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  • Although often assumed in the micromechanical modeling of materials, the true periodic microstructures can be associated with only a limited number of carefully fabricated material systems. In practice, a majority of construction materials currently used for the design of engineering structures can be classified as random, either natural or artificially made, composites with complex microstructures over a wide range of length scales from nanometers to meters. To span such large size differences the general scope of hierarchical modeling has been promoted over the last two decades as the main driving force for structural design.
  • Although often assumed in the micromechanical modeling of materials, the true periodic microstructures can be associated with only a limited number of carefully fabricated material systems. In practice, a majority of construction materials currently used for the design of engineering structures can be classified as random, either natural or artificially made, composites with complex microstructures over a wide range of length scales from nanometers to meters. To span such large size differences the general scope of hierarchical modeling has been promoted over the last two decades as the main driving force for structural design. (en)
Title
  • Virtual Experiments and a Statistically Equivalent Representative Volume Element for Macroscopic Constitutive Laws
  • Virtual Experiments and a Statistically Equivalent Representative Volume Element for Macroscopic Constitutive Laws (en)
skos:prefLabel
  • Virtual Experiments and a Statistically Equivalent Representative Volume Element for Macroscopic Constitutive Laws
  • Virtual Experiments and a Statistically Equivalent Representative Volume Element for Macroscopic Constitutive Laws (en)
skos:notation
  • RIV/68407700:21110/11:00182774!RIV12-MSM-21110___
http://linked.open...avai/riv/aktivita
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  • P(1M0579), P(GAP105/11/0224)
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  • 238490
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  • RIV/68407700:21110/11:00182774
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  • random composites; statistically equivalent periodic unit cell; homogenization; multiscale modeling; masonry; concrete; mastic asphalt. (en)
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  • [860CF5A3F681]
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  • Stirling
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  • Computational Science, Engineering and Technology Series č. sv. 28
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  • Civil and Structural Engineering Computational Technology
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  • Vorel, Jan
  • Zeman, Jan
  • Šejnoha, Michal
  • Valenta, Richard
number of pages
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  • 10.4203/csets.28.5
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  • Saxe-Coburg Publications
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  • 978-1-874672-55-5
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  • 21110
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