Article
Eyring Powell nanofluid flow over a rotating disk with Activation energy and thermal radiation
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Abstract
This paper's goal is to investigate the Eyring-Powell nano liquid past rotating disk. Thermal radiation and chemical reaction have been used to study heat and mass transmission. Convective characteristics, as well as heat and mass conditions, are studied. Through appropriate transformations, highly non-linear partial differential equation systems are transformed into non-linear ordinary differential equations. Implementing bvp4c uses the transmuted ordinary differential equations. Through graphical representation, the effects of promising physical characteristics have been investigated.
Keywords
Rotating disk, Thermal radiation, Activation energy, Eyring-Powell
Citation
Raju, C. N. & Dharmaiah, V. (2020). Eyring powell nanofluid flow over a rotating disk with activation energy and thermal radiation. Turkish Journal of Computer and Mathematics Education, 11(2), 988–996.
C. N. Raju and V. Dharmaiah, “Eyring powell nanofluid flow over a rotating disk with activation energy and thermal radiation,” Turkish Journal of Computer and Mathematics Education, vol. 11, no. 2, pp. 988–996, 2020.
Raju CN, Dharmaiah V. Eyring powell nanofluid flow over a rotating disk with activation energy and thermal radiation. Turkish Journal of Computer and Mathematics Education. 2020;11(2):988–996.
Raju, C. N. and Dharmaiah, V. (2020), ‘Eyring powell nanofluid flow over a rotating disk with activation energy and thermal radiation’, Turkish Journal of Computer and Mathematics Education, 11(2), pp. 988–996.
Raju, Ch. Narasimha, and V. Dharmaiah. “Eyring Powell Nanofluid Flow Over a Rotating Disk with Activation Energy and Thermal Radiation.” Turkish Journal of Computer and Mathematics Education, vol. 11, no. 2, 2020, pp. 988–996.
Raju, Ch. Narasimha, and V. Dharmaiah. “Eyring Powell Nanofluid Flow Over a Rotating Disk with Activation Energy and Thermal Radiation.” Turkish Journal of Computer and Mathematics Education 11, no. 2 (2020): 988–996.
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Published by: Engineering Journals


