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February 2, 2026Chemical Engineering & Technology11 citations

Off‐Centered Stagnation Point, Particle Movement, and Accumulation in a Chemically Reactive Fluid

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VBVishwanatha R. BanakarNRNaveen Kumar RPKPrateek Kattimani

Key Points

  • This research aims to investigate the interactions between off-centered stagnation flow and particle movement in chemically reactive fluids.
  • Analyzed the effects of thermophoretic particle deposition on off-centered stagnation point flow using a rotating disk.
  • Applied activation energy considerations to study fluid behavior.
  • Utilized artificial neural networks to estimate heat transmission rates based on multiple variables.
  • Increased magnetic field and permeability reduced the momentum field in the fluid.
  • Thermophoretic coefficient increases led to diminished concentration profiles.
  • Findings highlight the combined influence of asymmetry on heat and mass transfer.

Abstract

ABSTRACT The off‐centered stagnation point flow (S‐PF) phenomenon is important in many technical domains where flow patterns affect efficiency and performance. In these systems, the interplay between asymmetric flow and disk rotation influences the temperature boundary layer and concentration gradients, either augmenting or impeding heat and mass transfer rates. Earliest studies focused on stagnation flows or considered only a few thermal or chemical effects, leaving the combined influence of off‐centered asymmetry. Hence, this work fills that gap by examining the significance of thermophoretic particle deposition on the off‐centered S‐PF of fluid via a rotating disk subjected to activation energy. Moreover, the artificial neural network is used to estimate the heat transmission rate as a function of various factors. Increased magnetic field and permeability parameters decrease the momentum field. The concentration profile decreases as the thermophoretic coefficient increases.

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Cite This Study

Banakar et al. (2026) studied this question.

synapsesocial.com/papers/6980ffd6c1c9540dea812986https://doi.org/10.1002/ceat.70166
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