NASA NTRS · 19860059033
Locally bound constrained Newton-Raphson solution algorithms
Abstract
This paper develops strategies which enable the automatic adjustment of the constraint surfaces recently used to extend the range and numerical stability/efficiency of nonlinear finite-element equation solvers. In addition to handling kinematic and material induced nonlinearity, both pre- and postbuckling behavior can be treated. The scheme developed employs localized bounds on various hierarchical partitions of the field variables. These are used to resize, shape, and orient the global constraint surface, thereby enabling essentially automatic load/deflection incrementation. Due to the generality of the approach taken, it can be implemented in conjunction with constraints of arbitrary functional type. To benchmark the method, several numerical experiments are presented. These include problems involving kinematic and material nonlinearity, as well as, pre- and postbuckling characteristics.
Keep this discovery
Explore connections, maps & timelines
Padovan, J., Moscarello, R.. 1986-01-01. Locally bound constrained Newton-Raphson solution algorithms. https://ntrs.nasa.gov/citations/19860059033
Cite the original work for its findings. Save a collection to share your selection of sources.