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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/21578
Title: Application of weighted-least-square local polynomial approximation to 2D shallow water equation problems
Authors: Nan-Jing Wu 
Chieh Chen
Ting-Kuei Tsay
Keywords: Shallow water equations;Meshless method;Weighted-least-square;Local polynomial approximation
Issue Date: Jul-2016
Publisher: ELSEVIER
Journal Volume: 68
Source: ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS
Abstract: 
In this study, a numerical model based on shallow water equations (SWE) is developed. An explicit predictor–corrector approach is adopted for the time marching process. Using the leap-frog formulae, the three unknowns in SWE, which are the water depth h, and the water fluxes uh, vh, are firstly estimated directly by their values and their spatial derivatives in the previous time step. Then they are corrected by the Crank-Nicolson formulation. The spatial derivatives of h, uh and vh for the further time marching processes are calculated by using the Weighted Least Square (WLS) local polynomial approximation, which is a kind of meshless method. This model is applied to the simulations of dam break flows and tidal currents.
URI: http://scholars.ntou.edu.tw/handle/123456789/21578
ISSN: 0955-7997
DOI: 10.1016/j.enganabound.2016.04.010
Appears in Collections:海洋環境資訊系

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