The relation between the iterative algorithms based on the computational singular perturbation (CSP) and the invariance equation (IE) methods is examined. The success of the two methods is based on the appearance of fast and slow time scales in the dynamics of stiff systems. Both methods can identify the low-dimensional surface in the phase space (slow invariant manifold, SIM), where the state vector is attracted under the action of fast dynamics. It is shown that this equivalence of the two methods can be expressed by simple algebraic relations. CSP can also construct the simplified non-stiff system that models the slow dynamics of the state vector on the SIM. An extended version of IE is presented which can also perform this task. This ne...
It is shown that appropriate linear multi-step methods (LMMs) applied to singularly perturbed system...
The concept of the slow invariant manifold is recognized as the central idea underpinning a transiti...
University of Minnesota Master of Science thesis. November 2009. Major: Mechanical Engineering. Advi...
In systems of stiff Ordinary Differential Equations (ODEs) both fast and slow time scales are encoun...
Abstract. The computational singular perturbation (CSP) method of Lam and Goussis is an iterative me...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twen...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twenty-Second Sy...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twenty-Second Sy...
International audienceSlow–fast dynamical systems, i.e. singularly or nonsingularly perturbed dynami...
This paper presents a novel tabulation strategy for the adaptive numerical integration of chemical k...
We present a tabulation strategy for the numerical integration of chemical reacting flow processes o...
In this short note, we discuss the basic approach to computational modeling of dynamical systems. If...
In this short note, we discuss the basic approach to computational modeling of dynamical systems. If...
65 σ.In spite of the rapid and significant increase in computing power of current processors and par...
Abstract. In this short note, we discuss the basic approach to compu-tational modeling of dynamical ...
It is shown that appropriate linear multi-step methods (LMMs) applied to singularly perturbed system...
The concept of the slow invariant manifold is recognized as the central idea underpinning a transiti...
University of Minnesota Master of Science thesis. November 2009. Major: Mechanical Engineering. Advi...
In systems of stiff Ordinary Differential Equations (ODEs) both fast and slow time scales are encoun...
Abstract. The computational singular perturbation (CSP) method of Lam and Goussis is an iterative me...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twen...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twenty-Second Sy...
The Computational Singular Perturbation (CSP) method, developed by Lam and Goussis [Twenty-Second Sy...
International audienceSlow–fast dynamical systems, i.e. singularly or nonsingularly perturbed dynami...
This paper presents a novel tabulation strategy for the adaptive numerical integration of chemical k...
We present a tabulation strategy for the numerical integration of chemical reacting flow processes o...
In this short note, we discuss the basic approach to computational modeling of dynamical systems. If...
In this short note, we discuss the basic approach to computational modeling of dynamical systems. If...
65 σ.In spite of the rapid and significant increase in computing power of current processors and par...
Abstract. In this short note, we discuss the basic approach to compu-tational modeling of dynamical ...
It is shown that appropriate linear multi-step methods (LMMs) applied to singularly perturbed system...
The concept of the slow invariant manifold is recognized as the central idea underpinning a transiti...
University of Minnesota Master of Science thesis. November 2009. Major: Mechanical Engineering. Advi...