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A detailed study of the erratic circulation around an unbounded inclined plate under fluctuating temperature and isothermal mass dispersion was carried out with a chemical reaction. This work concentrated on the harmonic inclination of the plate in its plane, and the accurate solution of the non-dimensional governing formulations was made possible by the Laplace transform technique. To evaluate their impact on different profiles, the investigation examined a variety of physical factors, including phase inclination, chemical response variable, Schmidt number, thermal Grashof number, mass Grashof number, and duration. Notably, the speed per second increased with decreasing phase angle. Furthermore, a decrease in either the thermal radiation variable or the chemical response variable induced an increase in velocity.
Rocznik
Tom
Strony
104--117
Opis fizyczny
Bibliogr. 47 poz., tab., wykr.
Twórcy
autor
- Department of Mathematics, Panimalar Engineering College, INDIA
autor
- Department of Mathematics, Panimalar Engineering College, INDIA
autor
- Department of Mathematics, Rajalakshmi Engineering College, INDIA
autor
- Department of Mathematics, Panimalar Engineering College, INDIA
autor
- Department of Applied Mathematics, Sri Venkateswara College of Engineering, INDIA
Bibliografia
- [1] Jha B.K. (1991): MHD free-convection and mass-transform flow through a porous medium.– Astrophysics andSpace Science, vol.2, pp.283-289, https://doi.org/10.1007/BF00644290.
- [2] Chamkha A.J., Issa C. and Khanafer K. (2002): Natural convection from an inclined plate embedded in a variableporosity porous medium due to solar radiation.– Int. J. Therm. Sci., vol.41, pp.73-81,https://doi.org/10.1016/S1290-0729(01)01305-9.
- [3] Chen C.H. (2004): Transfer of mass and heat of natural convection through a porous in a MHD flow in aninclined surface with variable concentration and temperature.– Acta Mechanica, vol.172, pp.219-235,https://doi.org/10.1007/s00707-004-0155-5.
- [4] Alam M.S., Rahman M.M. and Sattar M.A. (2006): MHD free convective heat and mass transfer flow past aninclined surface with heat generation.– Thamasat. Int. J. Sc. Technol., vol.11, No.4, pp.1-8.
- [5] Bég O.A., Bég T.A., Bakier A.Y. and Prasad V.R. (2009): Chemically-reacting mixed convective heat and masstransfer along inclined and vertical plates with Soret and Dufour effects: numerical solution.– Int. J. of Appl.Math. and Mech., vol.5, No.2, pp.39-57.
- [6] Muthucumaraswamy R., Sundar Raj M. and Subramanian V.S.A. (2009): Heat and mass transfer effects on flowpast an accelerated vertical plate with variable mass diffusion.– International Journal of Applied Mathematics andEngineering Sciences, vol.3, pp.55-60.
- [7] Uddin Z. and Kumar M. (2010): Unsteady free convection in a fluid past aninclined plate immersed in a porousmedium.– Comput. Model New Tech., vol.14, No.3, pp.41-47.
- [8] Kesavaiah D.C., Satyanarayana P.V. and Venkataramana S. (2011): Effects of the chemical reaction and radiationabsorption on an unsteady MHD convective heat and mass transfer flow past a semi-infinite vertical permeablemoving plate embedded in a porous medium with heat source and suction.– International Journal of AppliedMathematics and Mechanics, vol.7, pp.52-69.
- [9] Shivaiah S. and Anandrao J. (2011): Chemical reaction effect on an unsteady MHD free convection flow past avertical porous plate in the presence of suction or injection.– Theoretical and Applied Mechanics, vol.39, pp.185-208, DOI:10.2298/TAM1202185S.
- [10] Singh G. and Makinde O.D. (2012): Computational dynamics of MHD free convection flow along an inclinedplate with Newtonian heating in the presence of volumetric heat generation.– Chem. Eng. Commun., vol.199,No.9, pp.1144-1154, https://doi.org/10.1080/00986445.2011.651184.
- [11] Makinde O.D. (2012): Chemically reacting hydromagnetic unsteady flowof a radiating fluid past a vertical platewith constant heat flux.– Z. Naturforsch., vol.67a, pp.239-47, https://doi.org/10.5560/zna.2012-0014.
- [12] Muthucumaraswamy R. Nagarajan G. and Subramanian V.S.A. (2011): Chemical reaction and radiation effectson vertical oscillating plate with variable temperature and mass diffusion.– International Journal of AppliedMechanics and Engineering, vol.16, pp.435-446.
- [13] Ibrahim S.M. and Reddy N.B. (2012): Radiation and mass transfer effects on MHD free convection flow along astretching surface with viscous dissipation and heat generation.– International Journal of Applied Mathematicsand Mechanics, vol.8, pp.1-21.
- [14] Muthucumaraswamy R. Sundar Raj M. and Subramanian V.S.A. (2012): Magnetic field effects on flow past anaccelerated isothermal vertical plate with heat and mass diffusion.– Annals of Faculty of Engineering Hunedoara,International Journal of Engineering, vol.10, pp.177-180.
- [15] Ismail Z., Hussanan A., Khan I. and Shafie S. (2013): MHD and radiation effects on natural convection flow in aporous medium past an infinite inclined plate with ramped wall temperature: an exact analysis.– InternationalJournal of Applied Mathematics and Statistics, vol.45, pp.77-86.
- [16] Barik R.N. (2013): Mass transfer and radiation effect on MHD flow past an impulsively started exponentiallyaccelerated inclined porous plate with variable temperature in the presence of heat source and chemicalreaction.– Asian Journal of Current Engineering and Maths, vol.2, No.2, pp.106-114.
- [17] Venkateswarlu M., Reddy G.V.R. and Lakshmi D.V. (2014): Thermal diffusion and radiation effects on unsteadyMHD free convection heat and mass transfer flow past a linearly accelerated vertical porous plate with variabletemperature and mass diffusion.– Journal of the Korean Society for Industrial and Applied Mathematics, vol.18,pp.257-268, DOI:10.12941/jksiam.2014.18.257.
- [18] Sathies Kumar P. and Gangadhar K. (2015): Effect of chemical reaction on slip flow of MHD Casson fluid over astretching sheet with heat and mass transfer.– Advances in Applied Science Research, vol.6, No.8, pp.205-223.
- [19] Muthucumaraswamy R. and Jeyanthi L. (2015): Hall effects on MHD flow past an infinite vertical plate in thepresence of rotating fluid of variable temperature and mass diffusion with first order chemical reaction.– ARPNJournal of Engineering and Applied Sciences, vol.10, No.20, pp.9596-9603.
- [20] Rajput U.S. and Gaurav Kumar (2016): Chemical reaction effect on unsteady MHD flow past an impulsivelystarted oscillating inclined plate with variable temperature and mass diffusion in the presence of hall current.–Applied Research Journal, vol.2, No.5, pp.244-253.
- [21] Rajput U.S. and Gaurav Kumar (2017): Effects of hall current and chemical reaction on MHD flow throughporous medium past an oscillating inclined plate with variable temperature and mass diffusion.– European Journalof Advances in Engineering and Technology, vol.4, No.1, pp.56-63.
- [22] Khalid S., Kamal M.A., Rasheed U., Farooq S., Kussain S. and Waqas H. (2017): Buoyancy and the chemicalreaction effects on MHD flow of Casson fluids through a porous medium due to a porous shrinking sheet.– J.Appl. Environ. Biol. Sci., vol.7, No.5, pp.154-165.
- [23] Sheikh N.A., Ali F., Khan I. and Saqib M. (2018): A modern approach of Caputo Fabrizi time-fractionalderivative to MHD free convection flow of generalized second grade fluid in a porous medium.– NeuralComputing and Applications, vol.6, pp.1865-1875, https://doi.org/10.1007/s00521-016-2815-5.
- [24] Mondal H., Pal D., Chatterjee S. and Sibanda P. (2016): Thermophoresis and Soret-Dufour on MHD mixedconvection mass transfer over an inclined plate with non-uniform heat source/sink and chemical reaction.– AinShanmas Engineering Journal, vol.8, pp.2111-2121, https://doi.org/10.1016/j.asej.2016.10.015.
- [25] Venkateswarlu M., Bhaskar P. and Venkata Lakshmi D. (2019): Soret and Dufour effects onradiativehydromagnetic flow of a chemically reacting fluid over an exponentially accelerated inclined porousplate in presence of heat absorption and viscous dissipation.– J. Korean Soc. Ind. Appl. Math., vol.23, No.3,pp.157-178, http://doi.org/10.12941/jksiam.2019.23.157.
- [26] Shah N.A., Ahmed N., Elnaqeeb T. and Rashidi M.M. (2019): Magnetohydrodynamic free convection flows withthermal memory over a moving vertical plate in porous medium.– Journal of Applied and ComputationalMechanics, vol.1, No.5, pp.150-161, 10.22055/JACM.2018.25682.1285.
- [27] Ahmad M., Imran M.A., Aleem M. and Khan I. (2019): A comparative study and analysis of natural convectionflow of MHD non-Newtonian fluid in the presence of heat source and first-order chemical reaction.– Journal ofThermal Analysis and Calorimetry, vol.137, pp.1783-1796, https://doi.org/10.1007/s10973-019-08065-3.
- [28] Endalew M.F. and Nayak A. (2019): Thermal radiation and inclined magnetic field effects on MHD flow past alinearly accelerated inclined plate in a porous medium with variable temperature.– Heat Transfer Asian Research,vol.1, No.48, pp.42-61, https://doi.org/10.1002/htj.21367.
- [29] Usharani V., Selvaraj A., Constance Angela R. and Neel Armstrong A. (2020): Impact of MHD stream past anexponentially inclined vertical plate of first-order chemical response with variable mass diffusion and thermalradiation.– Mathematical Modeling and Computational Science, Advances in Intelligent Systems and Computing,vol.1292, pp.485-497, https://doi.org/10.1007/978-981-33-4389-4_45.
- [30] Riaz M.B., Atanganaa A. and Saeed S.T. (2020): MHD free convection flow over a vertical plate with ramped walltemperature and chemical reaction in view of non-singular kernel.– Wiley, pp.253-279,https://doi.org/10.1002/9781119654223.ch10.
- [31] Fatecau C., Zafar A.A., Vieru D. and Awrejcewicz J. (2020): Hydromagnetic flow over a moving plate of secondgrade fluids with time fractional derivatives having non-singular kernel.– Chaos Solitons & Fractals, vol.130,pp.109454, https://doi.org/10.1016/j.chaos.2019.109454.
- [32] Darapuneni Purna Chandra Rao., SwaminathanThiagarajan and Vajha Srinivasa Kumar (2021): Darcy-Forchheimer flow of Ree-Eyring fluid over an inclined plate with chemical reaction: a statistical approach.– HeatTransfer, vol.50, No.7, pp.7120-7138, https://doi.org/10.1002/htj.22220.
- [33] Suresh Babu R., Saravan Kumar T., Govindaraju M.V. and Mallikarjuna B. (2021): Impacts of chemical reaction,diffusion-thermo and radiation on unsteady natural convective flow past an inclined vertical plate under alignedmagnetic field.– Biointerface Research in Applied Chemistry, vol.11, No.5, pp.13252-13267,https://doi.org/10.33263/BRIAC115.1325213267.
- [34] Nazish Iftikhar., Dumitru Baleanu., Muhammad Bilal Riaz and Syed Muhammad Husnine (2021): Heat and masstransfer of natural convective flow with slanted magnetic field via fractional operators.– Journal of Applied andComputational Mechanics, vol.7, No.1, pp.189-212, DOI: 10.22055/JACM.2020.34930.2514.
- [35] Asogwa K.K., Bilal B.M., Animasaun I.L. and Mebarek-Oudina F.M. (2021): Insight into the significance oframped wall temperature and ramped surface concentration: the case of Casson fluid flow on an inclined Rigaplate with heat absorption and chemical reaction.– Nonlinear Engineering, vol.10, No.1, pp.213-230,https://doi.org/10.1515/nleng-2021-0016.
- [36] Shahzad A., Anique A., Kashif A., Hina B. and Muhammad Farooq I. (2021): Effect of non-Newtonian flow due tothermally-dependent properties over an inclined surface in the presence of chemical reaction, Brownian motionand thermophoresis.– Alexandria Engineering Journal, vol.60, pp.4931-4945,https://doi.org/10.1016/j.aej.2021.03.014.
- [37] Raghunath K., Gulle N., Ramachandra Reddy Vaddemani and Obulesu Mopuri. (2021): Unsteady MHD fluid flowpast an inclined vertical porous plate in the presence of chemical reaction with aligned magnetic field, radiation,and Soret effects.– Heat Transfer, vol.51, No.3, pp.2742-2760, https://doi.org/10.1002/htj.22423.
- [38] Sheri S.R., Peesu M. and Mamidi Narsimha R. (2022): Hall current, chemical reaction, and radiation results ontransient magnetohydrodynamic flow past an inclined plate.– FEM, vol.51, No.2, pp.1876-1899.https://doi.org/10.1002/htj.22379.
- [39] Raghunath K. and Mopuri O. (2022): Unsteady MHD oscillatory Casson fluid flow past an inclined verticalporous plate in the presence of chemical reaction with heat absortion and Soret effects.– Heat Transfer, vol.51,pp.733-752, https://doi.org/10.1002/htj.22327.
- [40] Mopuri O., Madhu R.K., Peram M.R., Ganteda C. (2022): Unsteady MHD on convective flow of a Newtonian fluidpast an inclined plate in presence of chemical reaction with radiation absorption and Dufour effects.– CFDLetters, vol.14, No.7, pp.62-76, https://doi.org/10.37934/cfdl.14.7.6276.
- [41] Mohana Ramana R., Venkateswara Raju K. and Raghunath K. (2022): Chemical reaction with aligned magneticfield effects on unsteady MHD Kuvshinski fluid flow past an inclined porous plate in the presence of radiation andSoret effects.– Heat Transfer, vol.51, No.7, pp.6431-6449, https://doi.org/10.1002/htj.22598.
- [42] Sivakumar P. and Muthucumaraswamy R. (2022): Radiation effects on parabolic flow past an infinite isothermalvertical plate with exponentially accelerated mass diffusion and chemical reaction.– Gis Science Journal , vol.9,No.1, pp.167-177.
- [43] Nagesh Gulle and Raghunath Kodi. (2022): Soret radiation and chemical reaction effect on MHD Jeffrey fluidflow past an inclined vertical plate embedded in porous medium.– Materials Today Proceedings, vol.50, No.5,pp.2218-2226, https://doi.org/10.1016/j.matpr.2021.09.480.
- [44] Nagarajan G., Sundar Raj M. and Muthucumaraswamy R. (2022): The influence of thermal expansion on flow pastan inclined accelerated sectional plate with persistent mass diffusion.– International Journal of Applied Mechanicsand Engineering, vol.27, No.4, pp.105-116, https://doi.org/10.2478/ijame-2022-0053.
- [45] Tad B.K. and Ahmed N., (2022): MHD Free convection flow across an inclined porous plate in the presence ofheat source, Soret effect, and chemical reaction affected by viscous dissipation Ohmic heating.– BiointerfaceResearch in Applied Chemistry, vol.12, No.5, pp.6280-6296, doi.org/10.33263/BRIAC125.62806296.
- [46] Bharathi V., Prakash J., Vijayaragavan R., Balaji R. and Pushparaj V. (2023): Rotation, electromagnetic field, andvariable thermal conductivity effects on free convection flow past an eternity vertical porous plate.– HeatTransfer, vol.52, No.3, pp. 2593-2617, DOI: 10.1002/htj.22797.
- [47] Sundar Raj M., Nagarajan G., Murugan V.P. and Muthucumaraswamy R. (2023): Impacts of chemical reactionson inclined isothermal vertical plate.– International Journal of Applied Mechanics and Engineering, vol.28, No.2,pp. 64-76, DOI: 10.59441/ijame/168439.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-eafd2000-0ab1-49a9-a918-a3cae72e0886