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Variable chemical process and radiative nonlinear impact on magnetohydrodynamics Cross nanofluid: An approach toward controlling global warming
Authors:Adil Darvesh  Gilder C. Altamirano  Manuel Sánchez-Chero  William R. M. Zamora  Franklin G. Campos  Tanveer Sajid  Assad Ayub
Affiliation:1. Department of Mathematics, Hazara University, Mansehra, Pakistan;2. Departamento Academico de Estudios Generales, Universidad Nacional Autónoma de Chota, Cajamarca, Perú;3. Facultad de Ingeniería de Industrias Alimentarias y Biotecnología, Universidad Nacional de Frontera, Piura, Sullana, Peru;4. Universidad Nacional de Frontera, Piura, Sullana, Peru;5. Department of Mathematics and Statistics, Capital University of Science and Technology, Islamabad, Pakistan
Abstract:Solar energy is the basic source of renewable energy, and it is being used for controlling global pollution/warming. As the Cross nanofluid is very useful for cooling solar devices, in this paper analysis of the global warming effect is investigated by incorporating the nonlinear thermal radiation over the exponentially extendable surface because it plays a major role related to solar energy absorption of nanofluid. Furthermore, the mathematical modeling of Cross nanofluid involving magnetic effect and diffusion is discussed by using the fact of chemical reaction. Chemical reaction finds astonishing applications in pollution studies, chemical processing equipment, and polymer production. As a result of this study, it is noticed that more magnetized conducting fluid controls the motion of fluids for both cases of shear thinning and shear thickening. Brownian motion parameter Nb affects the rate of the random motion of nanoparticles. Increased Nb temperature also increases due to these random movements of nanoparticles. That is the reason why pollutant nanoparticles spread in air as a result of global warming increase.
Keywords:Bvp4c  Cross nanofluid  stretching sheet  variable chemical reaction
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