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Some preliminary results on a high order asymptotic preserving computationally explicit kinetic scheme

Date

Date

Date
2022
Journal Article
Published version

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Abgrall, R., & Torlo, D. (2022). Some preliminary results on a high order asymptotic preserving computationally explicit kinetic scheme. Communications in Mathematical Sciences, 20(2), 297–326. https://doi.org/10.4310/CMS.2022.v20.n2.a1

Abstract

Abstract

Abstract

In this short paper, we intend to describe one way to construct arbitrarily high order kinetic schemes on regular meshes. The method can be arbitrarily high order in space and time, run at least CFL one, is asymptotic preserving and computationally explicit, i.e., the computational costs are of the same order of a fully explicit scheme. We also introduce a nonlinear stability method that enables to simulate problems with discontinuities, and it does not kill the accuracy for smooth regular solutions.

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1 since deposited on 2022-04-07
Acq. date: 2025-11-08

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Creators (Authors)

Journal/Series Title

Journal/Series Title

Journal/Series Title

Volume

Volume

Volume
20

Number

Number

Number
2

Page range/Item number

Page range/Item number

Page range/Item number
297

Page end

Page end

Page end
326

Item Type

Item Type

Item Type
Journal Article

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Language

Language

Language
English

Publication date

Publication date

Publication date
2022

Date available

Date available

Date available
2022-04-07

Publisher

Publisher

Publisher

ISSN or e-ISSN

ISSN or e-ISSN

ISSN or e-ISSN
1539-6746

OA Status

OA Status

OA Status
Closed

Other Identification Number

Other Identification Number

Other Identification Number
MR4374287

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1 since deposited on 2022-04-07
Acq. date: 2025-11-08

Citations

Citation copied

Abgrall, R., & Torlo, D. (2022). Some preliminary results on a high order asymptotic preserving computationally explicit kinetic scheme. Communications in Mathematical Sciences, 20(2), 297–326. https://doi.org/10.4310/CMS.2022.v20.n2.a1

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