Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect

The study of stagnation point flow and heat transfer over a stretching/shrinking sheet in a hybrid nanofluid has potential applications in a variety of fields. In order to investigate the properties of fluid flow and heat transfer, this study must solve the governing mathematical model(partial diffe...

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Main Authors: Hasanah, N. S., Rasedee, A. F. N., Bachok, N., Wong, T. J., Hasan, M.
Format: Article
Published: Lviv Polytechni National University 2023
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author Hasanah, N. S.
Rasedee, A. F. N.
Bachok, N.
Wong, T. J.
Hasan, M.
author_facet Hasanah, N. S.
Rasedee, A. F. N.
Bachok, N.
Wong, T. J.
Hasan, M.
author_sort Hasanah, N. S.
collection UPM
description The study of stagnation point flow and heat transfer over a stretching/shrinking sheet in a hybrid nanofluid has potential applications in a variety of fields. In order to investigate the properties of fluid flow and heat transfer, this study must solve the governing mathematical model(partial differential equations). By utilizing similarity variables, the model is transformed into a system of ordinary differential equations. The study employs a novel numerical scheme that combines the power of Haar wavelets with the collocation method to solve these ordinary differential equations. Through this approach, the study can predict several important values related to the fluid's flow and heat transfer, including the skin friction coefficient, local Nusselt number, and the profiles of velocity, temperature which can be influenced by the governing parameters of the model.
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institution Universiti Putra Malaysia
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spelling upm.eprints-1081422024-09-10T06:41:21Z http://psasir.upm.edu.my/id/eprint/108142/ Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect Hasanah, N. S. Rasedee, A. F. N. Bachok, N. Wong, T. J. Hasan, M. The study of stagnation point flow and heat transfer over a stretching/shrinking sheet in a hybrid nanofluid has potential applications in a variety of fields. In order to investigate the properties of fluid flow and heat transfer, this study must solve the governing mathematical model(partial differential equations). By utilizing similarity variables, the model is transformed into a system of ordinary differential equations. The study employs a novel numerical scheme that combines the power of Haar wavelets with the collocation method to solve these ordinary differential equations. Through this approach, the study can predict several important values related to the fluid's flow and heat transfer, including the skin friction coefficient, local Nusselt number, and the profiles of velocity, temperature which can be influenced by the governing parameters of the model. Lviv Polytechni National University 2023 Article PeerReviewed Hasanah, N. S. and Rasedee, A. F. N. and Bachok, N. and Wong, T. J. and Hasan, M. (2023) Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect. Mathematical Modeling and Computing, 10 (4). 1269 -1280. ISSN 2312-9794; ESSN: 2415-3788 https://science.lpnu.ua/mmc/all-volumes-and-issues/volume-10-number-4-2023/haar-wavelet-collocation-method-solving 10.23939/mmc2023.04.1269
spellingShingle Hasanah, N. S.
Rasedee, A. F. N.
Bachok, N.
Wong, T. J.
Hasan, M.
Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title_full Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title_fullStr Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title_full_unstemmed Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title_short Haar wavelet collocation method for solving stagnation point over a nonlinearly stretching/shrinking sheet in a hybrid nanofluid with slip effect
title_sort haar wavelet collocation method for solving stagnation point over a nonlinearly stretching shrinking sheet in a hybrid nanofluid with slip effect
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AT rasedeeafn haarwaveletcollocationmethodforsolvingstagnationpointoveranonlinearlystretchingshrinkingsheetinahybridnanofluidwithslipeffect
AT bachokn haarwaveletcollocationmethodforsolvingstagnationpointoveranonlinearlystretchingshrinkingsheetinahybridnanofluidwithslipeffect
AT wongtj haarwaveletcollocationmethodforsolvingstagnationpointoveranonlinearlystretchingshrinkingsheetinahybridnanofluidwithslipeffect
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