AbstractIn this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on MHD free convective heat and mass transfer flow of a nanofluid bounded by a semi-infinite flat plate are analyzed. The plate is moved with a constant velocity U0, temperature and the concentration are assumed to be fluctuating with time harmonically from a constant mean at the plate. The analytical solutions of the boundary layer equations are assumed of oscillatory type and are solved by using the small perturbation technique. Two types of nanofluids namely Cu-water nanofluid and TiO2-water nanofluid are used. The effects of various fluid flow parameters are discussed through graphs and tables. It is observed that the diffusion thermo param...
A theoretical study is conducted to investigate the thermal radiation effect on boundary layer flow ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The flow problem presented in the paper is boundary-layer flow of nanofluids over a moving surface i...
AbstractIn this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on...
In this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on MHD fre...
AbstractThe problem of conjugate effects of heat and mass transfer over a moving/stationary vertical...
In this paper, we analyzed the effects of thermal radiation, chemical reaction, heat generation/abso...
In this study, we analyse the effects of thermal radiation on unsteady natural convective flow of a ...
In this study we discussed the influence of radiation and chemical reaction on MHD thermosolutal nan...
In this chapter, the magnetohydrodynamic effects on heat transfer and thermal radiation at a stagnat...
889-897The main purpose of this article is to study the effect of MHD, internal heat generation, the...
The steady two-dimensional magnetohydrodynamics stagnation point flow of a nanofluid with radiation ...
We analysed the flow and heat transfer characteristics of a nanofluid in porous medium bounded by a ...
In this study, we analyze the effects of thermal radiation and magnetic field on unsteady natural co...
We investigate the effect of thermal radiation and oscillatory wall velocity on unsteady convective ...
A theoretical study is conducted to investigate the thermal radiation effect on boundary layer flow ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The flow problem presented in the paper is boundary-layer flow of nanofluids over a moving surface i...
AbstractIn this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on...
In this paper the effects of Diffusion thermo, radiation absorption and chemical reaction on MHD fre...
AbstractThe problem of conjugate effects of heat and mass transfer over a moving/stationary vertical...
In this paper, we analyzed the effects of thermal radiation, chemical reaction, heat generation/abso...
In this study, we analyse the effects of thermal radiation on unsteady natural convective flow of a ...
In this study we discussed the influence of radiation and chemical reaction on MHD thermosolutal nan...
In this chapter, the magnetohydrodynamic effects on heat transfer and thermal radiation at a stagnat...
889-897The main purpose of this article is to study the effect of MHD, internal heat generation, the...
The steady two-dimensional magnetohydrodynamics stagnation point flow of a nanofluid with radiation ...
We analysed the flow and heat transfer characteristics of a nanofluid in porous medium bounded by a ...
In this study, we analyze the effects of thermal radiation and magnetic field on unsteady natural co...
We investigate the effect of thermal radiation and oscillatory wall velocity on unsteady convective ...
A theoretical study is conducted to investigate the thermal radiation effect on boundary layer flow ...
In this study we analyzed the influence of radiation and chemical reaction on MHD nanofluid flow ove...
The flow problem presented in the paper is boundary-layer flow of nanofluids over a moving surface i...