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Moreover, the numerical model allows us to study the low-frequency motions inside the surf zone.
The numerical model allows a non-hysteretic, a partially hysteretic and a fully hysteretic solution.
An inverse method based on a numerical model allows us to simultaneously identify the unknown thermal properties.
The numerical model allows for the calculation and analysis of the flow parameters, including the pressure flow rate characteristics of the pump.
The numerical model allows analysis of aspects such as geometry, type of fluid (pure substances and mixtures), critical or non-critical flow conditions, metastable regions, and transient aspects.
To resolve special features of the ocean circulation, such as the Equatorial Undercurrent, the numerical model allows for a variable spacing in either the zonal or meridional direction.
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Numerical model allowed the development of a parametrical study.
The numerical model allowed the simulation of damage initiation and growth.
Use of the validated numerical model allowed detailed analysis of the processes of wave transmission and demonstrates the important synergy that can exist between experimental and modeling studies.
Guerriero et al. (2013) proposed an analytical model that could pave the way to a full numerical model allowing one to calculate the pore pressure within fractures, at several scales of observation, in a reasonable time.
We developed a numerical model allowing to access the effectiveness of measures implemented to counteract the formation of rings in a rotary cement kiln in use by Almatis B.V. in Rotterdam.
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