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- W2955528944 abstract "The present article aims to investigate the entropy impacts on boundary layer flow and heat transmission of a hydromagnetic viscous fluid past a contracting sheet. Similarity transmutations are utilized to transform the momentum and energy equations into ordinary differential equations. The expressions of velocity (V) and temperature (T) for different parameters are obtained to compute local entropy generation number (Ns) and Bejan number (Be). A profound study is performed to attain the exact solution for relevant parameters, and the outcomes are elucidated graphically. The solution is presented in the form of an incomplete Gamma function. Heat transfer entropy effects are dominant at contracting sheet surface while entropy effects due to fluid friction and magnetic field are significant in boundary layer region. The outcomes of current study illustrate that the optimal design and the efficient performance of a thermally designed system can be improved by selecting the appropriate values of the flow parameters. It will enable scientists and engineers to minimize the impacts of entropy generation and to construct an efficient and productive thermodynamical system." @default.
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- W2955528944 date "2019-06-27" @default.
- W2955528944 modified "2023-09-23" @default.
- W2955528944 title "Study of entropy generation impacts on magneto-hydrodynamic flow and heat transmission over a contracting surface" @default.
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- W2955528944 doi "https://doi.org/10.1007/s42452-019-0828-2" @default.
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