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2020 | OriginalPaper | Chapter

Analysis of Essentially Non-oscillatory Numerical Techniques for the Computation of the Level Set Method

Authors : Israel Pineda, Daniela Arellano, Roberth Chachalo

Published in: Applied Technologies

Publisher: Springer International Publishing

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Abstract

In this paper, we analyze the Upwind Differencing and the Essentially Non-Oscillatory (ENO) schemes for the level set method during the evolution of interfaces. Our evolution experiments use different vector fields to test the behavior of the interface in different aspects. The experiments presented in this work are: evolution of a circle in a rotating field, shrinking and expanding of a square, Zalesak’s disk revolution, and single-vortex evolution. Each one of them provides a different view of the strengths and weaknesses of the method. The experiments use the percentage of area loss, the \(L_{1}\) error, and the order of convergence as accuracy metrics. We compare the different techniques, report our results, and provide conclusions.

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Literature
5.
go back to reference Mazumder, S.: Numerical Methods for Partial Differential Equations: Finite Difference and Finite, vol. Methods. Elsevier, Amsterdam (2015)MATH Mazumder, S.: Numerical Methods for Partial Differential Equations: Finite Difference and Finite, vol. Methods. Elsevier, Amsterdam (2015)MATH
10.
go back to reference Sun, Z., Shu, C.: Strong stability of explicit Runge-Kutta time discretizations. Society 32(5), 3020–3038 (2019)MATH Sun, Z., Shu, C.: Strong stability of explicit Runge-Kutta time discretizations. Society 32(5), 3020–3038 (2019)MATH
Metadata
Title
Analysis of Essentially Non-oscillatory Numerical Techniques for the Computation of the Level Set Method
Authors
Israel Pineda
Daniela Arellano
Roberth Chachalo
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-42517-3_30

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