Computational methods for nonlinear dynamical systems theory and applications in aerospace engineering / Xuechuan Wang, Xiaokui Yue, Honghua Dai, Haoyang Feng, Satya N. Atluri.

Author/creator Wang, Xuechuan
Format Electronic
Publication InfoAmsterdam, Netherlands ; Cambridge, MA, United States : Elsevier, [2023]
Descriptionx, 230 pages : illustrations (some color) ; 24 cm
Supplemental ContentFull text available from Elsevier ScienceDirect eBook - Engineering 2023
Subjects

Other author/creatorYue, Xiaokui.
Other author/creatorDai, Honghua.
Other author/creatorFeng, Haoyang.
Other author/creatorAtluri, Satya N. https://isni.org/isni/0000000116884574.
Abstract "Computational Methods for Nonlinear Dynamical Systems proposes novel ideas and develops highly efficient and accurate methods for solving nonlinear dynamical systems, drawing inspiration from the weighted residual method and the asymptomatic method. The book also introduces global estimation methods and local computational methods for nonlinear dynamical systems. Starting from the classic asymptomatic, finite difference and weighted residual methods, typical methods for solving nonlinear dynamical systems are considered. All proposed are new high-performance methods, such as time-domain collocation and local variational iteration. These proposed methods can be used both for real-time simulation and for the analysis of nonlinear dynamics in aerospace engineering. This book summarizes and develops computational methods for strongly nonlinear dynamical systems and considers the practical application of the methods within aerospace engineering, making it an essential resource for those working in this area."-- Page 4 of cover.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Issued in other formebook version : 9780323991148
Genre/formElectronic books.
LCCN 2023277883
ISBN9780323991131 (pbk.) :
ISBN0323991130

Availability

Library Location Call Number Status Item Actions
Electronic Resources Access Content Online ✔ Available