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Information Journal Paper

Title

A ONE-DIMENSIONAL NUMERICAL MODEL OF ADVECTION AND DIFFUSION OF SALINITY IN KARUN-BAHMANSHIR AND HAFAR SYSTEM IN TIDAL CONDITIONS

Pages

  69-80

Abstract

 Salinity analysis in tidal rivers is generally more complex than normal rivers. The reason of this complexity is tides that occur in sea which in this term affect rivers connected to sea or ocean. Salinity front moves toward the river at high tide duration and vise versa at low tide duration. This is the main reason of mixing of saline and fresh water along the river.In this paper the differential equation of salinity mass transfer and saint-venant equations are solved for tidal conditions using the finite difference control volume method. To demonstrate the ability of the developed model a real case conditions Karun-Bahmanshir and Hafar branches was modeled and salinity of this branches was predicted. Results indicate that salinity in Bahmanshir can be reduced by increasing discharge of fresh water in the artificial channel connecting Karun and Bahmanshir.

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    APA: Copy

    SAMANI, H.M.V., VAHABIAN, M., & AZIZI MOBASER, J.. (2008). A ONE-DIMENSIONAL NUMERICAL MODEL OF ADVECTION AND DIFFUSION OF SALINITY IN KARUN-BAHMANSHIR AND HAFAR SYSTEM IN TIDAL CONDITIONS. AGRICULTURAL RESEARCH, 8(3), 69-80. SID. https://sid.ir/paper/84812/en

    Vancouver: Copy

    SAMANI H.M.V., VAHABIAN M., AZIZI MOBASER J.. A ONE-DIMENSIONAL NUMERICAL MODEL OF ADVECTION AND DIFFUSION OF SALINITY IN KARUN-BAHMANSHIR AND HAFAR SYSTEM IN TIDAL CONDITIONS. AGRICULTURAL RESEARCH[Internet]. 2008;8(3):69-80. Available from: https://sid.ir/paper/84812/en

    IEEE: Copy

    H.M.V. SAMANI, M. VAHABIAN, and J. AZIZI MOBASER, “A ONE-DIMENSIONAL NUMERICAL MODEL OF ADVECTION AND DIFFUSION OF SALINITY IN KARUN-BAHMANSHIR AND HAFAR SYSTEM IN TIDAL CONDITIONS,” AGRICULTURAL RESEARCH, vol. 8, no. 3, pp. 69–80, 2008, [Online]. Available: https://sid.ir/paper/84812/en

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