Optimization of SWCNTs and MWCNTs (single and multi-wall carbon nanotubes) in peristaltic transport with thermal radiation in a non-uniform channel
Here peristalsis of Carbon nanotubes is performed between non-uniform propagating waves channel/tube. Viscosity of the material is considered dependent upon temperature here. Thermally radiative aspects are considered through linear term of heat flux. Channel boundaries retain the momentum and therm...
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Published in | Journal of molecular liquids Vol. 273; pp. 383 - 391 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.01.2019
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Abstract | Here peristalsis of Carbon nanotubes is performed between non-uniform propagating waves channel/tube. Viscosity of the material is considered dependent upon temperature here. Thermally radiative aspects are considered through linear term of heat flux. Channel boundaries retain the momentum and thermal slip characteristics. Iijima suggested physical quantities for single and multiple WCNTS are taken. Conservation principles (i.e. Mass, momentum and energy) are used to modeled the flow. Later on lubrication assumptions are utilized to simplified such equations. Exact solution for stream function, velocity and temperature is carried out. Further pressure rise per wavelength is plotted via numerical integration. Effective heat transfer rate is analyzed through bar charts.
•Carbon nanotubes are considered.•Viscosity is taken as a function of temperature.•Effective heat transfer at lower and upper walls are discussed.•Velocity and thermal slip conditions comprises at peristaltic walls.•Thermal radiation effects are taken. |
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AbstractList | Here peristalsis of Carbon nanotubes is performed between non-uniform propagating waves channel/tube. Viscosity of the material is considered dependent upon temperature here. Thermally radiative aspects are considered through linear term of heat flux. Channel boundaries retain the momentum and thermal slip characteristics. Iijima suggested physical quantities for single and multiple WCNTS are taken. Conservation principles (i.e. Mass, momentum and energy) are used to modeled the flow. Later on lubrication assumptions are utilized to simplified such equations. Exact solution for stream function, velocity and temperature is carried out. Further pressure rise per wavelength is plotted via numerical integration. Effective heat transfer rate is analyzed through bar charts.
•Carbon nanotubes are considered.•Viscosity is taken as a function of temperature.•Effective heat transfer at lower and upper walls are discussed.•Velocity and thermal slip conditions comprises at peristaltic walls.•Thermal radiation effects are taken. |
Author | Khan, Sajjad Wali Khan, Tufail A. Khan, Niaz B. Rehman, Muftooh Ur Imran Khan, M. Faisal Javed, M. Muhammad, Riaz Tahir Hassan, M. |
Author_xml | – sequence: 1 givenname: M. surname: Faisal Javed fullname: Faisal Javed, M. organization: Department of Civil Engineering, Sarhad University of Science and Information Technology, Peshawar, Pakistan – sequence: 2 givenname: Niaz B. surname: Khan fullname: Khan, Niaz B. email: niaz.bahadur@smme.nust.edu.pk organization: School of Mechanical and Manufacturing Engineering, National University of Science and Technology, Islamabad, Pakistan – sequence: 3 givenname: M. surname: Imran Khan fullname: Imran Khan, M. email: mk42@hw.ac.uk organization: Heriot Watt University, Edinburgh Campus, Edinburgh EH14 4AS, United Kingdom – sequence: 4 givenname: Riaz surname: Muhammad fullname: Muhammad, Riaz organization: Department of Mechanical Engineering, CECOS University of IT and Emerging Sciences, Peshawar, Pakistan – sequence: 5 givenname: Muftooh Ur surname: Rehman fullname: Rehman, Muftooh Ur organization: Department of Mechanical Engineering, CECOS University of IT and Emerging Sciences, Peshawar, Pakistan – sequence: 6 givenname: Sajjad Wali surname: Khan fullname: Khan, Sajjad Wali organization: Civil Engineering Department, UET Peshawar, Pakistan – sequence: 7 givenname: Tufail A. surname: Khan fullname: Khan, Tufail A. organization: Department of Basic Sciences, University of Engineering & Technology, Peshawar, Pakistan – sequence: 8 givenname: M. surname: Tahir Hassan fullname: Tahir Hassan, M. organization: Mechanical Engineering Department, Bahauddin Zakariya University, Multan, Pakistan |
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Keywords | Trapping Peristaltic flow Thermal radiation Nusselt number Varying viscosity |
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SubjectTerms | Nusselt number Peristaltic flow Thermal radiation Trapping Varying viscosity |
Title | Optimization of SWCNTs and MWCNTs (single and multi-wall carbon nanotubes) in peristaltic transport with thermal radiation in a non-uniform channel |
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