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Accuracy analysis of predicted velocity profiles of laminar duct flow with entropy generation method
Authors:J. A. Esfahani  M. Modirkhazeni  S. Mohammadi
Affiliation:Center of Excellence on Modeling and Control Systems (CEMCS) & Department of Mechanical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad 91775-1111, Iran
Abstract:
The objective of this work is to estimate the accuracy of a predicted velocity profile which can be gained from experimental results, in comparison with the exact ones by the methodology of entropy generation. The analysis is concerned with the entropy generation rate in hydrodynamic, steady, laminar, and incompressible flow for Newtonian fluids in the insulated channels of arbitrary cross section. The entropy generation can be calculated from two local and overall techniques. Adaptation of the results of these techniques depends on the used velocity profile. Results express that in experimental works, whatever the values of local and overall entropy generation rates are close to each other, the results are more accuracy. In order to extent the subject, different geometries have been investigated. Also, the influence of geometry on the entropy generation rate is studied, and the distribution of volumetric local entropy generation rate for the selected geometries is drawn.
Keywords:delayed cellular neural networks (DCNNs)  linear matrix inequality (LMI)  global stability  entropy generation  velocity profile  duct   arbitrary cross section   laminar internal flow  
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