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Computational Fluid Dynamics simulations have been used to investigate the ejector "local-scale" fluid dynamic phenomena and to formulate correlations for ejector component efficiencies, thus linking ejector component efficiencies to the "local-scale" phenomena.
By determining the boiling heat transfer coefficient through the use of an experimentally formulated correlation it was shown that the theoretical model is indeed able to simulate the characteristic chaotic behaviour, due to the boiling and condensation processes, of the device to within a reasonable level of accuracy.
This simplified biofilm model formulated correlations between substrate concentration in the influent/effluent and at biofilm liquid interface along with substrate flux and biofilm thickness.
To exploit the cross-model correlation, we formulate the correlation of 3D models in a hypergraph structure, where both the vertex correlation and the edge correlation are simultaneously learned in a constructive-learning process.
The paper presents ways to formulate the correlation among adjacent facility disruptions, and incorporates such correlations into the CA model.
Herein we describe the application of historical data design under response surface methodology to formulate the correlation of the fuel spray SMD (Sauter Mean Diameter) with factors (viscosity, fuel injection pressure, air-blast pressure).
Such rapid evolution is important in biochronology between different periods because it allows researchers to formulate accurate correlations between different specimens in the fossil record.
This study also trying to formulate empirical correlations between tortuosity factor and these studied petrophysical rock properties.
In the process, the model was used to formulate empirical correlations for the exchange current density (i0) in the electrodes with respect to the electrolyte concentration for future fuel cell development.
The aim is to formulate a generalized correlation that can be applied for predicting the average gas holdup in this kind of bubble columns.
The steady-state gas condensate rate sensitive relative permeability data has been used to formulate a new correlation that relates gas and condensate relative permeability to capillary number (the ratio of viscous to capillary forces).
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