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The potential applications involve the flow control of transonic and low-speed vehicles, scramjet hypersonic propulsion systems, combustions, microbubble dynamics, cavitation, aerodynamics, etc. Due to the wide-range flow length-scales including singularities (e.g. shockwaves), the main research methods rely on the high-fidelity Direct Numerical Simulation (DNS) and Large-eddy Simulation (LES). In order to reproduce these sophisticated fluid phenomena with the modern supercomputers, advanced turbulence models, e.g., subgrid-scale (SGS) model and wall model, will be developed as well as state-of-the-art fundamental numerical methods which include but not limited to high-order numerical schemes for hyperbolic conservation laws, interface-tracking algorithms, high-quality mesh generation technologies, and robust multi-physics parallel software.
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INTERNATIONAL JOURNAL OF MULTIPHASE FLOW (2024): 104732
Journal of Fluid Mechanics (2024)
Haohan Huang,Lin Fu
Computer Methods in Applied Mechanics and Engineering (2024): 116795
International Journal of Heat and Fluid Flow (2024): 109331
Physical Review Fluidsno. 3 (2024)
INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW (2023): 109136-109136
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Nucleation and Atmospheric Aerosols (2023)
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