Convective heat transfer of micropolar fluid in a horizontal wavy channel under the local heating; International Journal of Mechanical Sciences; Vol. 128-129

Xehetasun bibliografikoak
Parent link:International Journal of Mechanical Sciences
Vol. 128-129.— 2017.— [P. 541–549]
Erakunde egilea: Национальный исследовательский Томский политехнический университет (ТПУ) Энергетический институт (ЭНИН) Кафедра атомных и тепловых электростанций (АТЭС)
Beste egile batzuk: Miroshnichenko I. V. Igor V., Sheremet M. A. Mikhail Aleksandrovich, Pop I. Ioan, Ishak A. Anuar
Gaia:Title screen
A numerical analysis of laminar mixed convection of micropolar fluid in a horizontal wavy channel with a local heater has been carried out. Governing equations formulated in dimensionless stream function, vorticity and temperature have been solved by finite difference method. Effects of Rayleigh number, Reynolds number, Prandtl number, vortex viscosity parameter and undulation number on streamlines, isotherms, vorticity isolines as well as horizontal velocity and temperature profiles with average Nusselt number at the heater have been studied. It has been found that the average Nusselt number is an increasing function of Rayleigh, Reynolds and Prandtl numbers and a decreasing function of undulation number while an influence of vortex viscosity parameter is non-monotonic.
Режим доступа: по договору с организацией-держателем ресурса
Hizkuntza:ingelesa
Argitaratua: 2017
Gaiak:
Sarrera elektronikoa:https://doi.org/10.1016/j.ijmecsci.2017.05.013
Formatua: Baliabide elektronikoa Liburu kapitulua
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=656710

MARC

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200 1 |a Convective heat transfer of micropolar fluid in a horizontal wavy channel under the local heating  |f I. V. Miroshnichenko [et al.] 
203 |a Text  |c electronic 
300 |a Title screen 
320 |a [References: 46 tit.] 
330 |a A numerical analysis of laminar mixed convection of micropolar fluid in a horizontal wavy channel with a local heater has been carried out. Governing equations formulated in dimensionless stream function, vorticity and temperature have been solved by finite difference method. Effects of Rayleigh number, Reynolds number, Prandtl number, vortex viscosity parameter and undulation number on streamlines, isotherms, vorticity isolines as well as horizontal velocity and temperature profiles with average Nusselt number at the heater have been studied. It has been found that the average Nusselt number is an increasing function of Rayleigh, Reynolds and Prandtl numbers and a decreasing function of undulation number while an influence of vortex viscosity parameter is non-monotonic. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t International Journal of Mechanical Sciences 
463 |t Vol. 128-129  |v [P. 541–549]  |d 2017 
610 1 |a электронный ресурс 
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701 1 |a Miroshnichenko  |b I. V.  |g Igor V. 
701 1 |a Sheremet  |b M. A.  |c physicist  |c Professor of Tomsk Polytechnic University, Doctor of Physical and Mathematical Sciences  |f 1983-  |g Mikhail Aleksandrovich  |3 (RuTPU)RU\TPU\pers\35115  |9 18390 
701 1 |a Pop  |b I.  |g Ioan 
701 1 |a Ishak  |b A.  |g Anuar 
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