Results 231 to 240 of about 1,372,798 (285)
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2018
This chapter deals with the problem of modelling the behaviour of massive concrete structures. In the last decades, the developments in the field of computational mechanics were significant, so nowadays several numerical techniques are available to this goal, depending on the scale level considered but also on which phenomena/processes are taken into ...
Pesavento F. +4 more
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This chapter deals with the problem of modelling the behaviour of massive concrete structures. In the last decades, the developments in the field of computational mechanics were significant, so nowadays several numerical techniques are available to this goal, depending on the scale level considered but also on which phenomena/processes are taken into ...
Pesavento F. +4 more
openaire +2 more sources
2003
Numerical modeling of the atmosphere is challenging because of the enormous range of space and timescales involved, and because many qualitative features, such as balance and conservation, must be accurately captured. We discuss here a number of topics that have proved important historically in the development of numerical models of the atmosphere ...
openaire +1 more source
Numerical modeling of the atmosphere is challenging because of the enormous range of space and timescales involved, and because many qualitative features, such as balance and conservation, must be accurately captured. We discuss here a number of topics that have proved important historically in the development of numerical models of the atmosphere ...
openaire +1 more source
2021
Abstract Modelling and tuning of muon beamlines can be carried out using matrix techniques from optics, or via ray tracing methods. Monte Carlo methods for determining the muon stopping profile allow optimal degrader thicknesses to be computed, and pressure- cell and low-energy measurements to be planned.
openaire +1 more source
Abstract Modelling and tuning of muon beamlines can be carried out using matrix techniques from optics, or via ray tracing methods. Monte Carlo methods for determining the muon stopping profile allow optimal degrader thicknesses to be computed, and pressure- cell and low-energy measurements to be planned.
openaire +1 more source
Numerical modeling for rockbursts: A state-of-the-art review
Journal of Rock Mechanics and Geotechnical Engineering, 2021Jun Wang, Derek B Apel, Yuanyuan Pu
exaly
Pore-scale modeling of complex transport phenomena in porous media
Progress in Energy and Combustion Science, 2022Li Chen, An He, Jianlin Zhao
exaly

