An efficient mapped WENO scheme using approximate constant mapping
Ruo Li, Wei Zhong

TL;DR
This paper introduces WENO-ACM, a new efficient WENO scheme using an approximate constant mapping function that maintains high accuracy and resolution while significantly reducing computational cost.
Contribution
The paper proposes a novel approximate constant mapping function for WENO schemes, improving efficiency and maintaining high resolution compared to existing methods.
Findings
WENO-ACM achieves high resolution similar to WENO-PM6.
The scheme reduces computational cost by over 83% compared to WENO-M.
Numerical tests show improved accuracy and efficiency in 1D and 2D problems.
Abstract
We present a novel mapping approach for WENO schemes through the use of an approximate constant mapping function which is constructed by employing an approximation of the classic signum function. The new approximate constant mapping function is designed to meet the overall criteria for a proper mapping function required in the design of the WENO-PM6 scheme. The WENO-PM6 scheme was proposed to overcome the potential loss of accuracy of the WENO-M scheme which was developed to recover the optimal convergence order of the WENO-JS scheme at critical points. Our new mapped WENO scheme, denoted as WENO-ACM, maintains almost all advantages of the WENO-PM6 scheme, including low dissipation and high resolution, while decreases the number of mathematical operations remarkably in every mapping process leading to a significant improvement of efficiency. The convergence rates of the WENO-ACM scheme…
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