Comprehensive analysis of heat transfer of gold-blood nanofluid (Sisko-model) with thermal radiation
Author(s) -
Mohamed R. Eid,
Ahmed Alsaedi,
Taseer Muhammad,
Tasawar Hayat
Publication year - 2017
Publication title -
results in physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.743
H-Index - 56
ISSN - 2211-3797
DOI - 10.1016/j.rinp.2017.11.004
Subject(s) - nanofluid , thermal radiation , heat transfer , mechanics , boundary layer , materials science , thermal , radiation , flow (mathematics) , volume fraction , economic shortage , heat generation , thermodynamics , composite material , physics , optics , linguistics , philosophy , government (linguistics)
Characteristics of heat transfer of gold nanoparticles (Au-NPs) in flow past a power-law stretching surface are discussed. Sisko bio-nanofluid flow (with blood as a base fluid) in existence of non-linear thermal radiation is studied. The resulting equations system is abbreviated to model the suggested problem in non-linear PDEs. Along with initial and boundary-conditions, the equations are made non-dimensional and then resolved numerically utilizing 4thâ5th order RungeâKutta-Fehlberg (RKF45) technique with shooting integration procedure. Various flow quantities behaviors are examined for parametric consideration such as the Au-NPs volume fraction, the exponentially stretching and thermal radiation parameters. It is observed that radiation drives to shortage the thermal boundary-layer thickness and therefore resulted in better heat transfer at surface. Keywords: Sisko nanofluid, Gold nanoparticles, Heat transfer, Thermal radiatio
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