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J. Prakash et al.
References
Akbar NS, Huda AB, Tripathi D (2016) Thermally developing MHD peristaltic transport of
nanofluids with velocity and thermal slip effects. Eur Phys J Plus 131(9):332
Bandopadhyay A, Tripathi D, Chakraborty S (2016) Electroosmosis-modulated peristaltic transport
in microfluidic channels. Phys Fluids 28(5):52002
Bandyopadhyay S, Chakraborty S (2018) Thermophoretically driven capillary transport of nanofluid
in a microchannel. Adv Powder Technol 29(4):964–971
Bhatti M, Zeeshan A, Ellahi R, Ijaz N (2017) Heat and mass transfer of two-phase flow with Electric
double layer effects induced due to peristaltic propulsion in the presence of transverse magnetic
field. J Mol Liq 230:237–246
Buongiorno J (2006) Convective transport in nanofluids. J Heat Transf 128(3):240–250
Chakraborty S (2006) Augmentation of peristaltic microflows through electro-osmotic mechanisms.
J Phys D Appl Phys 39(24):5356
Choi SU, Eastman JA (1995) Enhancing thermal conductivity of fluids with nanoparticles. Argonne
National Lab, IL (United States)
Das S, Chakraborty S (2006) Analytical solutions for velocity, temperature and concentration distribution in electroosmotic microchannel flows of a non-Newtonian bio-fluid. Anal Chim Acta
559(1):15–24
Ganguly S, Sarkar S, Hota TK, Mishra M (2015) Thermally developing combined electroosmotic
and pressure-driven flow of nanofluids in a microchannel under the effect of magnetic field. Chem
Eng Sci 126:10–21
Ghasemi SE (2017) Thermophoresis and Brownian motion effects on peristaltic nanofluid flow for
drug delivery applications. J Mol Liq 238:115–121
Goswami P, Chakraborty J, Bandopadhyay A, Chakraborty S (2016) Electrokinetically modulated
peristaltic transport of power-law fluids. Microvasc Res 103:41–54
Guo X, Qi H (2017) Analytical solution of electro-osmotic peristalsis of fractional Jeffreys fluid in
a micro-channel. Micromachines 8(12):341
Khanafer K, Vafai K (2018) A review on the applications of nanofluids in solar energy field. Renew
Energy 123:398–406
Kothandapani M, Prakash J (2015) Effects of thermal radiation parameter and magnetic field on
the peristaltic motion of Williamson nanofluids in a tapered asymmetric channel. Int J Heat Mass
Transf 81:234–245
Kothandapani M, Prakash J (2015) Effect of radiation and magnetic field on peristaltic transport
of nanofluids through a porous space in a tapered asymmetric channel. J Magn Magn Mater
378:152–163
Kothandapani M, Prakash J (2016) Convective boundary conditions effect on peristaltic flow of a
MHD Jeffery nanofluid. Appl Nanosci 6(3):323–335
Mekheimer KS, Hasona W, Abo-Elkhair R, Zaher A (2018) Peristaltic blood flow with gold
nanoparticles as a third grade nanofluid in catheter: Application of cancer therapy. Phys Lett
A 382(2–3):85–93
Mosayebidorcheh S, Hatami M (2018) Analytical investigation of peristaltic nanofluid flow and
heat transfer in an asymmetric wavy wall channel (Part I: Straight channel). Int J Heat Mass
Transf 126:790–799
Mosayebidorcheh S, Hatami M (2018) Analytical investigation of peristaltic nanofluid flow and
heat transfer in an asymmetric wavy wall channel (Part II: Divergent channel). Int J Heat Mass
Transf 126:800–808
Noreen S, Alsaedi A, Hayat T (2012) Peristaltic flow of pseudoplastic fluid in an asymmetric
channel. J Appl Mech 79(5):54501
Prakash J, Ramesh K, Tripathi D, Kumar R (2018) Numerical simulation of heat transfer in blood
flow altered by electroosmosis through tapered micro-vessels. Microvasc Res 118:162–172
Prakash J, Sharma A, Tripathi D (2018) Thermal radiation effects on electroosmosis modulated
peristaltic transport of ionic nanoliquids in biomicrofluidics channel. J Mol Liq 249:843–855
J. Prakash et al.
References
Akbar NS, Huda AB, Tripathi D (2016) Thermally developing MHD peristaltic transport of
nanofluids with velocity and thermal slip effects. Eur Phys J Plus 131(9):332
Bandopadhyay A, Tripathi D, Chakraborty S (2016) Electroosmosis-modulated peristaltic transport
in microfluidic channels. Phys Fluids 28(5):52002
Bandyopadhyay S, Chakraborty S (2018) Thermophoretically driven capillary transport of nanofluid
in a microchannel. Adv Powder Technol 29(4):964–971
Bhatti M, Zeeshan A, Ellahi R, Ijaz N (2017) Heat and mass transfer of two-phase flow with Electric
double layer effects induced due to peristaltic propulsion in the presence of transverse magnetic
field. J Mol Liq 230:237–246
Buongiorno J (2006) Convective transport in nanofluids. J Heat Transf 128(3):240–250
Chakraborty S (2006) Augmentation of peristaltic microflows through electro-osmotic mechanisms.
J Phys D Appl Phys 39(24):5356
Choi SU, Eastman JA (1995) Enhancing thermal conductivity of fluids with nanoparticles. Argonne
National Lab, IL (United States)
Das S, Chakraborty S (2006) Analytical solutions for velocity, temperature and concentration distribution in electroosmotic microchannel flows of a non-Newtonian bio-fluid. Anal Chim Acta
559(1):15–24
Ganguly S, Sarkar S, Hota TK, Mishra M (2015) Thermally developing combined electroosmotic
and pressure-driven flow of nanofluids in a microchannel under the effect of magnetic field. Chem
Eng Sci 126:10–21
Ghasemi SE (2017) Thermophoresis and Brownian motion effects on peristaltic nanofluid flow for
drug delivery applications. J Mol Liq 238:115–121
Goswami P, Chakraborty J, Bandopadhyay A, Chakraborty S (2016) Electrokinetically modulated
peristaltic transport of power-law fluids. Microvasc Res 103:41–54
Guo X, Qi H (2017) Analytical solution of electro-osmotic peristalsis of fractional Jeffreys fluid in
a micro-channel. Micromachines 8(12):341
Khanafer K, Vafai K (2018) A review on the applications of nanofluids in solar energy field. Renew
Energy 123:398–406
Kothandapani M, Prakash J (2015) Effects of thermal radiation parameter and magnetic field on
the peristaltic motion of Williamson nanofluids in a tapered asymmetric channel. Int J Heat Mass
Transf 81:234–245
Kothandapani M, Prakash J (2015) Effect of radiation and magnetic field on peristaltic transport
of nanofluids through a porous space in a tapered asymmetric channel. J Magn Magn Mater
378:152–163
Kothandapani M, Prakash J (2016) Convective boundary conditions effect on peristaltic flow of a
MHD Jeffery nanofluid. Appl Nanosci 6(3):323–335
Mekheimer KS, Hasona W, Abo-Elkhair R, Zaher A (2018) Peristaltic blood flow with gold
nanoparticles as a third grade nanofluid in catheter: Application of cancer therapy. Phys Lett
A 382(2–3):85–93
Mosayebidorcheh S, Hatami M (2018) Analytical investigation of peristaltic nanofluid flow and
heat transfer in an asymmetric wavy wall channel (Part I: Straight channel). Int J Heat Mass
Transf 126:790–799
Mosayebidorcheh S, Hatami M (2018) Analytical investigation of peristaltic nanofluid flow and
heat transfer in an asymmetric wavy wall channel (Part II: Divergent channel). Int J Heat Mass
Transf 126:800–808
Noreen S, Alsaedi A, Hayat T (2012) Peristaltic flow of pseudoplastic fluid in an asymmetric
channel. J Appl Mech 79(5):54501
Prakash J, Ramesh K, Tripathi D, Kumar R (2018) Numerical simulation of heat transfer in blood
flow altered by electroosmosis through tapered micro-vessels. Microvasc Res 118:162–172
Prakash J, Sharma A, Tripathi D (2018) Thermal radiation effects on electroosmosis modulated
peristaltic transport of ionic nanoliquids in biomicrofluidics channel. J Mol Liq 249:843–855
