橋基沖刷災害與相關之維護管理(2)-橋梁沖刷監測預警系統及其功能評析。台灣公路工程,33,2-38。
  10. 林其穎, C.Y.(2011)。Taiwan, ROC,國立臺灣大學土木工程學系=Department of Civil Engineering, National Taiwan University。
  11. 林穎志, Y. C.,朱木壽, M. S.,詹勳全, H. C.,高昇敬, S. C.,呂珍謀, J. M.(2011)。利用實測表面流速推估高流量之研究。中華水土保持學報,42(1),23-36。
  12. 陳永康, Y. K.(2015)。Taiwan, ROC,逢甲大學水利工程與資源保育學系=Department of Water Resources Engineering and Conservation, Feng Chia University。
  13. 盧昭堯, J.Y.,王傳益, C.Y.,楊翰宗, H.Z.,蘇志強, J.C.,徐偉碩, W.S.(2014).颱洪河道短期一般沖刷之觀測研究.Taiwan, ROC:經濟部水利署水利規劃試驗所=Water Resources Planning Institute, Water Resources Agency, Ministry of Economic Affairs.
  14. 羅乃維 (2009),「RFID 介紹與應用」(台灣科技大學資訊管理系課程內容)。(Lo, N.W. (2009). “The Introduction and Application of RFID” National Taiwan University of Science and Technology, Department of Information Management, Teaching material. (in Chinese)) http://www.ttrc.edu.tw/userfiles/file/training100/100-07-27RFID%E4%BB%8B%E7%B4%B9%E8%88%87%E6%87%89%E7%94%A8.pdf。
  15. 蘇志強, C.C.,楊翰宗, H.C.(2017)。無線追蹤粒子遠端即時橋基沖刷監測於防災預警應用。台灣水利,65(3),1-15。