Lukasz Madej
Orcid: 0000-0003-1032-6963
According to our database1,
Lukasz Madej
authored at least 13 papers
between 2010 and 2024.
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Bibliography
2024
Analysis of the influence of a pseudo-random number generator type on the kinetics of the cellular automata recrystallization model.
J. Comput. Sci., 2024
2021
The role of the cellular automata cell size and time step length in the microstructure evolution model - The static recrystallization case study.
J. Comput. Sci., 2021
2018
Development and evaluation of data transfer protocols in the fully coupled random cellular automata finite element model of dynamic recrystallization.
J. Comput. Sci., 2018
2017
Equilibrium Method for Origination Destination Matrix Estimation Exploited to Urban Traffic Simulation Calibration.
Proceedings of the Smart Solutions in Today's Transport, 2017
2016
Fracture modeling in dual-phase steel grades based on the random cellular automata finite element approach.
Simul., 2016
Time and length scale issues in numerical modelling of dynamic recrystallization based on the multi space cellular automata method.
J. Comput. Sci., 2016
2014
Numerical Modelling of Fracture Based on Coupled Cellular Automata Finite Element Approach.
Proceedings of the Cellular Automata, 2014
Cellular Automata Finite Element Approach for Modelling Microstructure Evolution under Thermo-Mechanical Processing Conditions.
Proceedings of the Cellular Automata, 2014
Proceedings of the eScience on Distributed Computing Infrastructure, 2014
2013
Two-dimensional HP-adaptive Algorithm for Continuous Approximations of Material Data Using Space Projection.
Comput. Sci., 2013
Employing an Adaptive Projection-Based Interpolation to Prepare Discontinuous 3D Material Data for Finite Element Analysis.
Proceedings of the International Conference on Computational Science, 2013
2010
Numerical Simulations of the Microscale Material Phenomena Based on Cellular Automata Framework and Workflow Idea.
Proceedings of the New World Situation: New Directions in Concurrent Engineering, 2010
Numerical Simulations of Hypoeutectoid Steels under Loading Conditions, Based on Image Processing and Digital Material Representation.
Proceedings of the Computational Modeling of Objects Represented in Images, 2010