Part of the Aerodynamics and Fluid Mechanics Commons

Works by Phillip M. Ligrani in Aerodynamics and Fluid Mechanics

2022

Effects of Pressure Side Film Cooling Hole Placement and Condition on Surface Heat Transfer Characteristics of a Transonic Turbine Blade Tip, Hallie Collopy, Phillip M. Ligrani, Hongzhou Xu, Michael Fox
PRC-Affiliated Research

Dusting Hole Film Cooling Heat Transfer on a Transonic Turbine Blade Tip, Ward Manneschmidt, Hallie Collopy, Phillip M. Ligrani, Kyle Goethals, Matthew Cox, Hongzhou Xu, Michael Fox
PRC-Affiliated Research

Flow and heat transfer in swirl tubes — A review, Florian Seibold, Phillip M. Ligrani, Bernhard Weigand
PRC-Affiliated Research

Flow structure and surface heat transfer from numerical predictions for a double wall effusion plate with impingement jet array cooling, Hwabhin Kwon, Phillip M. Ligrani, Sneha Reddy Vanga, Heesung Park
PRC-Affiliated Research

Experimental study of turbulent flow heat transfer and pressure loss over surfaces with dense micro-depth dimples under viscous sublayer, Peng Zhang, Yu Rao, Phillip M. Ligrani
PRC-Affiliated Research

2021

Spatial Coherence of Low-Frequency Unsteadiness Associated With a Normal Shock Wave, Matthew Cox, Phillip M. Ligrani, Kyle Goethals
PRC-Affiliated Research

Spatial Coherence of Low-Frequency Unsteadiness Associated With a Normal Shock Wave, Matthew Cox, Phillip M. Ligrani, Kyle Goethals
PRC-Affiliated Research

2019

Analysis of shock wave unsteadiness using space and time correlations applied to shadowgraph flow visualization data, Shannon Marko, Phillip M. Ligrani
PRC-Affiliated Research

Analysis of shock wave unsteadiness using space and time correlations applied to shadowgraph flow visualization data, Shannon Marko, Phillip M. Ligrani
PRC-Affiliated Research

Analysis of shock wave unsteadiness using space and time correlations applied to shadowgraph flow visualization data, Shannon Marko, Phillip M. Ligrani
PRC-Affiliated Research