Litcius/Paper detail

Significance of Synthetic Cilia and Arrhenius Energy on Double Diffusive Stream of Radiated Hybrid Nanofluid in Microfluidic Pump under Ohmic Heating: An Entropic Analysis

Najma Saleem, Sufian Munawar

2021Coatings29 citationsDOIOpen Access PDF

Abstract

This study investigates the thermal aspects of magnetohydrodynamic double diffusive flow of a radiated Cu-CuO/Casson hybrid nano-liquid through a microfluidic pump in the presence of electroosmosis effects. Shared effects of the Arrhenius activation energy and the Joule heating on the intended liquid transport are also incorporated. The inner wall of the pump is covered with electrically charged fabricated cilia mat that facilitates flow actuation and micro-mixing process. The governing equations for the proposed problem are simplified by utilizing the Debye-Hückel and lubrication approximations. The numerical solutions are calculated with the aid of shooting technique. The analysis reports that the substantial effects of electroosmosis contribute an important role in cooling process. Existence of electric double layer stimulates an escalation in liquid stream in the vicinity of the pump surface. The Arrhenius energy input strengthens the mass dispersion and regulates the thermal treatment. The proposed geometry delivers a deep perception that fabricated cilia in electroosmotic pumps are potential pharmaceutical micromixers for an effective flow and minimum entropy generation rate.

Topics & Concepts

Joule heatingMicrofluidicsMagnetohydrodynamic driveMechanicsMaterials scienceMicromixerThermal energyThermal diffusivityThermalArrhenius equationNanofluidThermodynamicsChemistryActivation energyNanotechnologyPlasmaPhysicsMagnetohydrodynamicsComposite materialOrganic chemistryQuantum mechanicsNanofluid Flow and Heat TransferMicrofluidic and Capillary Electrophoresis ApplicationsHeat Transfer and Optimization