Thermo-mechanical finite element (FE) models predict the thermal behavior of machine tools and the associated mechanical deviations. However, one disadvantage is their high computational expense, linked to the evaluation of the large systems of differential equations. Therefore, projection-based model order reduction (MOR) methods are required in order to create efficient surrogate models. This paper presents a parametric MOR method for weakly coupled thermo-mechanical FE models of machine tools and other similar mechatronic systems. This work proposes a reduction method, Krylov Modal Subspace (KMS), and a theoretical bound of the reduction error. The developed method addresses the parametric dependency of the convective boundary conditions...
Model reduction is a new numerical technique [1, 2] that allows us to obtain an accurate low-dimensi...
International audienceWe developed an algorithm to extract reduced-order model from Finite Element m...
Designing whole machines or processes you may need both, an integrated dynamic simulation of all com...
perform model reduction directly to finite element models developed in ANSYS. The goal of the presen...
This contribution focuses on the development of Model Order Reduction (MOR) for one-way coupled stea...
Software MOR for ANSYS has been developed at IMTEK in 2003. It allows us to perform model reduction ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
Numerical simulations of the behavior of machine tools are usually based on a finite element (FE) di...
In this paper we present a methodology for applying mathematical model order reduction (MOR) to elec...
Abstract: Model order reduction of an electro-thermal package model is discussed. This model is an e...
Computational methods for reducing the complexity of Finite Element (FE) models in structural dynami...
Computational methods for reducing the complexity of Finite Element (FE) models in structural dynami...
Model reduction is a new numerical technique [1, 2] that allows us to obtain an accurate low-dimensi...
International audienceWe developed an algorithm to extract reduced-order model from Finite Element m...
Designing whole machines or processes you may need both, an integrated dynamic simulation of all com...
perform model reduction directly to finite element models developed in ANSYS. The goal of the presen...
This contribution focuses on the development of Model Order Reduction (MOR) for one-way coupled stea...
Software MOR for ANSYS has been developed at IMTEK in 2003. It allows us to perform model reduction ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
In this paper, a parametric model order reduction (pMOR) technique is proposed to find a simplified ...
Numerical simulations of the behavior of machine tools are usually based on a finite element (FE) di...
In this paper we present a methodology for applying mathematical model order reduction (MOR) to elec...
Abstract: Model order reduction of an electro-thermal package model is discussed. This model is an e...
Computational methods for reducing the complexity of Finite Element (FE) models in structural dynami...
Computational methods for reducing the complexity of Finite Element (FE) models in structural dynami...
Model reduction is a new numerical technique [1, 2] that allows us to obtain an accurate low-dimensi...
International audienceWe developed an algorithm to extract reduced-order model from Finite Element m...
Designing whole machines or processes you may need both, an integrated dynamic simulation of all com...