A fully one-sided diffuse-interface immersed boundary method coupled with an explicit wall model and a turbulent shear-stress tensor model achieves accurate WMLES in channel flows and over a NACA23012 airfoil.
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3 Pith papers cite this work. Polarity classification is still indexing.
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physics.flu-dyn 3years
2026 3representative citing papers
A target-value reconstruction strategy corrects the inward displacement of the effective boundary in fully one-sided diffuse-interface immersed boundary methods, reducing no-slip and isothermal errors by 77% and 85%.
A new parallel adaptive lattice Boltzmann-immersed boundary framework with a host-cell searching algorithm is presented and validated for simulating bubble-particle collisions in quiescent and turbulent flows.
citing papers explorer
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A fully one-sided diffuse-interface immersed boundary method for wall-modeled large-eddy simulation
A fully one-sided diffuse-interface immersed boundary method coupled with an explicit wall model and a turbulent shear-stress tensor model achieves accurate WMLES in channel flows and over a NACA23012 airfoil.
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An improved fully one-sided diffuse-interface immersed boundary method with target-value reconstruction for compressible flows
A target-value reconstruction strategy corrects the inward displacement of the effective boundary in fully one-sided diffuse-interface immersed boundary methods, reducing no-slip and isothermal errors by 77% and 85%.
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Simulations of Particle-Laden Flows with Large Dispersed-Phase Size Disparities Using Highly Scalable Parallel Adaptive Methods
A new parallel adaptive lattice Boltzmann-immersed boundary framework with a host-cell searching algorithm is presented and validated for simulating bubble-particle collisions in quiescent and turbulent flows.