| 研究生: |
黃奕璋 Yi-jhang Huang |
|---|---|
| 論文名稱: |
極端降雨事件分散式集水區逕流模式之發展與驗證 Development and Validation of Distributed Watershed Run-off Model under Severe Rainfall Condition |
| 指導教授: |
蔡武廷
Wu-ting Tsai |
| 口試委員: | |
| 學位類別: |
碩士 Master |
| 系所名稱: |
地球科學學院 - 水文與海洋科學研究所 Graduate Instittue of Hydrological and Oceanic Sciences |
| 畢業學年度: | 95 |
| 語文別: | 中文 |
| 論文頁數: | 84 |
| 中文關鍵詞: | 集水區逕流模式 、洪水波 、漫地流 、渠道流 、降雨 、截留 、入滲 |
| 外文關鍵詞: | infiltration, interception, rainfall, channel flow, watershed run-off model, flood wave, overland flow |
| 相關次數: | 點閱:15 下載:0 |
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本研究發展一分散式集水區逕流模式,考慮了降雨、截留、漫地流、入滲與渠道流共五種水文過程。每種水文過程皆有相對應之控制方程式,此模式採有限差分法將其離散化,配合適當之輸入資料與參數,即可於計算機中模擬各種水文過程。此外,本研究以石門水庫集水區為研究區域,選用納莉颱風作為降雨事件,並使用不同計算時距和空間解析度資料驗證模式之收斂性,其次探討截留與入滲兩種水文過程在極端降雨事件中的重要性,同時分析渠道粗糙度對於洪水波之影響。最後,我們對本模式提出建議。
This study developed a distributed watershed run-off model which consider rainfall, interception, overland flow, infiltration, and channel flow. Finite difference numerical scheme was used in the model to discretize the governing equations of the hydrological processes. With appropriate data and parameters, we could use this model to simulate these hydrological processes in the computer.In this study, the watershed of Shihmen Reservoir was chosen as the research domain and typhoon Nari was chosen as the rainfall event. We validated the model with different time interval and spatial resolution ,and also discussed the importance of interception and infiltration as well as discussed the impact on flood wave with different roughness of the channel. Finally, we proposed some suggestions to the model.
1.Beven, K. J. and Kirkby M. J., “A physically based variable contributing area model of basin hydrology”, Hydrological Sciences Bulletin, Vol24(1), pp. 43-69, 1979.
2.Bras, R. L., Hydrology, an introduction to hydrologic science, Addison -Wesley, 1990.
3.Courant, R., Friedrichs, K., & Lewy, H., “On the partial difference equations of mathematical physics”, IBM Journal, pp. 215-234, English translation of the 1928 German original, March 1967.
4.Chow, V. T., Maidment, D. R., & Mays, L. W., Applied Hydrology, McGraw-Hill, New York, 1988.
5.Chow, V. T., Open-channel hydraulics, McGraw-Hill, New York, 1959.
6.Crawford, N. H. and R. K. Linsley, “Digital simulation in hydrology: Stanford Watershed Model IV”, Technical Report, 39., 1966.
7.Dooge, J. C. I. & Napiôrkowsld, J. J., “Applicability of diffusion analogy in flood routing ”, Acta Geoptys., Vol 35(1), pp. 65-75, 1987.
8.Eagleson, P. S., Dynamic hydrology, McGraw-Hill., 1970.
9.Julien, P. Y., and O’Brien, J. S., “Laboratory Analysis of Mud Propertues”, Journal of Hydraulic Engineering, Vol. 114, No.8, August, 1988.
10.Julien, P. Y., and Saghafian, B., “CASC2D user’s manual—A two dimensional watershed rainfall-runoff model ”, Civil Eng. Report, CER90-91PYJ-BS-12, Colorado State University, Fort Collins, Fort Collins, CO., 1991.
11.Julien, P. Y., Saghafian, B., & Ogden, F. L., “Raster-based hydrologic modeling of spatiality-varied surface runoff ”, Water Resources Bulletin, Vol 31(3), pp. 523-536, 1995.
12.Karnieli, A. M., Diskin, M. H., & Lane, L. J., “CELMOD5—a semi-distributed cell model for conversion of rainfall into runoff in semi-arid watersheds ”, Journal of Hydrology, Vol 157, pp. 61-85, 1994.
13.Ponce V. M., Li, Ruh-Ming., & Simons D. B., “Applicability of kinematic and diffusion models ”, J.Hydraul. Div., ASCE, HY3, pp. 353-360, 1978.
14.Ponce, V. M., and Simons, D. B., “Shallow wave propagation in open channel flow ”, J.Hydraul. Div., Am. Soc. Civ. Eng., Vol 103(12), pp. 1461-1476, 1977.
15.Rojas, R., Julien, P., & Johnson, B., CASC2D-SED version 1.0 Reference Manual , Colorado State University, July 2003.
16.Rawls, W.J., & Brakensiek, D. L., “A procedure to predict Green and Ampt infiltration parameters. Advances in Infiltration”, Journal of Hydraulic Engineering, Vol. 109, No. 1, pp. 62-70, January 1983.
17.Woolhiser, D. A., "Simulation of unsteady overland flow." Unsteady flow in open channels, K. Mahmood and V. Yevjevich, eds., Fort Collins, CO., 1975.
18.Yen, B. C., and Tsai, C. W.-S., “Noninertia wave vs. diffusion wave in flood routing ”, J.Hydrol., Vol 244(2), pp. 97-104, 2001.
19.中央氣象局,颱風百問,民國九十六年。http://www.cwb.gov.tw/V5/education/knowledge/Data/typhoon/typhone_index.htm
20.中央氣象局,颱風資料庫,民國九十六年。http://rdc28.cwb.gov.tw/data.php
21.中華民國溪流環境協會,民國九十六年。http://wagner.zo.ntu.edu.tw/sos/sosknow/sosknow_1_4.htm
22.王如意、易任,應用水文學(新編上冊),國立編譯館,臺北,民國七十七年。
23.鍾旻修,「應用地理統計於土壤重金屬污染物之空間分佈探討」,碩士論文,逢甲大學環境工程研究所,台中,民國九十二年。
24.經濟部水利署北區水資源局網站,民國九十六年。http://www.wranb.gov.tw/
25.黃誌川,「集水區降雨逕流時空分布之模擬─結合地文參數之不確定性分析」,博士論文,國立台灣大學,地理環境資源研究所,臺北,民國九十一年。
26.葉宗泰,「石門水庫集水區降雨逕流模擬」,碩士論文,國立中央大學土木工程研究所,桃園,民國九十二年。
27.鄭力嘉,「地理資訊系統於石門水庫集水區降雨逕流分析之應用」,碩士論文,中原大學土木工程研究所,桃園,民國九十四年。
28.陳心穎,「颱風事件下之集水區逕流模擬」,碩士論文,國立中央大學土木工程研究所,桃園,民國九十四年。