NASA NTRS · 20010037617
Improved Equivalent Linearization Implementations Using Nonlinear Stiffness Evaluation
Abstract
This report documents two new implementations of equivalent linearization for solving geometrically nonlinear random vibration problems of complicated structures. The implementations are given the acronym ELSTEP, for "Equivalent Linearization using a STiffness Evaluation Procedure." Both implementations of ELSTEP are fundamentally the same in that they use a novel nonlinear stiffness evaluation procedure to numerically compute otherwise inaccessible nonlinear stiffness terms from commercial finite element programs. The commercial finite element program MSC/NASTRAN (NASTRAN) was chosen as the core of ELSTEP. The FORTRAN implementation calculates the nonlinear stiffness terms and performs the equivalent linearization analysis outside of NASTRAN. The Direct Matrix Abstraction Program (DMAP) implementation performs these operations within NASTRAN. Both provide nearly identical results. Within each implementation, two error minimization approaches for the equivalent linearization procedure are available - force and strain energy error minimization. Sample results for a simply supported rectangular plate are included to illustrate the analysis procedure.
Keep this discovery
Explore connections, maps & timelines
Rizzi, Stephen A., Muravyov, Alexander A.. 2001-03-01. Improved Equivalent Linearization Implementations Using Nonlinear Stiffness Evaluation. https://ntrs.nasa.gov/citations/20010037617
Cite the original work for its findings. Save a collection to share your selection of sources.