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Dive into the research topics where Andrew Leidy is active.

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Featured researches published by Andrew Leidy.


2018 Fluid Dynamics Conference | 2018

Measurements of Freestream Fluctuations in the NASA Langley 20-Inch Mach 6 Tunnel

Amanda Chou; Andrew Leidy; Rudolph A. King; Brett F. Bathel; Gregory C. Herring

An experimental campaign was conducted to measure and to characterize the freestream disturbance levels in the NASA Langley Research Center 20-Inch Mach 6 Wind Tunnel. A pitot rake was instrumented with fast pressure transducers, hot wires, and an atomic layer thermopile to quantify the fluctuation levels of pressure, mass flux, and heat flux, respectively. In conjunction with these probe-based measurements, focused laser differential interferometry was used to optically measure density fluctuations. Measurements were made at five nominal different unit Reynolds numbers ranging from 3.28–26.5×10/m. The rake was positioned at two different streamwise locations and several different roll angles to measure flow uniformity within the test section. In general, noise levels were spatially consistent within the tested region. Pitot pressure fluctuation levels ranged from 0.84% at the highest Reynolds number tested to 1.89% at the lowest Reynolds number tested. Freestream mass-flux fluctuations remained relatively constant between 1.8–2.5% of the freestream. The pressure transducers were also used to determine the dominant disturbance speed and angle of propagation. The disturbances were estimated to travel at approximately 54–81% of the freestream speed at an angle of approximately 21–44° from the freestream direction, but these measurements had a significant amount of uncertainty. A comparison to previous measurements of pressure made in 2012 and of mass flux made in 1994 show almost no change in the RMS fluctuation of these flow quantities.


55th AIAA Aerospace Sciences Meeting | 2017

Preliminary Study of the Effect of Environmental Disturbances on Hypersonic Crossflow Instability on the HIFiRE-5 Elliptic Cone

Ian T. Neel; Andrew Leidy; Rodney D. W. Bowersox


55th AIAA Aerospace Sciences Meeting | 2017

Influence of Perturbations on 3-D Hypersonic Shock Laminar Boundary Interactions

Andrew Leidy; Ian T. Neel; Rodney D. W. Bowersox; John D. Schmisseur


2018 AIAA Aerospace Sciences Meeting | 2018

Influence of Environmental Disturbances on Hypersonic Crossflow Instability on the HIFiRE-5 Elliptic Cone

Ian T. Neel; Andrew Leidy; Nathan R. Tichenor; Rodney D. W. Bowersox


8th AIAA Flow Control Conference | 2016

Hypersonic Boundary Layer with Streamline Curvature-Driven Adverse Pressure Gradient

Ian T. Neel; Andrew Leidy; Rodney D. W. Bowersox; Nathan R. Tichenor


46th AIAA Fluid Dynamics Conference | 2016

Characterizing the Transient Growth Mechanism on a Hypersonic Blunt Body at a High Angle of Attack

Eli Reshotko; Andrew Leidy; Farhan Siddiqui; Rodney D. W. Bowersox


22nd AIAA International Space Planes and Hypersonics Systems and Technologies Conference | 2018

Characterization of Environmental Disturbances on Hypersonic Crossflow Instability on the HIFiRE-5 Elliptic Cone

Ian T. Neel; Andrew Leidy; Nathan R. Tichenor; Rodney D. W. Bowersox


22nd AIAA International Space Planes and Hypersonics Systems and Technologies Conference | 2018

Cylinder-Induced Hypersonic Transitional Shock Wave Boundary Layer Interactions: Pressure Fluctuations and Thermal Loading

Andrew Leidy; Ian T. Neel; Nathan R. Tichenor; Rodney D. W. Bowersox; John D. Schmisseur


2018 Fluid Dynamics Conference | 2018

High-Speed Schlieren Imaging and Hot-wire Characterization of Cylinder-Induced Hypersonic Shock Boundary Layer Interactions

Andrew Leidy; Ian T. Neel; Nathan R. Tichenor; Rodney D. W. Bowersox; John D. Schmisseur


2018 AIAA Aerospace Sciences Meeting | 2018

Experimental Investigations of Roughness Effects on Transition on Blunt Spherical Capsule Shapes

Rolf Radespiel; Syed Raza Christopher Ali; Rodney D. W. Bowersox; Andrew Leidy; Hideyuki Tanno; Lindsay C. Kirk; Eli Reshotko

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Eli Reshotko

Case Western Reserve University

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Amanda Chou

Langley Research Center

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