2016
DOI: 10.1016/j.jestch.2015.06.010
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Effect of chemical reaction on MHD boundary layer flow and melting heat transfer of Williamson nanofluid in porous medium

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Cited by 197 publications
(112 citation statements)
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“…Bhatti and Rashidi (2016) shows the thermo-diffusion and thermal radiation effects of the flow pattern of Williamson nanofluid over a porous shrinking/stretching sheet. Recent studies in this are also includes various physical parameters such as pressure dependent viscosity (Zehra et al, 2015), Hall effects (Eldabe et al, 2016), melting heat transfer , convective conditions of heat and mass transfer flow , thermal radiation and Ohmic dissipation , chemical reaction (Krishnamurthy et al, 2016), variable thickness (Salahuddin et al, 2016), bidirectional stretching surface of non-linear…”
Section: Introductionmentioning
confidence: 99%
“…Bhatti and Rashidi (2016) shows the thermo-diffusion and thermal radiation effects of the flow pattern of Williamson nanofluid over a porous shrinking/stretching sheet. Recent studies in this are also includes various physical parameters such as pressure dependent viscosity (Zehra et al, 2015), Hall effects (Eldabe et al, 2016), melting heat transfer , convective conditions of heat and mass transfer flow , thermal radiation and Ohmic dissipation , chemical reaction (Krishnamurthy et al, 2016), variable thickness (Salahuddin et al, 2016), bidirectional stretching surface of non-linear…”
Section: Introductionmentioning
confidence: 99%
“…Forced convection stagnation point flow of viscous fluid with homogeneous-heterogeneous reactions was explored by Chaudhary and Merkin [2]. Impact of nanoparticles in flow of viscous liquid with homogeneous/heterogeneous reactions is explored by Krishnamurthy et al [3]. Khan and Pop [4] put forward such effects on the flow of viscoelastic fluid bounded a stretching sheet.…”
Section: Introductionmentioning
confidence: 99%
“…have analysed the chemical reaction and radiation absorption effects on the flow and heat transfer of a nanofluid in a rotating system. Effect of chemical reaction on MHD boundary layer flow and melting heat transfer of Williamson nanofluid in porous medium by Krishnamurthy et al (2016). Mabood et al (2016) have studied the MHD stagnation point flow heat and mass transfer of nanofluids in porous medium with radiation, viscous dissipation and chemical reaction.…”
Section: Introductionmentioning
confidence: 99%