The paper introduces four behavioral parameters for phononic materials—effective stiffness, truncation resonance frequency, dynamic displacement amplitude, and unit cell mass—that connect to distinct behaviors in the lift coefficient during fluid-structure interaction with laminar flow over a flat 2
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2025 1verdicts
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A Framework to Systematically Study the Nonlinear Fluid-Structure Interaction of Phononic Materials with Aerodynamic Flows
The paper introduces four behavioral parameters for phononic materials—effective stiffness, truncation resonance frequency, dynamic displacement amplitude, and unit cell mass—that connect to distinct behaviors in the lift coefficient during fluid-structure interaction with laminar flow over a flat 2