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In the present work, a one dimensional model was modified to fit circular hot channel.
A three dimensional model was used to representing key parts of a laboratory cyclone reactor.
A zero dimensional model was used to fit the data and extract a rate constant for the hydrogenation reaction.
A two dimensional model was formulated for the study of the momentum and thermal behavior of atomized droplets of γ-TiAl.
A novel liquid liquid cyclone reactor (LLCR) was designed to enhance mixing and accelerate separation between the reaction products and catalyst during isobutane alkylation catalyzed by ionic liquid, and a three dimensional model was used to simulate the process.
Due to memory limitations three dimensional model was not constructed.
Similar(51)
A three-dimensional model was constructed for simulating the UAAFM process.
The three-dimensional model was used to investigate the discharging characteristics of the LTES system.
A three-dimensional model was developed based on the available geological, geotechnical, and mine construction information.
For the sake of simplification, a 2-dimensional model was designed to represent the caprock domain.
A three-dimensional model was used to compare the cell performance for both designs.
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