Research Article
Adaptive grid based moving mesh algorithms for singularly perturbed second-order Volterra integro differential equations
DOI:
10.2989/16073606.2025.2462939
Author(s):
Sushree PriyadarshanaCentre for Data Science, Institute of Technical Education and Research, SOA Deemed to be University, India, Ajaya PadhanNational Institute of Technology Rourkela, India, Jugal MohapatraNational Institute of Technology Rourkela, India,
Keywords:
45J05, 65L10, 65L50, 65R20, Moving mesh algorithm, mesh equidistribution, Newton’s linearization, uniform convergence, Volterra integro differential equation, singular perturbation,
Abstract
Robust adaptive grid-based moving mesh algorithms are discussed for singularly perturbed second-order convection-diffusion type Volterra integro differential equations. Two different kinds of monitor functions are used to establish the numerical schemes. A well-studied first-order monitor function is used to construct Scheme-I which is a combination of the upwind scheme and the left rectangle rule of first-order accuracy. Further, the use of a comparatively new second-order monitor function is examined to elevate the accuracy of Scheme-I via the Richardson extrapolation technique. The numerical experiments are extended for some nonlinear model problems of similar nature. All the theoretical claims are validated by performing several numerical experiments. The constructed adaptive meshes have proved to be beneficial over some existing graded meshes as they are not a priori. Also, they help the standard schemes to attain their optimal accuracy unlike the standard Shishkin-mesh.
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