Numerical study of blow-up to the purely elliptic generalized Davey–Stewartson system

作者:

Highlights:

摘要

Blow-up solutions for the purely elliptic generalized Davey–Stewartson system are studied by using a relaxation numerical method. The numerical method is based on an implicit finite-difference scheme with a second-order accuracy in both time and space. The stability of the numerical method is analyzed by investigating the linear stability of plane wave solutions. To evaluate the ability of the relaxation method to detect blow-up, numerical simulations are conducted for several test problems. A particular attention is paid to the gap interval neither a global existence nor a blow-up result is established. The monotonicity properties of blow-up time on the coupling parameter are also investigated numerically.

论文关键词:35Q55,65M06,65M012,Relaxation method,Generalized Davey–Stewartson system,Blow-up,Global existence,Plane wave stability

论文评审过程:Received 18 September 2015, Revised 17 August 2016, Available online 14 December 2016, Version of Record 29 December 2016.

论文官网地址:https://doi.org/10.1016/j.cam.2016.12.003