Follow
David Cadrecha
David Cadrecha
ITP Aero
Verified email at itpaero.com
Title
Cited by
Cited by
Year
Shorten the intermediate turbine duct length by applying an integrated concept
A Marn, E Göttlich, D Cadrecha, HP Pirker
502009
High stage loading low pressure turbines: a new proposal for an efficiency chart
R Va´ squez, D Cadrecha, D Torre
Turbo Expo: Power for Land, Sea, and Air 36894, 211-222, 2003
382003
Design, performance evaluation and endwall flow structure investigation of an S-shaped intermediate turbine duct
LU Axelsson, CA Osso, D Cadrecha, TG Johansson
Turbo Expo: Power for Land, Sea, and Air 47950, 693-701, 2007
362007
The influence of Reynolds number, Mach number and incidence effects on loss production in low pressure turbine airfoils
R Va´ zquez, A Antoranz, D Cadrecha, L Arman˜ anzas
Turbo Expo: Power for Land, Sea, and Air 4241, 949-960, 2006
252006
Shorten the intermediate turbine duct length by applying an integrated concept
A Marn, E Go¨ ttlich, D Cadrecha, HP Pirker
Turbo Expo: Power for Land, Sea, and Air 43161, 1041-1051, 2008
212008
Numerical and experimental investigation of the Reynolds number and reduced frequency effects on low-pressure turbine airfoils
M Bolinches-Gisbert, DC Robles, R Corral, F Gisbert
Journal of Turbomachinery 143 (2), 021004, 2021
122021
Low Reynolds number response of high efficiency, intermediate pressure compressor profiles
BJ Lázaro, E González, D Cadrecha, A Antoranz, J Parra
Turbo Expo: Power for Land, Sea, and Air 50787, V02AT39A008, 2017
112017
Robust method to solve meanline equations for choked flows
D Cadrecha, JM Chaquet, R Corral, VP Timon
Turbo Expo: Power for Land, Sea, and Air 51012, V02CT42A005, 2018
92018
High stage loading low pressure turbine
R Vázquez, D Cadrecha, D Torre, R Vázquez
A new proposal for an efficiency chart. ASME Pap, GT2003-38374, 2003
92003
Profile loss model for low-pressure turbines
D Cadrecha, R Vazquez
9th European Conference on Turbomachinery, Fluid Dynamics and Thermodynamics …, 2011
82011
Trailing edge thickness impact on the profile losses of highly loaded low pressure turbines blades
J Parra, D Cadrecha, E González, B Lázaro
Turbo Expo: Power for Land, Sea, and Air 49705, V02BT38A055, 2016
72016
Low Pressure Turbine with High Stage Loading
R Vázquez, D Cadrecha, D Torre, M Morales, T Crespo
ISABE Paper 1060, 2001
52001
The effect of turning angle on the loss generation of LP turbines
D Torre, G Garcia-Valdecasas, D Cadrecha
Turbo Expo: Power for Land, Sea, and Air 50787, V02AT40A029, 2017
32017
Two-Dimensional Airfoil Shape Optimization Using Highly Differentiable Splines and Evolution Strategies
D Cadrecha, JM Chaquet, R Corral, G Pastor
Turbo Expo: Power for Land, Sea, and Air 49712, V02CT45A001, 2016
12016
Fernando Gisbert
D Cadrecha, P Apoita
Journal of Turbomachinery 146, 091001-1, 2024
2024
Prediction of the Influence of the Inlet End-Wall Boundary Layer on the Secondary Flow of a Low Pressure Turbine Airfoil Using RANS and Large-Eddy Simulations
F Gisbert, D Cadrecha, P Apoita
Journal of Turbomachinery, 1-12, 2024
2024
Prediction of the Influence of the Inlet End-Wall Boundary Layer on the Secondary Flow of a Low Pressure Turbine Airfoil Using RANS and Large-Eddy Simulations
F Gisbert, D Cadrecha, P Apoita
Turbo Expo: Power for Land, Sea, and Air 87103, V13CT32A033, 2023
2023
Adapting Artificial Neural Networks Training Algorithms to Adjoint-Based Aerodynamic Shape Optimization
F Gisbert, D Cadrecha, J Quintanal, A Sotillo, J Pueblas, A Serrano, ...
Turbo Expo: Power for Land, Sea, and Air 87110, V13DT34A021, 2023
2023
Accuracy of Quasi-direct Numerical Simulation for Predicting LPT Losses
M Bolinches, R Corral, D Cadrecha, F Gisber
14 th European Conference on Turbomachinery Fluid dynamics & Thermodynamics, 2021
2021
Numerical and Experimental Investigation of the Reynolds Number and Reduced Frequency Effects on Low-Pressure Turbine Airfoils
M Bolinches-Gisbert, D Cadrecha, R Corral, F Gisbert
Turbo Expo: Power for Land, Sea, and Air 84102, V02ET41A003, 2020
2020
The system can't perform the operation now. Try again later.
Articles 1–20