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(P = 1 bar) and the isokinetic temperature coupling algorithm (T = 310 K, the same temperature of the experimental cleavage assays).
A stacked, iterative coupling algorithm was used to obtain coupled solutions.
An improved non-isotropic momentum mapping method for the Eulerian/Lagrangian coupling algorithm is proposed.
The IE FE coupling algorithm is also successfully extended to solve multiple crack problems.
The fully coupled mechanical and diffusion processes are solved based on a staggered coupling algorithm.
We provide details on these extensions including the transient coupling algorithm, open boundary forcing, and multi-instance sampling.
Several numerical tests designed to measure the rate of convergence and accuracy of the coupling algorithm are presented as well.
This includes the used software packages and the combustion modeling in ANSYS FLUENT as well as the coupling algorithm developed.
Interaction between the entrapped air and cell walls under compression is analyzed using fluid-structure coupling algorithm.
Its coupling algorithm has to maintain a stable and efficient numerical time integration even at high noise strength.
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Constant temperature of 300 K was maintained using the Berendsen weak-coupling algorithm with a time constant of 1.0 ps.
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