Ing.

Filip Hokeš

Ph.D.

STM – Assistant professor

+420 541 147 375
Filip.Hokes@vut.cz

Publications

  • 2021

    NĚMEC, I.; TRCALA, M.; HOKEŠ, F.; VANĚČKOVÁ, A. Dynamic analysis of viscous material models. In Programs and Algorithms of Numerical Mathematics 20. Prague: Institute of Mathematics CAS, 2021. s. 139-148. ISBN: 978-80-85823-71-4.
    Detail Link

  • 2020

    HOKEŠ, F.; KALA, J.; NĚMEC, I. Video analysis of response of reinforced concrete beam to impact loading during drop test. In 4th International Scientific Conference Structural and Physical Aspects of Construction Engineering (SPACE 2019). MATEC Web of Conferences. CEDEX A: EDP Sciences, 2020. s. 1-6. ISSN: 2261-236X.
    Detail Full text in Digital Libraly Link

  • 2019

    HOKEŠ, F.; KRÁL, P.; TRCALA, M. Modelling uniaxial compression of concrete specimen with utilization of nonlinear material models inside ANSYS and RFEM. In AIP Conference Proceedings. AIP Conference Proceedings. 2019. s. 1-4. ISBN: 978-0-7354-1854-7. ISSN: 1551-7616.
    Detail

    KRÁL, P.; HRADIL, P.; KALA, J.; KALA, Z.; HOKEŠ, F. Using the inverse identification of parameters of a nonlinear concrete material model for analysis of RC structural element. In AIP Conference Proceedings. AIP Conference Proceedings. 2019. s. 1-4. ISSN: 1551-7616.
    Detail

    HOKEŠ, F.; KALA, J.; TRCALA, M.; NĚMEC, I. Implementation of the viscous Drucker-Prager and viscous Lee-Fenves nonlinear material models and finite element benchmarks. In Advances and Trends in Engineering Sciences and Technologies III. 2019. s. 105-111. ISBN: 9780367075095.
    Detail

  • 2018

    HUŠEK, M.; KALA, J.; KRÁL, P.; HOKEŠ, F. Using Noise to Generate the Material Structure of Concrete. In AIP Conference Proceedings. AIP Conference Proceedings. 2018. s. 1-4. ISBN: 978-0-7354-1690-1. ISSN: 1551-7616.
    Detail

    ŠMAK, M.; KALA, J.; HOKEŠ, F. Pinned joints - their design and real behaviour. Proceedings of the Institution of Civil Engineers: Engineering and Computational Mechanics, 2018, roč. 170, č. 4, s. 154-166. ISSN: 1755-0777.
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  • 2017

    HOKEŠ, F.; HUŠEK, M.; KALA, J.; KRÁL, P. Predicting the Load-Carrying Capacity of Reinforced Concrete Structural Element. WSEAS Transactions on Applied and Theoretical Mechanics, 2017, roč. 2017, č. 12, s. 1-10. ISSN: 2224-3429.
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    HOKEŠ, F.; KALA, J. Selecting the objective function during the inverse identification of the parameters of a material model of concrete. Frattura ed Integrita Strutturale, 2017, roč. 11, č. 39, s. 7-16. ISSN: 1971-8993.
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    HOKEŠ, F.; HUŠEK, M.; KRÁL, P. Nonlinear Numerical Study of Pin Joint at Static and Cyclic Loading. Juniorstav 2017. Brno, Česká republika: 2017. s. 1-8. ISBN: 978-80-214-5462-0.
    Detail

    HOKEŠ, F.; KRÁL, P.; HUŠEK, M.; KALA, J. Study on Identification of Material Model Parameters from Compact Tension Test on Concrete Specimens. In IOP Conf. Series: Materials Science and Engineering of World Multidisciplinary Civil Engineering - Architecture - Urban Planning Symposium 2017. IOP Conference Series: Materials Science and Engineering. 2017. s. 1-10. ISSN: 1757-8981.
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    HUŠEK, M.; KALA, J.; KRÁL, P.; HOKEŠ, F. Steel Fibre Reinforced Concrete Simulation with the SPH Method. In IOP Conf. Series: Materials Science and Engineering of World Multidisciplinary Civil Engineering - Architecture - Urban Planning Symposium 201. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2017. s. 1-10. ISSN: 1757-899X.
    Detail Full text in Digital Libraly Link

    HUŠEK, M.; KALA, J.; HOKEŠ, F.; KRÁL, P. Conversion of Fractal Fields into Heterogeneities inside SPH Simulations. In IOP Conf. Series: Materials Science and Engineering of World Multidisciplinary Civil Engineering - Architecture - Urban Planning Symposium 2017. IOP Conference Series: Materials Science and Engineering. 2017. s. 1-10. ISSN: 1757-8981.
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    KRÁL, P.; HOKEŠ, F.; HUŠEK, M.; KALA, J.; HRADIL, P. Optimization-Based Inverse Identification of the Parameters of a Concrete Cap Material Model. In World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium - WMCAUS. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 2017. s. 1-10. ISSN: 1757-899X.
    Detail Full text in Digital Libraly Link

    KRÁL, P.; HRADIL, P.; HUŠEK, M.; HOKEŠ, F. Comparison of Responses of Concrete Damage Material Models with Respect to Optimization-Based Material Parameter Identification. In AIP Conference Proceedings. AIP Conference Proceedings. 2017. s. 1-4. ISBN: 978-0-7354-1538-6. ISSN: 1551-7616.
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    HUŠEK, M.; HOKEŠ, F.; KALA, J.; KRÁL, P. Inclusion of Randomness into SPH Simulations. WSEAS TRANSACTION on HEAT and MASS TRANSFER, 2017, roč. 2017, č. 1, s. 1-10. ISSN: 2224-3461.
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    HOKEŠ, F.; KRÁL, P.; KRŇÁVEK, O.; HUŠEK, M. Improved Sensitivity Analysis in the Inverse Identification of the Parameters of a Nonlinear Material Model. In Modern Building Materials, Structures and Techniques. Procedia Engineering. 2017. s. 1-8. ISSN: 1877-7058.
    Detail

    HUŠEK, M.; HOKEŠ, F.; KALA, J.; KRÁL, P. Inclusion of Randomness into SPH Simulations. WSEAS Transaction on Heat and Mass Transfer, 2017, roč. 2017, č. 12, s. 1-10. ISSN: 1790-5044.
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    KRÁL, P.; HRADIL, P.; KALA, J.; HOKEŠ, F.; HUŠEK, M. Identification of the Parameters of a Concrete Damage Material Model. In Modern Building Materials, Structures and Techniques, MBMST 2016. Procedia Engineering. 2017. s. 578-585. ISSN: 1877-7058.
    Detail

  • 2016

    HUŠEK, M.; KALA, J.; HOKEŠ, F.; KRÁL, P. How to Handle Irregular Distribution of SPH Particles in Dynamic Fracture Analysis. International Journal of Theoretical and Applied Mechanics, 2016, roč. 2016, č. 1, s. 212-217. ISSN: 2367-8984.
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    HUŠEK, M.; KALA, J.; KRÁL, P.; HOKEŠ, F. Effect of the Support Domain Size in SPH Fracture Simulations. International Journal of Mechanics, 2016, roč. 10, č. 1, s. 396-402. ISSN: 1998-4448.
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    HOKEŠ, F.; HUŠEK, M.; KRÁL, P.; KALA, J. Numerical Simulation of Reinforced Concrete Beam with Utilization of Elasto- plastic Material Model of Concrete. WSEAS Transactions on Applied and Theoretical Mechanics, 2016, roč. 2016, č. 11, s. 136-141. ISSN: 2224-3429.
    Detail

    HUŠEK, M.; KALA, J.; HOKEŠ, F.; KRÁL, P. Influence of SPH Regularity and Parameters in Dynamic Fracture Phenomena. In World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium, WMCAUS 2016. Procedia Engineering. Praha, Česká republika: Elsevier, 2016. s. 489-496. ISSN: 1877-7058.
    Detail Full text in Digital Libraly Link

    HOKEŠ, F.; KALA, J.; KRŇÁVEK, O. Nonlinear numerical simulation of a fracture test with use of optimization for identification of material parameters. International Journal of Mechanics, 2016, roč. 2016, č. 10, s. 159-166. ISSN: 1998-4448.
    Detail

    HUŠEK, M.; HOKEŠ, F.; KALA, J.; KRÁL, P. A Simple Solution for Randomized Failure Modeling with the SPH Method. International Journal of Theoretical and Applied Mechanics, 2016, roč. 2016, č. 1, s. 253-258. ISSN: 2367-8992.
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    HUŠEK, M.; KALA, J.; KRÁL, P.; HOKEŠ, F. Concept and Numerical Simulations of a Reactive Anti-Fragment Armour Layer. In 14th International Conference of Numerical Analysis and Applied Mathematics. AIP conference proceedings. Rhodos, Řecko: 2016. s. 1-4. ISSN: 0094-243X.
    Detail

    HOKEŠ, F.; KALA, J. VOLBA ÚČELOVÉ FUNKCE PŘI INVERZNÍ IDENTIFIKACI, PARAMETRŮ MATERIÁLOVÉHO MODELU BETONU. In Modelování v mechanice 2016. Ostrava, Česká republika: 2016. s. 1-7. ISBN: 978-80-248-3917- 2.
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    HOKEŠ, F.; KALA, J.; HUŠEK, M.; KRÁL, P. Parameter Identification for a Multivariable Nonlinear Constitutive Model inside ANSYS Workbench. In World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium, WMCAUS 2016. Procedia Engineering. Praha, Česká republika: Elsevier, 2016. s. 892-897. ISSN: 1877-7058.
    Detail Full text in Digital Libraly Link

    HOKEŠ, F. PREDIKCE ÚNOSNOSTI ŽELEZOBETONOVÉHO KONSTRUKČNÍHO PRVKU. In Juniorstav 2016. Brno, Česká republika: 2016. s. 1-8. ISBN: 978-80-214-5311- 1.
    Detail

  • 2015

    HOKEŠ, F.; KALA, J.; KRŇÁVEK, O. Optimization as a Tool for the Inverse Identification of Parameters of Nonlinear Material Models. In Proceedings of the 9th International Conference on Continuum Mechanics (CM '15). Roma. Italy: 2015. s. 50-55. ISBN: 978-1-61804-346- 7.
    Detail

    HOKEŠ, F. Modelování předpětí nesoudržnou předpínací výztuží ve výpočtovém systému ANSYS. In Juniorstav 2015. Brno, Česká republika: 2015. s. 1-9. ISBN: 978-80-214-5091- 2.
    Detail

    HOKEŠ, F. Selected Aspects Of Modelling Of Non- Linear Behaviour Of Concrete During Tensile Test Using Multiplas Library. Transaction of the VŠB-Technical university of Ostrava, Mechanical series, 2015, roč. 15, č. 2, s. 1-10. ISSN: 1210-0471.
    Detail

    KRŇÁVEK, O.; HOKEŠ, F.; HRUBÝ, P.; NEVAŘIL, A. Analýza vlivu postupné výstavby mostu na stav napjatosti v konstrukčních detailech. In Modelování v mechanice 2015. Ostrava, Česká republika: 2015. s. 1-11. ISBN: 978-80-248-3756- 7.
    Detail

    HOKEŠ, F. Vybrané aspekty modelování nelineárního chování betonu s pomocí knihovny MULTIPLAS. In Modelování v mechanice 2015. Ostrava, Česká republika: 2015. s. 1-10. ISBN: 978-80-248-3756- 7.
    Detail

    HOKEŠ, F. Comparison of suitability of selected material models of concrete for inverse identification of parameters with aid of optimization algorithms. Computational Mechanics 2015. Špičák: 2015. s. 1 (1 s.).
    Detail

    HOKEŠ, F.; NEVAŘIL, A.; TOTKOVÁ, L.; KRŇÁVEK, O. Numerická simulace procesu dotvarování a smršťování betonu na submodelu profileu ocelobetonového spřaženého mostu. In New Trends in Statics and Dynamics of Buildings. Bratislava, Slovensko: 2015. s. 1-8. ISBN: 978-80-227-4463- 8.
    Detail

    HRUBÝ, P.; HOKEŠ, F.; KRŇÁVEK, O.; NEVAŘIL, A. Numerical analysis of the process of repairing defects in lamellar flange and its influence on the local stress state. Computational Mechanics 2015. Špičák: 2015. s. 41-42. ISBN: 978-80-261-0568- 8.
    Detail

    HOKEŠ, F. Vliv redukce počtu návrhových parametrů při inverzní identifikaci parametrů nelineárních materiálových modelů s pomocí optimalizačních algoritmů. In Proceedings of 13th International Conference of New Trends in Statics and Dynamics of Buildings. Bratislava, Slovenská republika: 2015. s. 1-6. ISBN: 978-80-227-4463- 8.
    Detail

    HOKEŠ, F. The Current State-of-the-Art in the Field of Material Models of Concrete and Other Cementitious Composites. In Materials, Mechanics and Information Engineering. Applied Mechanics and Materials. 2015. s. 134-139. ISBN: 978-3-03835-385- 0. ISSN: 1662-7482.
    Detail

    KALA, J.; HOKEŠ, F. The Idealization of Boundary Conditions in Numerical Simulations of Prestressed Pedestrian Bridges and Comparing with Experimantal Measurments. In Proc of 16th European Bridge Conference. Edinburgh, Scotland: M C Forde, 2015. s. 1-8. ISBN: 0-947644-78- 4.
    Detail

  • 2014

    HOKEŠ, F. Different approaches to numerical simulations of prestressed concrete structural elements. In Applied Research in Materials and Mechanics Engineering. Switzerland: 2014. s. 148-153. ISBN: 978-1-138-02681-0.
    Detail