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Kent State University · School of Engineering

Hahn Lab

The Hahn Lab investigates unsteady compressible and reacting flow physics, studies the effects of active and passive flow control, and develops experimental diagnostics and reduced-order models.

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Stitched schlieren visualization of an internal shock system.

Research

Normalized cross-correlation curves from unsteady pressure measurements.

Unsteady Aerodynamics

Shock system dynamics, flow separation, and shock-combustion coupling.

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Plasma filaments interacting with a shock train leading edge.

Flow Control

Active and passive manipulation of shock systems, boundary layers, and reacting flows.

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Measured temperature field in a reacting-flow configuration.

Optical Diagnostics

Schlieren methods, mid-infrared imaging, and event-based sensors for quantitative 2D measurements.

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Computed Mach-number distribution at a rectangular nozzle outlet.

Modeling and Computation

Physics-based and reduced-order models for prediction, interpretation, and control.

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Selected Publications

L. C. Hahn, P. A. Lax, J. D. Szczudlak, S. B. Leonov, and S. C. Morris. (2026). Unsteady pseudoshock interaction with fully passive bleed slots. Aerospace Science and Technology, 177, 112261. https://doi.org/10.1016/j.ast.2026.112261.
L. C. Hahn, P. A. Lax, S. C. Morris, S. B. Leonov, T. M. Ombrello, E. L. Braun, and B. J. McGann. (2026). Control of shock train structure in isolator by electrical discharge. AIAA Journal, 64, (5), 2457–2469. https://doi.org/10.2514/1.J065811.
L. C. Hahn, P. A. Lax, S. C. Morris, and S. B. Leonov. (2024). Interaction of the shock train leading edge and filamentary plasma in a supersonic duct. Fluids, 9, (12), 291. https://doi.org/10.3390/fluids9120291.

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School of Engineering · Kent State University