Particle shapes on squeezing flow of carreau fluid over a sensor surface
In this research work, we investigated particle shapes flow of Carreau fluid over a sensor surface. Most specifically, the reaction of various parameter namely; power low index, Weissenberg number, squeezing, nanoparticle volume fraction, variation, parndtl numberon temperature in the presence of Cu...
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my.uthm.eprints.59282022-01-25T00:37:01Z http://eprints.uthm.edu.my/5928/ Particle shapes on squeezing flow of carreau fluid over a sensor surface Al Nasrawi, Jaafar Abdul Abbas Abbood Roslan, Rozaini Kandasamy, R. Mohamad, Radiah TA329-348 Engineering mathematics. Engineering analysis In this research work, we investigated particle shapes flow of Carreau fluid over a sensor surface. Most specifically, the reaction of various parameter namely; power low index, Weissenberg number, squeezing, nanoparticle volume fraction, variation, parndtl numberon temperature in the presence of Cu-engine oil based in the presence of squeezing Carreau flow, which are some of the parameters explored that were not investigated in [1]. We used transformation of similarity to lessen the partial differential equation (PDE) to ordinary differential equations (ODE) for the nonlinear governing equation along with their related boundary conditions. The result of the lessened ODEs is unfolded and explained numerically with the application of the fourth/fifth system Runge-KuttaFehlberg-technique together with procedure and practice of shooting- technique, utilizing Maple 18 code. IAEME Publication 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/5928/1/AJ%202018%20%28941%29%20Particle%20shapes%20on%20squeezing%20flow%20of%20carreau%20fluid%20over%20a%20sensor%20surface.pdf Al Nasrawi, Jaafar Abdul Abbas Abbood and Roslan, Rozaini and Kandasamy, R. and Mohamad, Radiah (2018) Particle shapes on squeezing flow of carreau fluid over a sensor surface. International Journal of Mechanical Engineering and Technology (IJMET), 9 (12). ISSN 9766-359X |
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TA329-348 Engineering mathematics. Engineering analysis Al Nasrawi, Jaafar Abdul Abbas Abbood Roslan, Rozaini Kandasamy, R. Mohamad, Radiah Particle shapes on squeezing flow of carreau fluid over a sensor surface |
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In this research work, we investigated particle shapes flow of Carreau fluid over a sensor surface. Most specifically, the reaction of various parameter namely; power low index, Weissenberg number, squeezing, nanoparticle volume fraction, variation, parndtl numberon temperature in the presence of Cu-engine oil based in the presence of squeezing Carreau flow, which are some of the parameters explored that were not investigated in [1]. We used transformation of similarity to lessen the partial differential equation (PDE) to ordinary differential equations (ODE) for the nonlinear governing equation along with their related boundary conditions. The result of the lessened ODEs is unfolded and explained numerically with the application of the fourth/fifth system Runge-KuttaFehlberg-technique together with procedure and practice of shooting- technique, utilizing Maple 18 code. |
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Article |
author |
Al Nasrawi, Jaafar Abdul Abbas Abbood Roslan, Rozaini Kandasamy, R. Mohamad, Radiah |
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Al Nasrawi, Jaafar Abdul Abbas Abbood Roslan, Rozaini Kandasamy, R. Mohamad, Radiah |
author_sort |
Al Nasrawi, Jaafar Abdul Abbas Abbood |
title |
Particle shapes on squeezing flow of carreau fluid over a sensor surface |
title_short |
Particle shapes on squeezing flow of carreau fluid over a sensor surface |
title_full |
Particle shapes on squeezing flow of carreau fluid over a sensor surface |
title_fullStr |
Particle shapes on squeezing flow of carreau fluid over a sensor surface |
title_full_unstemmed |
Particle shapes on squeezing flow of carreau fluid over a sensor surface |
title_sort |
particle shapes on squeezing flow of carreau fluid over a sensor surface |
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IAEME Publication |
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2018 |
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http://eprints.uthm.edu.my/5928/1/AJ%202018%20%28941%29%20Particle%20shapes%20on%20squeezing%20flow%20of%20carreau%20fluid%20over%20a%20sensor%20surface.pdf http://eprints.uthm.edu.my/5928/ |
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13.15806 |