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Information Journal Paper

Title

Generation, Propagation and Run-up of Tsunami Waves Crated by Submarine Landslide

Pages

  113-119

Abstract

 In this study generation, propagation and run-up of Tsunami waves caused by submerged landslide are studied in two dimensions. The governing equations, Navier– Stokes equations, are solved in a Lagrangian form using a mesh-less numerical method by the name of Incompressible Smoothed particle hydrodynamics with a prediction– correction step. The Comparison of the result of this study with experimental data indicates that the deviations between the wave amplitudes are less than 5 cm for every different time steps and also, this model simulated run up and Water surface fluctuations more accurately against the Nasa-Vof until to 3 seconds.

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    APA: Copy

    MOFIDI, JALAL, RAHBANI, MARYAM, & RASHIDI EBRAHIM HESARI, AKBAR. (2017). Generation, Propagation and Run-up of Tsunami Waves Crated by Submarine Landslide. JOURNAL OF MARINE ENGINEERING, 13(25 ), 113-119. SID. https://sid.ir/paper/60971/en

    Vancouver: Copy

    MOFIDI JALAL, RAHBANI MARYAM, RASHIDI EBRAHIM HESARI AKBAR. Generation, Propagation and Run-up of Tsunami Waves Crated by Submarine Landslide. JOURNAL OF MARINE ENGINEERING[Internet]. 2017;13(25 ):113-119. Available from: https://sid.ir/paper/60971/en

    IEEE: Copy

    JALAL MOFIDI, MARYAM RAHBANI, and AKBAR RASHIDI EBRAHIM HESARI, “Generation, Propagation and Run-up of Tsunami Waves Crated by Submarine Landslide,” JOURNAL OF MARINE ENGINEERING, vol. 13, no. 25 , pp. 113–119, 2017, [Online]. Available: https://sid.ir/paper/60971/en

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