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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
Sensitive pertinent parametric analysis for magnetohydrodynamic mixed convective flow of hybrid nanofluid with Joule heating
ABSTRACT The current analysis involves the combined convection of aluminium oxide (Al2O3), silver (Ag) hybrid non-magnetic particles, and base fluid water (H2O) flowing over a solid horizontal circular cylinder with magnetohydrodynamic and Joule heating effects. The system of partial differential equations governing flow and heat transfer in a hybrid nanofluid has been derived.
Unlocking potential for plant design and operations with co-simulation
Home > Industry > Energies and Chemicals > Unlocking potential for plant design and operations with co-simulation Energies and Chemicals May 22, 2024 4 min read | This audio was created using Microsoft Azure Speech Services It’s becoming clear to most in hard-to-abate industries that electrifying combustion-based energy systems offers new opportunities to increase sustainability and decarbonize operations and processes.
Heat transfer analysis in a curvilinear flow of hybrid nanoliquid across a curved oscillatory stretched surface with nonlinear thermal radiation
Abstract The primary objective of the study is to examine the influence of the nonlinear thermal radiation on the flow of the hydromagnetic hybrid nanoliquid across an oscillating stretched curved surface. In addition, the impacts of velocity and thermal slip conditions are also considered. Curvilinear coordinate scheme is adopted to construct the mathematical form of the flow model in terms of nonlinear partial differential equations.
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