The flow between two parallel plates driven by a pulsatile pressure gradient was studied analytically with a second-order velocity expansion. The resulting velocity distribution was compared with a numerical solution of the momentum equation to validate the analytical solution, with excellent agreement between the two approaches. From the velocity distribution, the analytical computation of the discharge, wall shear stress, discharge, and dispersion enhancements were also computed. The influence on the solution of the dimensionless governing parameters and of the value of the rheological index was discussed.

Pulsating flow of an Ostwald-de Waele fluid between parallel plates / Gonzalez, R.; Tamburrino, A.; Vacca, A.; Iervolino, M.. - In: WATER. - ISSN 2073-4441. - 12:4(2020), p. 932. [10.3390/W12040932]

Pulsating flow of an Ostwald-de Waele fluid between parallel plates

Vacca A.;
2020

Abstract

The flow between two parallel plates driven by a pulsatile pressure gradient was studied analytically with a second-order velocity expansion. The resulting velocity distribution was compared with a numerical solution of the momentum equation to validate the analytical solution, with excellent agreement between the two approaches. From the velocity distribution, the analytical computation of the discharge, wall shear stress, discharge, and dispersion enhancements were also computed. The influence on the solution of the dimensionless governing parameters and of the value of the rheological index was discussed.
2020
Pulsating flow of an Ostwald-de Waele fluid between parallel plates / Gonzalez, R.; Tamburrino, A.; Vacca, A.; Iervolino, M.. - In: WATER. - ISSN 2073-4441. - 12:4(2020), p. 932. [10.3390/W12040932]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/807660
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