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Michal Sejnoha
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2020 – today
- 2022
- [j10]Eliska Smídová, Petr Kabele, Michal Sejnoha:
Finite element simulation of single edge notched timber arch. J. Comput. Appl. Math. 400: 113676 (2022) - 2020
- [i9]Jaroslav Schmidt, Alena Zemanová, Jan Zeman, Michal Sejnoha:
Phase-field Fracture Modelling of Thin Monolithic and Laminated Glass Plates under Quasi-static Bending. CoRR abs/2010.00375 (2020)
2010 – 2019
- 2019
- [i8]Jaroslav Schmidt, Tomás Janda, Alena Zemanová, Jan Zeman, Michal Sejnoha:
Newmark algorithm for dynamic analysis with Maxwell chain model. CoRR abs/1911.03255 (2019) - 2018
- [i7]Alena Zemanová, Jan Zeman, Tomás Janda, Jaroslav Schmidt, Michal Sejnoha:
On modal analysis of laminated glass: Usability of simplified methods and enhanced effective thickness. CoRR abs/1801.01110 (2018) - 2017
- [j9]Tomás Krejcí, Jaroslav Kruis, Michal Sejnoha, Tomás Koudelka:
Hybrid parallel approach to homogenization of transport processes in masonry. Adv. Eng. Softw. 113: 25-33 (2017) - [j8]Tomás Krejcí, Jaroslav Kruis, Michal Sejnoha, Tomás Koudelka:
Numerical analysis of coupled heat and moisture transport in masonry. Comput. Math. Appl. 74(1): 229-248 (2017) - [i6]Alena Zemanová, Jan Zeman, Michal Sejnoha:
Comparison of viscoelastic finite element models for laminated glass beams. CoRR abs/1701.03636 (2017) - 2015
- [c1]Jaroslav Kruis, Tomás Krejcí, Michal Sejnoha:
Parallel Computing in Multi-scale Analysis of Coupled Heat and Moisture Transport in Masonry Structures. HPCSE 2015: 50-59 - 2014
- [i5]Jan Sykora, Michal Sejnoha, Jirí Sejnoha:
Homogenization of coupled heat and moisture transport in masonry structures including interfaces. CoRR abs/1402.3173 (2014) - [i4]Alena Zemanová, Jan Zeman, Michal Sejnoha:
Finite element model based on refined plate theories for laminated glass units. CoRR abs/1410.8674 (2014) - 2013
- [j7]Tomás Janda, Michal Sejnoha, Jirí Sejnoha:
Modeling of soil structure interaction during tunnel excavation: An engineering approach. Adv. Eng. Softw. 62: 51-60 (2013) - [j6]Michal Sejnoha, Miroslav Broucek, Eva Novotná, Zbynek Kersner, David Lehký, P. Frantík:
Fracture properties of cement and alkali activated fly ash based concrete with application to segmental tunnel lining. Adv. Eng. Softw. 62: 61-71 (2013) - [j5]Olga Spacková, Eva Novotná, Michal Sejnoha, Jirí Sejnoha:
Probabilistic models for tunnel construction risk assessment. Adv. Eng. Softw. 62: 72-84 (2013) - [j4]Jan Sykora, Michal Sejnoha, Jirí Sejnoha:
Homogenization of coupled heat and moisture transport in masonry structures including interfaces. Appl. Math. Comput. 219(13): 7275-7285 (2013) - [i3]Alena Zemanová, Jan Zeman, Michal Sejnoha:
Numerical model of elastic laminated glass beams under finite strain. CoRR abs/1303.6314 (2013) - 2012
- [j3]Jan Sykora, Tomás Krejcí, Jaroslav Kruis, Michal Sejnoha:
Computational homogenization of non-stationary transport processes in masonry structures. J. Comput. Appl. Math. 236(18): 4745-4755 (2012) - [i2]Alena Zemanová, Jan Zeman, Michal Sejnoha:
Simple Numerical Model of Laminated Glass Beams. CoRR abs/1201.3479 (2012) - 2011
- [j2]Jan Stransky, Jan Vorel, Jan Zeman, Michal Sejnoha:
Mori-Tanaka Based Estimates of Effective Thermal Conductivity of Various Engineering Materials. Micromachines 2(2): 129-149 (2011) - [j1]Jan Stransky, Jan Vorel, Jan Zeman, Michal Sejnoha:
Correction: Sejnoha, M. et al. Mori-Tanaka Based Estimates of Effective Thermal Conductivity of Various Engineering Materials. Micromachines 2011, 2, 129-149. Micromachines 2(3): 344 (2011) - [i1]Jan Sykora, Tomás Krejcí, Jaroslav Kruis, Michal Sejnoha:
Computational homogenization of non-stationary transport processes in masonry structures. CoRR abs/1110.2055 (2011)
Coauthor Index
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