Effect of Nonlinear Thermal Radiation on Flow of Williamson Nanofluid in a Vertical Porous Channel with Heat Source or Sink by Using Adomian Decomposition Method

被引:10
作者
Shobha, K. C. [1 ]
Mallikarjun, B. Patil [1 ]
机构
[1] Tumkur Univ, Dept Studies & Res Math, Tumakuru 572103, Karnataka, India
关键词
Porous Medium; Williamson Nanofluids; Nonlinear Thermal Radiation; Heat Source or Sink; Brownian Motion; Thermophoresis; ENTROPY GENERATION; VISCOUS-FLUID; MHD FLOW; SLIP; CONVECTION; PLATE;
D O I
10.1166/jon.2022.1822
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The study examines the entropy generation in the Williamson nanofluid flowing in a vertical porous channel exposed to nonlinear thermal radiation and heat source or sink. Constant temperature and fixed nanoparticle concentration are maintained at the boundaries of the channel. Governing equations are derived by applying the conservation laws incorporating the brownian motion and thermophoretic force impacts of nanofluids utilizing Buongiorno's model. These equations are non dimensionalised by choosing suitable dimensionless variables. The governing simultaneous equations are tackled by implementing adomian decomposition technique for velocity, tempearture, dimensionless shear stress heat transfer rate. The findings of the study are analysed through graphs. The major findings of the study are porous parameter reduces velocity because of resistance to the flow and enhances temperature. Thermal radiation parameter reduces both velocity and temperature fields. Williamson parameter enhances the velocity field and reduces the temperature to a very small extent. These results are also corresponds with skin friction and Nusselt number graphs. Entropy generation in the considered flow system can be minimized by increasing Williamson number.
引用
收藏
页码:39 / 47
页数:9
相关论文
共 47 条
[31]   Investigation of peristaltic flow of Williamson nanofluid in a curved channel with compliant walls [J].
Nadeem, S. ;
Maraj, E. N. ;
Akbar, Noreen Sher .
APPLIED NANOSCIENCE, 2014, 4 (05) :511-521
[32]   Hydromagnetic Flow of Heat and Mass Transfer in a Nano Williamson Fluid Past a Vertical Plate With Thermal and Momentum Slip Effects: Numerical Study [J].
Nagendra, N. ;
Amanulla, Ch ;
Reddy, M. Sudhakar ;
Prasad, V. Ramachandra .
NONLINEAR ENGINEERING - MODELING AND APPLICATION, 2019, 8 (01) :127-144
[33]  
Oudina F. M., 2020, INT COMMUN HEAT MASS, V117
[34]   An analysis on free convection flow, heat transfer and entropy generation in an odd-shaped cavity filled with nanofluid [J].
Parvin, Salva ;
Chamkha, A. J. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2014, 54 :8-17
[35]  
Prasad K. V., 2017, International Journal of Applied Mechanics and Engineering, V22, P123, DOI 10.1515/ijame-2017-0008
[36]   A Nonlinear Stability Analysis of Convection in a Porous Vertical Channel Including Local Thermal Nonequilibrium [J].
Scott, Nicola L. ;
Straughan, B. .
JOURNAL OF MATHEMATICAL FLUID MECHANICS, 2013, 15 (01) :171-178
[37]   Solidification heat transfer of nanofluid in existence of thermal radiation by means of FEM [J].
Sheikholeslami, M. ;
Ghasemi, A. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2018, 123 :418-431
[38]  
Subramanyam S., 2013, J APPL MATH FLUID ME, V5, P33
[39]   Heat transfer of viscous fluid in a vertical channel sandwiched between nanofluid porous zones [J].
Umavathi, Jawali C. ;
Sheremet, Mikhail A. .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2021, 144 (04) :1389-1399
[40]   Mixed convection in a vertical porous channel [J].
Umavathi, JC ;
Kumar, JP ;
Chamkha, AJ ;
Pop, I .
TRANSPORT IN POROUS MEDIA, 2005, 61 (03) :315-335