References
[1] Akbari, G. ve Firoozi, B., 2010. Implicit and Explicit Numerical Solution of Saint-Venant Equations for Simulating Flood Wave in Natural Rivers, 5th National Congress on Civil Engineering, Ferdowsi University of Mashhad, Mashhad, Iran.
[2] Barry, D. A. ve Bajracharya, K., 1995. On The Muskingum-Cunge Flood Routing Method, Environment International, Vol. 21(5), pp. 485-490.
[3] Bayazıt, M. ve Önöz B., 2008. Taşkın ve Kuraklık Hidrolojisi, Nobel Akademik Yayıncılık, Ankara.
[4] Bayazıt, M., 1995. Hidroloji, İ.T.Ü. İnşaat Fakültesi Matbaası.
[5] Chow, V. T., Maidment, D. R. ve Mays L. W., 1988. Applied Hydrology, McGraw-Hill, Inc, USA.
[6] Çimen, M., 1995. Difüzyon Yöntemi ile Akarsu Yatağındaki Taşkınların Ötelenmesi. Yüksek Lisans Tezi, SDÜ Fen Bilimleri Enstitüsü, Isparta.
[7] Gökoğlu, F., 2000. Akarsularda Taşkın Dalgalarının Sayısal Analizi, Yüksek Lisans Tezi, YTÜ Fen Bilimler Enstitüsü, İnşaat Mühendisliği Anabilim Dalı, İstanbul.
[8] Jayyousi, F. E., 1994. Evaluation of Flood Routing Techniques for Incremental Damage Assessment, Doctor of Philosophy Dissertation, Utah State University, Utah.
[9] Karahan, H. ve Gürarslan, G., 2012. Kinematik Dalga Yaklaşımı Kullanılarak Taşkın Öteleme Problemlerinin Modellenmesi: Sütçüler Örneği, VII. Ulusal Hidroloji Kongresi.
[10] Knapp, H. V., Durgunoglu, A. ve Ortel, T. W., 1991. A Review of Rainfall-Runoff Modeling for Stormwater Management, U.S. Geological Survey, Hydrology Division, Illinois.
[11] Lee, K. T. ve Huang, P. C., 2012. Evaluating the Adequateness of Kinematic-Wave Routing for Flood Forecasting in Midstream Channel Reaches of Taiwan, Journal of Hydroinformatics, 14.4, pp: 1075-1088.
[12] Sarıgöl, M., 2018. Taşkın Ötelenmesinde Kullanılan Bazı Hidrolojik ve Hidrolik Yöntemlerinin Performanslarının Karşılaştırılması, Karadeniz Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Yayınlanmamış Doktora Tezi, Trabzon.
[13] Atalay, O., 2008. Taşkın Hidrografının Elde Edilmesiyle İlgili Yöntemlerin Karşılaştırılması, Yüksek Lisans Tezi, KÜ Fen Bilimler Enstitüsü, İnşaat Mühendisliği Anabilim Dalı, Kocaeli.
[14] Choi, C. C., 2013. Coupled Hydrologic And Hydraulic Models And Applications, Master Theses, The University of Iowa, Iowa.
[15] Tewold, M. H., 2005. Flood Routing in Ungauged Catchments Using Muskingum Model, Master Theses, University of Kwa-Zulu-Nata, Pietermaritzburg.
[16] Ülke, A., 2001. Taşkın Öteleme Metodları, Seminer I Notları, Isparta.
[17] Cheng, J. Y., 2011. Modification of Kinematic Wave Cascading Model for Low Impact Watershed Development, Doctor of Philosophy Dissertation, University of Colorado, Denver.
[18] Kundzewicz Z. W. ve Strupczewski W. G., 1982. Approximate Translation in the Muskingum Model, Hydrological Sciences Journal, Vol.27 (1), pp. 19-17.
[19] Ülke, A., 2003. Muskingum Metodu Kullanılarak Taşkın Ötelenmesi, Yüksek Lisans Tezi, SDÜ Fen Bilimler Enstitüsü, İnşaat Mühendisliği Anabilim Dalı, Isparta.
[20] Chaudhry, H. M., 2008. Open-Channel Flow Second Edition, Springer Science Business Media, LLC, 324.S, USA.
[21] Wang, G. T., Yao, C., Okoren, C. ve Chen, S. 2006. 4-Point FDF of Muskingum Method Based on The Complete St Venant Equations, Journal of Hydrology, Vol.324 (1), pp.339-349.
[22] Maidment, D. R., 1993. Handbook of Hydrology, McGraw-Hill, Inc. P10.1.
[23] Afzali S. H., 2016. Variable-Parameter Muskingum Model, Iranian Journal of Science and Technology, Transactions of Civil Engineering, Vol.40 (1), pp. 59-68.
[24] Tung, Y. K., 1985. River Flood Routing By Nonlinear Muskingum Method, Journal of Hydraulic Engineering, 111 (12), 1447-1460.
[25] Ogunlela, A. O. ve Kasali, M. Y., 2014. Kinematic Flood Routing of Asa River, International Journal of Engineering and Technical Research, Vol. 2 (3), pp.13– 17.
[26] Elbashir, S. T., 2011. Flood Routing in Natural Channels Using Muskingum Methods, Master Theses, Dublin Institute of Technology.
[27] Haktanir, T. ve Özmen, H., 1997. Comparison of Hydraulic and Hydrologic Routing on Three Long Reservoirs, Journal of Hydraulic Engineering, Vol.123 (2), pp.153-156.
[28] Keskin, M. E. ve Ağıralioğlu, N., 1997. A Simplified Dynamic Model for Flood Routing in Rectangular Channels, Journal of Hydrology, Vol. 202, pp. 302–314.
[29] Soentoro, E. A., 1991. Comparision of Flood Routing Methods. Master Theses, University of British Columbia, Vancouver, Canada.
[30] Soleymani, M. ve Delphi, M., 2012. Comparison of Flood Routing Models (Case Study: Maroon River, Iran), World Applied Sciences Journal Vol. 16 (5), pp: 769-775.
[31] Xia, R., 1992. Sensitivity of Flood Routing Models to Variations of Momentum Equation Coefficients and Terms, Doctor of Philosphy Dissertation, University of Illinois, Urbana.
[32] Ponce, V. M., Lohani, A. K. ve Scheyhing, C. 1996. Analytical Verification of Muskingum-Cunge Routing, Journal of Hydrology, Vol. 174(3-4), pp. 235-241.
[33] Özmen, H., 1999. Baraj Gölünden Taşkın Öteleme Modelleri, Doktora Tezi, ÇÜ Fen Bilimler Enstitüsü, İnşaat Mühendisliği Anabilim Dalı, Adana.
[34] Shultz, M. J., 1992. Comparison of Flood Routing Methods for Rapidly Rising Hydrograph Routed Through a very Wide Channel, Master Thesis, The University of Texas, Arlington.
[35] Hec-1, 1990. Flood Hydrograf Package, User’s Manual, Hydrologic Engineering Center, U. S. Army Crops of Engineers.
[36] Chatila, J. G., 1992. Application and Comparison of Dynamic Routing Models For Unsteady Flow in Simple and Compound Channels, Master Thesis, University of Ottawa, Canada.