High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space

A new modified Engquist–Osher-type flux-splitting scheme is proposed to approximate the scalar conservation laws with discontinuous flux function in space. The fact that the discontinuity of the fluxes in space results in the jump of the unknown function may be the reason why it is difficult to desi...

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Main Authors: Tingting Xiang, Guodong Wang, Suping Zhang
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Mathematics
Subjects:
Online Access:https://www.mdpi.com/2227-7390/9/10/1079
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spelling doaj-9d450d067ef448d99bf5aeb845dfb3d92021-05-31T23:40:12ZengMDPI AGMathematics2227-73902021-05-0191079107910.3390/math9101079High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in SpaceTingting Xiang0Guodong Wang1Suping Zhang2School of Mathematics and Physics, Anhui Jianzhu University, Hefei 230601, ChinaSchool of Mathematics and Physics, Anhui Jianzhu University, Hefei 230601, ChinaSchool of Mathematics and Physics, Anhui Jianzhu University, Hefei 230601, ChinaA new modified Engquist–Osher-type flux-splitting scheme is proposed to approximate the scalar conservation laws with discontinuous flux function in space. The fact that the discontinuity of the fluxes in space results in the jump of the unknown function may be the reason why it is difficult to design a high-order scheme to solve this hyperbolic conservation law. In order to implement the WENO flux reconstruction, we apply the new modified Engquist–Osher-type flux to compensate for the discontinuity of fluxes in space. Together the third-order TVD Runge–Kutta time discretization, we can obtain the high-order accurate scheme, which keeps equilibrium state across the discontinuity in space, to solve the scalar conservation laws with discontinuous flux function. Some examples are given to demonstrate the good performance of the new high-order accurate scheme.https://www.mdpi.com/2227-7390/9/10/1079conservation lawsdiscontinuous fluxEngquist–Osher-type interface fluxflux-splittingWENO reconstruction
collection DOAJ
language English
format Article
sources DOAJ
author Tingting Xiang
Guodong Wang
Suping Zhang
spellingShingle Tingting Xiang
Guodong Wang
Suping Zhang
High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
Mathematics
conservation laws
discontinuous flux
Engquist–Osher-type interface flux
flux-splitting
WENO reconstruction
author_facet Tingting Xiang
Guodong Wang
Suping Zhang
author_sort Tingting Xiang
title High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
title_short High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
title_full High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
title_fullStr High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
title_full_unstemmed High-Order Accurate Flux-Splitting Scheme for Conservation Laws with Discontinuous Flux Function in Space
title_sort high-order accurate flux-splitting scheme for conservation laws with discontinuous flux function in space
publisher MDPI AG
series Mathematics
issn 2227-7390
publishDate 2021-05-01
description A new modified Engquist–Osher-type flux-splitting scheme is proposed to approximate the scalar conservation laws with discontinuous flux function in space. The fact that the discontinuity of the fluxes in space results in the jump of the unknown function may be the reason why it is difficult to design a high-order scheme to solve this hyperbolic conservation law. In order to implement the WENO flux reconstruction, we apply the new modified Engquist–Osher-type flux to compensate for the discontinuity of fluxes in space. Together the third-order TVD Runge–Kutta time discretization, we can obtain the high-order accurate scheme, which keeps equilibrium state across the discontinuity in space, to solve the scalar conservation laws with discontinuous flux function. Some examples are given to demonstrate the good performance of the new high-order accurate scheme.
topic conservation laws
discontinuous flux
Engquist–Osher-type interface flux
flux-splitting
WENO reconstruction
url https://www.mdpi.com/2227-7390/9/10/1079
work_keys_str_mv AT tingtingxiang highorderaccuratefluxsplittingschemeforconservationlawswithdiscontinuousfluxfunctioninspace
AT guodongwang highorderaccuratefluxsplittingschemeforconservationlawswithdiscontinuousfluxfunctioninspace
AT supingzhang highorderaccuratefluxsplittingschemeforconservationlawswithdiscontinuousfluxfunctioninspace
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