@inproceedings{bff2d4e30a904687b97c76c8f24237a8,
title = "Conjugate heat transfer modeling of convective cooling blades",
abstract = "Presented paper deals with a description of the in-house CFD code adapted for conjugate heat transfer (CHT) modeling. The brief description of numerical method and validation process was presented. The calculations for gas turbine and steam turbine cooling systems were considered as well. The in-house uRANS solver with a two-equation turbulence model (k-ω, Wilcox) was used, which can predict both the ideal gas and real gas flows. The system of governing equations for the fluid flow is completed by the Fourier equation for the solid. The governing equations for fluid and solid were solved by an integral algorithm using finite volume method with MUSCL technique. In the CHT modeling the transition was taken into account. For validation of presented inhouse CFD code the experimental research results of hot gas flow were used. The specific problems for CHT modeling for steam are stressed.",
author = "W. Wr{\'o}blewski and S. Dykas and K. Bochon and T. Chmielniak",
note = "Publisher Copyright: Copyright {\textcopyright} 2009 Local Organising Committee.; 8th European Conference on Turbomachinery: Fluid Dynamics and Thermodynamics, ETC 2009 ; Conference date: 23-03-2009 Through 27-03-2009",
year = "2009",
language = "English",
series = "8th European Conference on Turbomachinery: Fluid Dynamics and Thermodynamics, ETC 2009 - Conference Proceedings",
publisher = "Verlag der Technischen Universitat Graz",
pages = "651--660",
editor = "F. Heitmeir and F. Martelli and M. Manna",
booktitle = "8th European Conference on Turbomachinery",
}