Redirigiendo al acceso original de articulo en 16 segundos...
Inicio  /  Applied Sciences  /  Vol: 13 Par: 14 (2023)  /  Artículo
ARTÍCULO
TITULO

Numerical Solutions of the Nonlinear Dispersive Shallow Water Wave Equations Based on the Space?Time Coupled Generalized Finite Difference Scheme

Po-Wei Li    
Shenghan Hu and Mengyao Zhang    

Resumen

This study applies the space?time generalized finite difference scheme to solve nonlinear dispersive shallow water waves described by the modified Camassa?Holm equation, the modified Degasperis?Procesi equation, the Fornberg?Whitham equation, and its modified form. The proposed meshless numerical scheme combines the space?time generalized finite difference method, the two-step Newton?s method, and the time-marching method. The space?time approach treats the temporal derivative as a spatial derivative. This enables the discretization of all partial derivatives using a spatial discretization method and efficiently handles mixed derivatives with the proposed mesh-less numerical scheme. The space?time generalized finite difference method is derived from Taylor series expansion and the moving least-squares method. The numerical discretization process only involves functional data and weighting coefficients on the central and neighboring nodes. This results in a sparse matrix system of nonlinear algebraic equations that can be efficiently solved using the two-step Newton?s method. Additionally, the time-marching method is employed to advance the space?time domain along the time axis. Several numerical examples are presented to validate the effectiveness of the proposed space?time generalized finite difference scheme.

 Artículos similares

       
 
Touraj Farsadi, Majid Ahmadi, Melin Sahin, Hamed Haddad Khodaparast, Altan Kayran and Michael I. Friswell    
In the field of aerospace engineering, the design and manufacturing of high aspect ratio composite wings has become a focal point of innovation and efficiency. These long, slender wings, constructed with advanced materials such as carbon fiber and employ... ver más
Revista: Aerospace

 
Nazrul Azlan Abdul Samat, Norfifah Bachok and Norihan Md Arifin    
The present study aims to offer new numerical solutions and optimisation strategies for the fluid flow and heat transfer behaviour at a stagnation point through a nonlinear sheet that is expanding or contracting in water-based hybrid nanofluids. Most hyb... ver más
Revista: Computation

 
Jozef Gocál, Josef Vican, Jaroslav Odrobinák, Richard Hlinka, Franti?ek Bahleda and Agnieszka Wdowiak-Postulak    
In addition to traditional building materials, such as steel and concrete, wood has been gaining increasing prominence in recent years. In the past, the use of wood was limited due to its susceptibility to damage by fungi, insects, and temperature. These... ver más
Revista: Applied Sciences

 
Sifang Zhou and Qingnian Zhang    
The container relocation problem (CRP) is an important factor affecting the operation efficiency of container terminal yards, and it has attracted much attention for decades. The CRP during the pickup operations of import containers is still an intractab... ver más
Revista: Applied Sciences

 
Iurii Vakaliuk, Silke Scheerer and Manfred Curbach    
In the case of solid slabs made from reinforced concrete that are usually subjected to bending, large areas of the structure are stressed well below their load-bearing capacity or remain stress-free. Contrary to this are shell structures, which can bridg... ver más
Revista: Applied Sciences