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2023 | OriginalPaper | Chapter

Study of Heat and Mass Transfer in a Composite Nanofluid Layer

Authors : Awanish Kumar, B. S. Bhadauria, Anurag Srivastava

Published in: Frontiers in Industrial and Applied Mathematics

Publisher: Springer Nature Singapore

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Abstract

A non-linear analysis is done to analyze the heat and mass transport in a composite nanofluid layer confined between two parallel horizontal plates, heated from below. The Nusselt number for temperature and nanoparticle concentrations is obtained as a function of time. It is observed that the suspension of two different nanoparticles in a base fluid significantly affects the heat and mass transport. We observe that the modified diffusivity ratios and the Lewis numbers for the first and second types of nanofluids only affect the mass transportation of the first and second types of nanofluids, respectively.

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Literature
1.
go back to reference Choi, S.: Enhancing thermal conductivity of fluids with nanoparticles. In: Signier, D.A., Wang, H.P. (eds.) Development and Applications of Non-Newtonian flows, ASME FED, vol. 231/MD vol. 66, pp. 99–105 (1995) Choi, S.: Enhancing thermal conductivity of fluids with nanoparticles. In: Signier, D.A., Wang, H.P. (eds.) Development and Applications of Non-Newtonian flows, ASME FED, vol. 231/MD vol. 66, pp. 99–105 (1995)
2.
go back to reference Eastman, J.A., Choi, S, Li, S., Yu, W., Thompson, L.J.: Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles. Appl. Phys. Lett. 78, 718–720 (2001) Eastman, J.A., Choi, S, Li, S., Yu, W., Thompson, L.J.: Anomalously increased effective thermal conductivities of ethylene glycol-based nanofluids containing copper nanoparticles. Appl. Phys. Lett. 78, 718–720 (2001)
3.
go back to reference Das, S.K., Putra, N., Thiesen, P., Roetzel, W.: Temperature dependence of thermal conductivity enhancement for nanofluids. ASME J. Heat Transf. 125, 567–574 (2003)CrossRef Das, S.K., Putra, N., Thiesen, P., Roetzel, W.: Temperature dependence of thermal conductivity enhancement for nanofluids. ASME J. Heat Transf. 125, 567–574 (2003)CrossRef
4.
go back to reference Buongiorno, J.: Convective transport in nanofluids. ASME J. Heat Transf. 128, 240–250 (2006) Buongiorno, J.: Convective transport in nanofluids. ASME J. Heat Transf. 128, 240–250 (2006)
7.
go back to reference Nield, D.A., Kuznetsov, A.V.: Thermal instability in a porous medium layer saturated by a nanofluid. Int. J. Heat Mass Transf. 52, 5796–5801 (2009) Nield, D.A., Kuznetsov, A.V.: Thermal instability in a porous medium layer saturated by a nanofluid. Int. J. Heat Mass Transf. 52, 5796–5801 (2009)
8.
go back to reference Kuznetsov, A.V., Nield, D.A.: Thermal instability in a porous medium saturated by a nanofluid: Brinkman model. Transp. Porous Media 81, 409–422 (2010) Kuznetsov, A.V., Nield, D.A.: Thermal instability in a porous medium saturated by a nanofluid: Brinkman model. Transp. Porous Media 81, 409–422 (2010)
9.
go back to reference Kuznetsov, A.V., Nield, D.A.: The onset of double-diffusive nanofluid convection in a layer of a saturated porous medium. Transp. Porous Media 85, 941–951 (2010) Kuznetsov, A.V., Nield, D.A.: The onset of double-diffusive nanofluid convection in a layer of a saturated porous medium. Transp. Porous Media 85, 941–951 (2010)
10.
go back to reference Nield D.A., Kuznetsov A.V.: The onset of double-diffusive convection in a nanofluid layer. Int. J Heat Fluid Flow 32, 771–776 (2011) Nield D.A., Kuznetsov A.V.: The onset of double-diffusive convection in a nanofluid layer. Int. J Heat Fluid Flow 32, 771–776 (2011)
11.
go back to reference Nield, D.A., Kuznetsov, A.V.: The effect of vertical through flow on thermal instability in a porous medium layer saturated by nanofluid. Transp. Porous Media 87, 765–775 (2011) Nield, D.A., Kuznetsov, A.V.: The effect of vertical through flow on thermal instability in a porous medium layer saturated by nanofluid. Transp. Porous Media 87, 765–775 (2011)
12.
go back to reference Bhadauria, B.S., Agarwal, S., Kumar, A.: Non-linear two-dimensional convection in a nanofluid saturated porous medium. Transp. Porous Media 90, 605–625 (2011) Bhadauria, B.S., Agarwal, S., Kumar, A.: Non-linear two-dimensional convection in a nanofluid saturated porous medium. Transp. Porous Media 90, 605–625 (2011)
13.
go back to reference Venezian, G.: Effect of modulation on the onset of thermal convection. J. Fluid. Mech. 35(243), 254 (1969)MATH Venezian, G.: Effect of modulation on the onset of thermal convection. J. Fluid. Mech. 35(243), 254 (1969)MATH
15.
go back to reference Gresho, P.M., Sani, R.L.: The effects of gravity modulation on the stability of a heated fluid layer. J. Fluid Mech. 40(4), 783–806 (1970)CrossRefMATH Gresho, P.M., Sani, R.L.: The effects of gravity modulation on the stability of a heated fluid layer. J. Fluid Mech. 40(4), 783–806 (1970)CrossRefMATH
16.
go back to reference Bhadauria, B.S., Siddheshwar, P.G., Suthar, O.P.: Nonlinear thermal instability in a rotating viscous fluid layer under temperature/gravity modulation. J. Heat Transf. 134/102502-1 (2012) Bhadauria, B.S., Siddheshwar, P.G., Suthar, O.P.: Nonlinear thermal instability in a rotating viscous fluid layer under temperature/gravity modulation. J. Heat Transf. 134/102502-1 (2012)
17.
go back to reference Bhadauria, B.S., Kiran, P., Kumar, V.: Thermal convection in a nanofluid saturated porous medium with internal heating and gravity modulation. J. Nanofluids 5, 1–12 (2016) Bhadauria, B.S., Kiran, P., Kumar, V.: Thermal convection in a nanofluid saturated porous medium with internal heating and gravity modulation. J. Nanofluids 5, 1–12 (2016)
18.
go back to reference Thomson, W.: Thermal convection in a magnetic field. Phil. Mag. 42(1417), 1432 (1951)MATH Thomson, W.: Thermal convection in a magnetic field. Phil. Mag. 42(1417), 1432 (1951)MATH
19.
go back to reference Chandrasekhar, S.: Hydrodynamic and Hydromagnetic stability. Oxford University Press, London (1961)MATH Chandrasekhar, S.: Hydrodynamic and Hydromagnetic stability. Oxford University Press, London (1961)MATH
20.
go back to reference Kiran, P., Bhadauria, B.S., Narasimhulu, Y.: Oscillatory magneto-convection under magnetic field modulation. Alexandria Eng. J. 57(1), 445–453 (2018) Kiran, P., Bhadauria, B.S., Narasimhulu, Y.: Oscillatory magneto-convection under magnetic field modulation. Alexandria Eng. J. 57(1), 445–453 (2018)
21.
go back to reference Yadav, D.: Numerical solution of the onset of Buoyancy-driven nanofluid convective motion in an anisotropic porous medium layer with variable gravity and internal heating. Heat Transfer-Asian Res. 49(3), 1170–1191 (2020)CrossRef Yadav, D.: Numerical solution of the onset of Buoyancy-driven nanofluid convective motion in an anisotropic porous medium layer with variable gravity and internal heating. Heat Transfer-Asian Res. 49(3), 1170–1191 (2020)CrossRef
22.
go back to reference Sakshath, T.N., Joshi, A.P.: Effect of horizontal pressure gradient on Rayleigh-Bénard convection of a Newtonian nanoliquid in a high porosity medium using a local thermal non-equilibrium model. Heat Transf. 1631–1657 (2021) Sakshath, T.N., Joshi, A.P.: Effect of horizontal pressure gradient on Rayleigh-Bénard convection of a Newtonian nanoliquid in a high porosity medium using a local thermal non-equilibrium model. Heat Transf. 1631–1657 (2021)
23.
go back to reference Hanemann, T., Szabo, D.V.: Polymer-nanoparticle composites: from synthesis to modern applications. Materials 3, 3468–517 (2010)CrossRef Hanemann, T., Szabo, D.V.: Polymer-nanoparticle composites: from synthesis to modern applications. Materials 3, 3468–517 (2010)CrossRef
24.
go back to reference Zhang, Q., Xu, Y., Wang, X., Yao, W.-T.: Recent advances in noble metal based composite nanocatalysts: colloidal synthesis, properties, and catalytic applications. Nanoscale 7, 10559–83 (2015)CrossRef Zhang, Q., Xu, Y., Wang, X., Yao, W.-T.: Recent advances in noble metal based composite nanocatalysts: colloidal synthesis, properties, and catalytic applications. Nanoscale 7, 10559–83 (2015)CrossRef
25.
go back to reference Suleiman, A., Sharma, K.V., Baheta, A.V., Mamat, R.: A review of thermophysical properties of water based composite nanofluids. Renew. Sustain. Energy Rev. 66, 654–678 (2016)CrossRef Suleiman, A., Sharma, K.V., Baheta, A.V., Mamat, R.: A review of thermophysical properties of water based composite nanofluids. Renew. Sustain. Energy Rev. 66, 654–678 (2016)CrossRef
26.
go back to reference Bhadauria, B.S., Kumar, A.: Throughflow and gravity modulation effect on thermal instability in a hele-shaw cell saturated by nanofluid. J. Porous Media 24(6), 31–51 (2021) Bhadauria, B.S., Kumar, A.: Throughflow and gravity modulation effect on thermal instability in a hele-shaw cell saturated by nanofluid. J. Porous Media 24(6), 31–51 (2021)
27.
go back to reference Kumar, V., Awasthi, M.K.: Thermal instability in a horizontal composite nano-liquid layer. SN Appl. Sci. 2, 380 (2020)CrossRef Kumar, V., Awasthi, M.K.: Thermal instability in a horizontal composite nano-liquid layer. SN Appl. Sci. 2, 380 (2020)CrossRef
Metadata
Title
Study of Heat and Mass Transfer in a Composite Nanofluid Layer
Authors
Awanish Kumar
B. S. Bhadauria
Anurag Srivastava
Copyright Year
2023
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-7272-0_17

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