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Kinetically-controlled reversible solid-water mass exchange models are adopted to simulate interactions between suspended sediments and bulk water, as well as the mass exchange between bed sediments and pore water.
These mass exchange models are helpful in understating the complex physiological changes, the implications of different fluid resuscitation regimens, and the mechanistic effects of drugs.
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Dual diffusion and finite mass exchange model for adsorption kinetics in activated carbon.
For this purpose the temporal variation of concentration at several uniformly distributed points within a normalized representative particle with spherical, cylindrical or planar shape is fitted with a 2-domain linear reversible mass exchange model.
The overall ratio that was computed from the total amount of UOP measured and the amount of fluid infused after injury is assumed to reflect the urine produced by the total blood available in the circulatory system following a burn injury based on the mass exchange model [ 30].
The heat and mass exchange is modelled and the design of a suitable reaction zone is explained.
Mass exchange is modeled either explicitly or implicitly.
In the current study, we proposed a refined fluid management model based on the mass exchange and the fluid response models.
An example of implicitly modeling mass exchange is a reaction with reactants or products not modeled by the system.
When turbulent beds are represented by two-phase models, interphase mass exchange is rapid.
Therein, the interaction between mass exchange and heat exchange is modeling formulated.
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