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To calibrate the numerical model, the experiments of cylindrical sandwich shells were modeled.
The resulting numerical model, the MARUN model, is verified by comparison to published numerical results.
In the numerical model, the net was simulated as a porous medium obeying Forchheimer's law.
In the numerical model, the dynamics of different fluids is formulated based on a unified framework for general continuum.
Upon verifying the numerical model, the fluid flow and heat transfer patterns were characterized for the selected water heater.
In this numerical model, the freeze pipe and the surrounding ground are considered in a coupled way.
In the numerical model, the fluid in the tank is assumed to be homogeneous saturated liquid-vapor.
By reducing the number of equations involved in the numerical model, the computational efficiency is significantly increased.
Care should be taken to properly incorporate within a numerical model the mixing processes occurring inside the electrodes.
In this numerical model, the tornado wind field is obtained from previously conducted and validated computation fluid dynamics simulations.
By calibrating the numerical model, the through-thickness residual stresses were analysed for different unsymmetric cross-ply layup conditions.
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