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Three well-known engineering optimization benchmark problems of the industrial dynamic processes are demonstrated as illustration.
In Section 6 we applied the three methods to the benchmark problems of the crack growth model (1) and the biofilm model (3).
Using this dual porosity compositional model, numerical experiments are reported for the benchmark problems of the sixth comparative solution project organized by the society of petroleum engineers.
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Four examples are discussed in greater detail, among them one popular benchmark problem of the SP and DA literature each.
These elements are all validated on the benchmark problem of the flow past an impulsively started cylinder.
Numerical results for the benchmark problem of the lid-driven cavity confirm that residual reduction factors per multigrid cycle for the coupled method are superior to those of the decoupled method.
These techniques are tested with the benchmark problem of the ninth comparative solution project (CSP) organized by the society of petroleum engineers (SPE) and applied to field-scale models of both saturated and undersaturated reservoirs.
The proposed TLBO and JAYA have been applied to conduct computational experiments on 77 benchmark problems of FFSP and the makespan results obtained by these algorithms are compared with all the other eight algorithms available in the literature.
Also, the code bias was calculated with the benchmark problems of 262 LEU experiments to account for the uncertainty of MCNP code.
Carlier and Neron (2000) have applied B&B to solve 77 benchmark problems of FFSP.
They can also be used as benchmark problems for the verifications of computational/numerical methods for the analyses of 3D crack problems.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com