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Title: | High Order Block Implicit Multi-step (HOBIM) Method For the Solution of Stiff Ordinary Differential Equation |
Authors: | Chollom, J.P. Kumleng, G.M. Longwap, S. |
Keywords: | block linear integrators multi step collocation A-stability stiff systems chemical reactions |
Issue Date: | 2014 |
Publisher: | International Journal of Pure and Applied Mathematics |
Series/Report no.: | Vol. 96;No. 4; Pp 483-505 |
Abstract: | The search for higher order A-stable linear multi-step methods
has been the interest of many numerical analyst and has been realized through
either higher derivatives of the solution or by inserting additional off step
points,supper future points and the likes.These methods are suitable for the
solution of stiff differential equations which exhibit characteristics that place
severe restriction on the choice of step size. It becomes necessary that only
methods with large regions of absolute stability remain suitable for such equa-
tions. In this paper, high order block implicit multi-step methods of the hybrid
form up to order twelve have been constructed using the multi-step collocation
approach by inserting one or more off step points in the multi-step method.
The accuracy and stability properties of the new methods are investigated and
are shown to yield A- stable methods, a property desirable of methods suitable
for the solution of stiff ODEs. The new High Order Block Implicit Multistep
methods used as block integrators are tested on stiff differential systems and
the results reveal that the new methods are efficient and compete favorably
with the state of the art Matlab ode23 code. |
URI: | http://hdl.handle.net/123456789/848 |
ISSN: | 1314-3395 |
Appears in Collections: | Mathematics
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