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The peritonitis model was fluid resuscitated throughout the study.
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Kapur [15] reported that Casson fluid model and Herschel-Bulkley fluid model are the fluid models with nonzero yield stress and they are more suitable for the studies of the blood flow through narrow arteries.
The physical models, which are fluid and easily malleable, allow people to understand that their physical environment can be transformed, and that their input can create change.
The micromechanical model was developed using fluid-structure interaction (FSI) formulation.
A black-oil (BO) PVT model is a fluid characterization model that represents multi-component reservoir hydrocarbons in only two pseudo-components, "surface gas" and "stock tank oil" (Walsh and Lake 2003; Whitson and Brule 2000).
Second, since this model is intrinsically fluid, it predicted that the distribution of most molecules in the lateral range would be essentially random, but it also suggested that specific clusters (i.e. microdomains) may form [ 1, 244].
Newtonian fluid model was used and the flow was assumed to be incompressible.
In this study, a numerical DCMD model was developed using computational fluid dynamics.
A boundary layer model was assumed for the fluid mechanical behaviour of the gaseous surroundings.
This tuned fluid model was then imported to the GEM module for conducting simulations.
This fluid model was then imported into the CMG compositional simulator, GEM.
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