A rotating cooling system with a 180 deg turn is investigated experimentally using the 2C PIV technique to measure the flow inside. This cooling configuration consists of two ducts of arbitrary cross-sections representing a two-pass front part of an idealized but nevertheless engine relevant turbine blade cooling design. The system has been investigated with ribbed walls in both passages for cooling enhancement as well as with smooth walls as a reference version in order to identify the effects induced by ribs. The rib orientation on the walls is 45 deg. With a rib height of 0.1 of hydraulic duct diameter and a pitch of 10 times rib height, a representative well-established rib lay-out was selected. This paper presents measurements of the ...
[[abstract]]Laser Doppler velocimetry (LDV) measurements are presented of turbulent flow in a two-pa...
The flow field inside a rotating smooth radial channel with a triangular shaped cross section is inv...
ii Copyright c © 2013 By Guy Austin Flynt All Rights Reserved. iii The effects of rotation and Reyno...
In a 2-pass cooling system the pressure driven air flow dis-tribution is investigated experimentally...
The flow field characteristics of a two-pass cooling system with an engine-similar lay-out have been...
The effect of rotation on flow in a gas turbine blade cooling duct model is investigated experimenta...
Numerical investigations of a two-pass internal cooling channel with engine-similar cross-sections w...
In the present study, a two-pass internal cooling channel with engine-similar cross-sections was inv...
The effect of rotation on flow in a gas turbine blade cooling duct model is investigated ex-periment...
Purpose: The study aims to focus on rotation effects on a ribbed channel of gas turbine blades for i...
This paper presents our latest efforts in an ongoing program to improve the understanding of aerodyn...
A study of flow in a stationary model of a two-pass internal coolant passage is presented which focu...
The internal cooling of turbine blades is an important part of overall blade cooling that is necessa...
International audienceThis paper investigates, both experimentally and computationally, the heat tra...
A detailed aerothermal characterization of an advanced leading edge cooling system has been performe...
[[abstract]]Laser Doppler velocimetry (LDV) measurements are presented of turbulent flow in a two-pa...
The flow field inside a rotating smooth radial channel with a triangular shaped cross section is inv...
ii Copyright c © 2013 By Guy Austin Flynt All Rights Reserved. iii The effects of rotation and Reyno...
In a 2-pass cooling system the pressure driven air flow dis-tribution is investigated experimentally...
The flow field characteristics of a two-pass cooling system with an engine-similar lay-out have been...
The effect of rotation on flow in a gas turbine blade cooling duct model is investigated experimenta...
Numerical investigations of a two-pass internal cooling channel with engine-similar cross-sections w...
In the present study, a two-pass internal cooling channel with engine-similar cross-sections was inv...
The effect of rotation on flow in a gas turbine blade cooling duct model is investigated ex-periment...
Purpose: The study aims to focus on rotation effects on a ribbed channel of gas turbine blades for i...
This paper presents our latest efforts in an ongoing program to improve the understanding of aerodyn...
A study of flow in a stationary model of a two-pass internal coolant passage is presented which focu...
The internal cooling of turbine blades is an important part of overall blade cooling that is necessa...
International audienceThis paper investigates, both experimentally and computationally, the heat tra...
A detailed aerothermal characterization of an advanced leading edge cooling system has been performe...
[[abstract]]Laser Doppler velocimetry (LDV) measurements are presented of turbulent flow in a two-pa...
The flow field inside a rotating smooth radial channel with a triangular shaped cross section is inv...
ii Copyright c © 2013 By Guy Austin Flynt All Rights Reserved. iii The effects of rotation and Reyno...