TY - JOUR UR - https://www.scopus.com/inward/record.uri?eid=2-s2.0-85105314331&doi=10.1016%2fj.euromechflu.2021.04.010&partnerID=40&md5=f120c41a55d7de23473ae62b2985e70d ID - scholars14801 KW - Boltzmann equation; Equations of motion; Floods; Non Newtonian flow; Non Newtonian liquids; Turbulence; Water levels KW - Computational studies; Lattice Boltzmann equations; Lattice boltzmann methods (LBM); Lattice boltzmann models; Non-linear shallow water equations; Non-Newtonian fluids; Two-dimensional simulations; Viscosity modeling KW - Tsunamis AV - none SN - 09977546 VL - 88 TI - Computational study of tsunami inundation using the LABSWETMâ??Sisko Model A1 - Shafiai, S.H. A1 - Gohari, A. A1 - Ying, B.Y. N2 - The Lattice Boltzmann Method (LBM) is promising for studies on Tsunami inundation. In this work, a Lattice Boltzmann Model for non-linear Shallow-Water Equations with a Turbulence Modelingâ?? (LABSWETM) was developed to consider the turbulence and non-Newtonian fluid behavior of tsunami flow. This involves incorporating the Sisko viscosity model into the lattice Boltzmann equation. By using the LABSWETM â?? Sisko Model, a two-dimensional simulation was carried out to model and predict the tsunami waves at Kuala Teriang, Langkawi, Kedah, Malaysia. In addition, the thin film method was utilized to model the wetting and drying of the tsunami run-up. The numerical results were found to be consistent with the corresponding experimental data extracted from literature, which demonstrated that the LABSWETM â?? Sisko Model was a feasible solution for the simulation of tsunami waves inundation. Moreover, the study showed that the tsunami inundation can occur over a very long distance, and with the increasing threat in the rise of the inundated water level. © 2021 Elsevier Masson SAS Y1 - 2021/// N1 - cited By 1 EP - 263 SP - 251 JF - European Journal of Mechanics, B/Fluids PB - Elsevier Ltd ER -