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- W2023504013 abstract "Abstract A URANS solver has been applied to the analysis of unsteady effects induced by incoming wakes in high-lift, low-Reynolds- number cascade flows. The study has been carried out using a novel, transition-sensitive, turbulence model. It is based on the coupling of additional transport equations, one for the so-called laminar kinetic energy (LKE) and one for a turbulence indicator function, with an algebraic Reynolds stress formulation based on the k−ω model. The transition modelling strategy and its coupling with the turbulence equations is conceived as an extension of the laminar kinetic energy concept for unsteady flow calculations. Three high-lift bladings (T106A, T106C, and T2), recently tested in the framework of two European research projects were considered for the present study. The cascades are characterized by separated flow transition in steady conditions. A detailed comparison between measurements and computations, in terms of blade loading distributions and cascade lapse rates will be presented and discussed. Some specific features of wake-induced transition will also be discussed. Results obtained with the proposed model show its ability to predict the major effects of passing wakes on the boundary layer development and loss characteristics of high-lift cascades operating in LP-turbine conditions." @default.
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- W2023504013 date "2014-01-01" @default.
- W2023504013 modified "2023-09-28" @default.
- W2023504013 title "URANS Prediction of the Effects of Upstream Wakes on High-lift LP Turbine Cascades Using Transition-sensitive Turbulence Closures" @default.
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- W2023504013 doi "https://doi.org/10.1016/j.egypro.2014.01.115" @default.
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