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      Falkner–Skan Flow with Stream-Wise Pressure Gradient and Transfer of Mass over a Dynamic Wall

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      Entropy
      MDPI AG

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          Abstract

          In this work, an important model in fluid dynamics is analyzed by a new hybrid neurocomputing algorithm. We have considered the Falkner–Skan (FS) with the stream-wise pressure gradient transfer of mass over a dynamic wall. To analyze the boundary flow of the FS model, we have utilized the global search characteristic of a recently developed heuristic, the Sine Cosine Algorithm (SCA), and the local search characteristic of Sequential Quadratic Programming (SQP). Artificial neural network (ANN) architecture is utilized to construct a series solution of the mathematical model. We have called our technique the ANN-SCA-SQP algorithm. The dynamic of the FS system is observed by varying stream-wise pressure gradient mass transfer and dynamic wall. To validate the effectiveness of ANN-SCA-SQP algorithm, our solutions are compared with state-of-the-art reference solutions. We have repeated a hundred experiments to establish the robustness of our approach. Our experimental outcome validates the superiority of the ANN-SCA-SQP algorithm.

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          Most cited references76

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          SCA: A Sine Cosine Algorithm for solving optimization problems

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            Artificial neural networks for solving ordinary and partial differential equations

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              LXXXV.Solutions of the boundary-layer equations

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                Author and article information

                Contributors
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                Journal
                ENTRFG
                Entropy
                Entropy
                MDPI AG
                1099-4300
                November 2021
                October 31 2021
                : 23
                : 11
                : 1448
                Article
                10.3390/e23111448
                d5c01bca-bd81-43c5-94fd-90baa79cbe7c
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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