Legendre Expansions of Products of Functions with Applications to Nonlinear Partial Differential Equations
arXiv:2110.01372 · doi:10.1016/j.apnum.2024.03.014
Abstract
Given the Fourier-Legendre expansions of and , and mild conditions on and , we derive the Fourier-Legendre expansion of their product in terms of their corresponding Fourier-Legendre coefficients. In this way, expansions of whole number powers of may be obtained. We establish upper bounds on rates of convergence. We then employ these expansions to solve semi-analytically a class of nonlinear PDEs with a polynomial nonlinearity of degree 2. The obtained numerical results illustrate the efficiency and performance accuracy of this Fourier-Legendre based solution methodology for solving an important class of nonlinear PDEs.
38 pages, 25 figures