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Bahrami et al. (2004) presented a developed method suitable for calculation of breakthrough time and water cut at each specific oil production rate.
A model proposed for the calculation of breakthrough curves (BTCs) in the adsorption of organic solutes from aqueous solution on activated carbons takes into account external diffusion as well as internal diffusion and adsorption in two discrete pore zones.
In further studies, adsorbers should be operated ≫20,000 BV for exact calculation of breakthrough curves, and the following parameters should be recorded: selected MPs; DOC0; UVA254; EBCT; product name, manufacturing method and raw material of GAC; suspended solids (TSS); backwash interval; backwash program and pressure drop within adsorber.
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Then the calculation of steam breakthrough volume and blocking volume relies on the tapering distribution of the steam breakthrough channel.
Therefore, the iterative method should be used in the calculation of water breakthrough time.
An artificial neural network (ANN) approach was used to develop a new predictive model for the calculation of hydrocarbons breakthrough curves in separation of linear and branched paraffins by adsorption process.
The sensitivity analysis includes calculations of thermal breakthrough and the maximum flow rate that can be achieved through the system.
For the calculation of kinetic processes or of breakthrough curves an isotherm is proposed, combining the Redlich-Peterson equation with elements of the Dubinin-Radushkevich analysis.
According to the above description of steam breakthrough, the calculation of blocking volume is divided into near-wellbore part and interwell part.
Best-fit calculations of the experimental breakthrough curves were obtained by assigning apertures within the range of one to ten times the square root of transmissivity and a dispersion coefficient equal to one-tenth of the migration length.
Entry pressure calculations using physical and hydrogeologic parameters provided an excellent prediction of breakthrough of DNAPL into the capillary barrier.
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