Abstract

Variation in the density of the solid particles suspended in the fluid must have an impact on its flow and behavior. This study deals with the inhomogeneous behavior of the solid grains suspended in the fluid. The number density of the dust grains is taken as a variable. The coupled equations for solid granules and the fluid under long wavelength have been modeled. Streamline transformations have been invoked and results are discussed through graphs. Results show decay in the velocity of dust and fluid is observed as the slip parameter enhances. The trapped bolus enlarges in the lower part of the passage, with the increase in number density of dust particles.

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