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Chris J. Pearce
Person information
- affiliation: University of Glasgow, Computational Engineering Centre, UK
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2020 – today
- 2022
- [j3]David N. De Klerk, Thomas Shire, Zhiwei Gao, Andrew T. McBride, Christopher J. Pearce, Paul Steinmann:
A variational integrator for the Discrete Element Method. J. Comput. Phys. 462: 111253 (2022) - 2021
- [i8]Mebratu Wakeni, Ankush Aggarwal, Lukasz Kaczmarczyk, Andrew McBride, Ignatios Athanasiadis, Chris J. Pearce, Paul Steinmann:
A p-adaptive, implicit-explicit mixed finite element method for reaction-diffusion problems. CoRR abs/2101.00681 (2021) - [i7]David N. De Klerk, Thomas Shire, Zhiwei Gao, Andrew T. McBride, Christopher J. Pearce, Paul Steinmann:
A Variational Integrator for the Discrete Element Method. CoRR abs/2103.01757 (2021) - 2020
- [j2]Lukasz Kaczmarczyk, Zahur Ullah, Karol Lewandowski, Xuan Meng, Xiao-Yi Zhou, Ignatios Athanasiadis, Hoang Nguyen, Christophe-Alexandre Chalons-Mouriesse, Euan Richardson, Euan Miur, Andrei G. Shvarts, Mebratu Wakeni, Chris J. Pearce:
MoFEM: An open source, parallel finite element library. J. Open Source Softw. 5(45): 1441 (2020) - [i6]Karol Lewandowski, Lukasz Kaczmarczyk, Ignatios Athanasiadis, John F. Marshall, Chris J. Pearce:
Numerical investigation into fracture resistance of bone following adaptation. CoRR abs/2001.00647 (2020) - [i5]Lukasz Kaczmarczyk, Hoang Nguyen, Zahur Ullah, Mebratu Wakeni, Chris J. Pearce:
Solid shell prism elements based on hierarchical, heterogeneous, and anisotropic shape functions. CoRR abs/2010.08799 (2020)
2010 – 2019
- 2016
- [i4]Lukasz Kaczmarczyk, Zahur Ullah, Chris J. Pearce:
Energy consistent framework for continuously evolving 3D crack propagation. CoRR abs/1610.00004 (2016) - [i3]Zahur Ullah, Lukasz Kaczmarczyk, Sotirios Grammatikos, Mark Evernden, Chris J. Pearce:
Multi-scale computational homogenisation to predict the long-term durability of composite structures. CoRR abs/1610.03484 (2016) - [i2]Zahur Ullah, Lukasz Kaczmarczyk, Chris J. Pearce:
Three-dimensional nonlinear micro/meso-mechanical response of the fibre-reinforced polymer composites. CoRR abs/1610.04610 (2016) - 2014
- [j1]Alan Kelly, Lukasz Kaczmarczyk, Chris J. Pearce:
Mesh improvement methodology for 3D volumes with non-planar surfaces. Eng. Comput. 30(2): 201-210 (2014) - 2012
- [c1]Alan Kelly, Lukasz Kaczmarczyk, Chris J. Pearce:
Mesh Improvement Methodology for 3D Volumes with Non-planar Surfaces. IMR 2012: 55-69 - 2011
- [i1]Jan Novák, Lukasz Kaczmarczyk, P. Grassl, Jan Zeman, Chris J. Pearce:
A micromechanics-enhanced finite element formulation for modelling heterogeneous materials. CoRR abs/1103.5633 (2011)
Coauthor Index
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