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1 
Alavian, V. (1986). “Dispersion tensor in rotating flows,” J. of Hydr. Engrg., ASCE, Vol. 112, No. 8, pp. 770-777.Alavian, V. (1986). “Dispersion tensor in rotating flows,” J. of Hydr. Engrg., ASCE, Vol. 112, No. 8, pp. 770-777.Google Search
2 
Baek, K. O., Seo, I. W. and Jung, S. J. (2006). “Evaluation of dispersion coefficients in meandering channels from transient tracer tests,” J. of Hydr. Engrg., ASCE, Vol. 132, No. 10, pp. 1021-1032.Baek, K. O., Seo, I. W. and Jung, S. J. (2006). “Evaluation of dispersion coefficients in meandering channels from transient tracer tests,” J. of Hydr. Engrg., ASCE, Vol. 132, No. 10, pp. 1021-1032.Google Search
3 
Bates, D.M. and Watts, D.G. (1988). Nonlinear regression analysis and its applications, John Wiley and Sons, New York.http://dx.doi.org/10.1002/9780470316757Bates, D.M. and Watts, D.G. (1988). Nonlinear regression analysis and its applications, John Wiley and Sons, New York.DOI
4 
Chang, Y. (1971). Lateral mixing in meandering channels, Ph. D thesis, University of Iowa, USA.Chang, Y. (1971). Lateral mixing in meandering channels, Ph. D thesis, University of Iowa, USA.Google Search
5 
Chatwin, P. C. (1970). “The approach to normality of the concentration distribution of a solute in a solvent flowing along a straight pipe,” J. of Fluid Mech., Vol. 43, No. 2, pp. 321-352.http://dx.doi.org/10.1017/S0022112070002409Chatwin, P. C. (1970). “The approach to normality of the concentration distribution of a solute in a solvent flowing along a straight pipe,” J. of Fluid Mech., Vol. 43, No. 2, pp. 321-352.DOI
6 
de Vriend, H.J. (1977). “A mathematical model of steady flow in curved shallow channels,” J. of Hydr. Res., IAHR, Vol. 15, No. 1, pp. 37-54.http://dx.doi.org/10.1080/00221687709499748de Vriend, H.J. (1977). “A mathematical model of steady flow in curved shallow channels,” J. of Hydr. Res., IAHR, Vol. 15, No. 1, pp. 37-54.DOI
7 
Duan, G. (2004). “Simulation of flow and mass dispersion in meandering channels,” J. of Hydr. Engrg., ASCE, Vol. 130, No. 10, pp. 964-976.Duan, G. (2004). “Simulation of flow and mass dispersion in meandering channels,” J. of Hydr. Engrg., ASCE, Vol. 130, No. 10, pp. 964-976.Google Search
8 
Elder, J.W. (1959). “The dispersion of marked fluid in turbulent shear flow,” J. of Fluid Mech., Vol. 5, pp. 544-560.http://dx.doi.org/10.1017/S0022112059000374Elder, J.W. (1959). “The dispersion of marked fluid in turbulent shear flow,” J. of Fluid Mech., Vol. 5, pp. 544-560.DOI
9 
Fischer, H.B., List, E.J., Koh, R.C.Y., Imberger, J. and Brooks, N. H. (1979). Mixing in inland and coastal waters, Academic, New York.Fischer, H.B., List, E.J., Koh, R.C.Y., Imberger, J. and Brooks, N. H. (1979). Mixing in inland and coastal waters, Academic, New York.Google Search
10 
Han, K. Y. and Kim, S. H. (2000). “Advection-diffusion analysis in a river by Petrov-Galerkin method,” Journal of Korea society of civil engineers, Vol. 20, No. 2B, pp. 251-259 (in Korean).Han, K. Y. and Kim, S. H. (2000). “Advection-diffusion analysis in a river by Petrov-Galerkin method,” Journal of Korea society of civil engineers, Vol. 20, No. 2B, pp. 251-259 (in Korean).Google Search
11 
Jeon, T. M., Baek, K. O. and Seo, I. W. (2007). “Development of an empirical equation for the transverse dispersion coefficient in natural streams,” Environ. Fluid Mech., Springer, Vol. 7, pp. 317-329.Jeon, T. M., Baek, K. O. and Seo, I. W. (2007). “Development of an empirical equation for the transverse dispersion coefficient in natural streams,” Environ. Fluid Mech., Springer, Vol. 7, pp. 317-329.Google Search
12 
Kim, S. H. and Han, K. Y. (2000). “2-D Water quality analysis in Nakdong River by finite element method,” Journal of Korea society of civil engineers, Vol. 20, No. 4B, pp. 525-533 (in Korean).Kim, S. H. and Han, K. Y. (2000). “2-D Water quality analysis in Nakdong River by finite element method,” Journal of Korea society of civil engineers, Vol. 20, No. 4B, pp. 525-533 (in Korean).Google Search
13 
Lee, J. K. and Kim, J. Y. (2000). “Numerical modeling of two- dimensional advection-diffusion equation,” Journal of Korea society of civil engineers, Vol. 20, No. 3B, pp. 351-360 (in Korean).Lee, J. K. and Kim, J. Y. (2000). “Numerical modeling of two- dimensional advection-diffusion equation,” Journal of Korea society of civil engineers, Vol. 20, No. 3B, pp. 351-360 (in Korean).Google Search
14 
Lee, J. K. and Kim, K. K. (2002). “Behavior analysis of pollutant material by two-dimensional numerical model,” Journal of Korea society of civil engineers, Vol. 22, No. 5B, pp. 639-648 (in Korean).Lee, J. K. and Kim, K. K. (2002). “Behavior analysis of pollutant material by two-dimensional numerical model,” Journal of Korea society of civil engineers, Vol. 22, No. 5B, pp. 639-648 (in Korean).Google Search
15 
McGuirk, J. J. and Rodi, W. (1978). “A depth-averaged mathematical model for the near field of side discharges into open channel flow,” J. of Fluid Mech., Vol. 86, No.4, pp. 761-781.http://dx.doi.org/10.1017/S002211207800138XMcGuirk, J. J. and Rodi, W. (1978). “A depth-averaged mathematical model for the near field of side discharges into open channel flow,” J. of Fluid Mech., Vol. 86, No.4, pp. 761-781.DOI
16 
Odgaard, A. J. (1986). “Meander-flow model I: development,” J. of Hydr. Engrg., ASCE, Vol. 112, No. 12, pp. 1117-1136.Odgaard, A. J. (1986). “Meander-flow model I: development,” J. of Hydr. Engrg., ASCE, Vol. 112, No. 12, pp. 1117-1136.Google Search
17 
Piasecki, M. and Katopodes, N.D. (1999). “Identification of stream dispersion coefficients by adjoint sensitivity method,” J. of Hydr. Engrg., ASCE, Vol. 125, No. 7, pp. 714-724.Piasecki, M. and Katopodes, N.D. (1999). “Identification of stream dispersion coefficients by adjoint sensitivity method,” J. of Hydr. Engrg., ASCE, Vol. 125, No. 7, pp. 714-724.Google Search
18 
Prandtl, L. (1952). Essentials of Fluid Dynamics, Hafner Publications, New York.Prandtl, L. (1952). Essentials of Fluid Dynamics, Hafner Publications, New York.Google Search
19 
Rozovskii, I. L. (1957). Flow of water in bends of open channels, Academy of Science of Ukrainian, SSR.Rozovskii, I. L. (1957). Flow of water in bends of open channels, Academy of Science of Ukrainian, SSR.Google Search
20 
Rutherford, J.C. (1994). River mixing, John Wiley and Sons, Chichester, U.K.Rutherford, J.C. (1994). River mixing, John Wiley and Sons, Chichester, U.K.Google Search
21 
Sayre, W.W. and Chang, F. M. (1968). “A laboratory investigation of the open channel dispersion process for dissolved, suspended, and floating dispersants,” U.S. Geological Survey Professional paper 433-E.Sayre, W.W. and Chang, F. M. (1968). “A laboratory investigation of the open channel dispersion process for dissolved, suspended, and floating dispersants,” U.S. Geological Survey Professional paper 433-E.Google Search
22 
Seo, I. W. and Jung, Y. J. (2010). “Velocity distribution of secondary currents in curved channels,” J. of Hydrodynamics, Elsevier, Vol. 22, No. 5, pp. 617-622.http://dx.doi.org/10.1016/S1001-6058(10)60003-0Seo, I. W. and Jung, Y. J. (2010). “Velocity distribution of secondary currents in curved channels,” J. of Hydrodynamics, Elsevier, Vol. 22, No. 5, pp. 617-622.DOI
23 
Seo, I. W. and Lee, M. E. (2006). “Development of 2D advection- dispersion model with dispersion tensor considering velocity field,” Journal of Korea society of civil engineers, Vol. 26, No. 2B, pp. 171-178 (in Korean).Seo, I. W. and Lee, M. E. (2006). “Development of 2D advection- dispersion model with dispersion tensor considering velocity field,” Journal of Korea society of civil engineers, Vol. 26, No. 2B, pp. 171-178 (in Korean).Google Search
24 
Seo, I. W., Lee, M. E. and Baek, K. O. (2008). “2D modeling of heterogeneous dispersion in meandering channels,” J. of Hydr. Engrg., ASCE, Vol. 134, No. 2, pp. 196-204.Seo, I. W., Lee, M. E. and Baek, K. O. (2008). “2D modeling of heterogeneous dispersion in meandering channels,” J. of Hydr. Engrg., ASCE, Vol. 134, No. 2, pp. 196-204.Google Search
25 
Seo, I. W. and Son, E. W. (2006). “Development of sequential mixing model for analysis of shear flow dispersion,” Journal of Korea society of civil engineers, Vol. 26, No. 4B, pp. 335-343 (in Korean).Seo, I. W. and Son, E. W. (2006). “Development of sequential mixing model for analysis of shear flow dispersion,” Journal of Korea society of civil engineers, Vol. 26, No. 4B, pp. 335-343 (in Korean).Google Search
26 
Seo, I. W. and Song, C. G. (2010). “Development of 2D finite element model for the analysis of shallow water flow,” Journal of Korea society of civil engineers, Vol. 30, No. 2B, pp. 199-209 (in Korean).Seo, I. W. and Song, C. G. (2010). “Development of 2D finite element model for the analysis of shallow water flow,” Journal of Korea society of civil engineers, Vol. 30, No. 2B, pp. 199-209 (in Korean).Google Search
27 
Taylor, G.I. (1954). “Dispersion of matter in turbulent flow through a pipe,” Proc. R. Soc. London, Ser. A, Vol. 223, No. 1155, pp. 446-468.http://dx.doi.org/10.1098/rspa.1954.0130Taylor, G.I. (1954). “Dispersion of matter in turbulent flow through a pipe,” Proc. R. Soc. London, Ser. A, Vol. 223, No. 1155, pp. 446-468.DOI
28 
Thorne, C.R., Rais, S., Zevenbergen, L.W., Bradley, J.B. and Julien, P.Y. (1983). “Measurements of bend flow hydraulics on the Fall River at low stage,” WRFSL Report No. 83-9P, Nat. Park Serv., 107C Natural Resources, Colorado St. Univ., Fort Collins, CO.Thorne, C.R., Rais, S., Zevenbergen, L.W., Bradley, J.B. and Julien, P.Y. (1983). “Measurements of bend flow hydraulics on the Fall River at low stage,” WRFSL Report No. 83-9P, Nat. Park Serv., 107C Natural Resources, Colorado St. Univ., Fort Collins, CO.Google Search