Prediction of Transient Pressure Fluctuations within a Low-Pressure Turbine Cascade Using a Lanczos-Filtered Harmonic Balance Method

Unsteady pressure fluctuations measured by fast-response pressure transducers mounted in a low-pressure turbine cascade are compared to unsteady simulation results. Three differing simulation approaches are considered, one time-integration method and two harmonic balance methods either resolving or...

Full description

Saved in:
Bibliographic Details
Published inInternational journal of turbomachinery, propulsion and power Vol. 6; no. 3; p. 25
Main Authors Heners, Jan Philipp, Stotz, Stephan, Krosse, Annette, Korte, Detlef, Beck, Maximilian, Vogt, Damian
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 2021
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Unsteady pressure fluctuations measured by fast-response pressure transducers mounted in a low-pressure turbine cascade are compared to unsteady simulation results. Three differing simulation approaches are considered, one time-integration method and two harmonic balance methods either resolving or averaging the time-dependent components within the turbulence model. The observations are used to evaluate the capability of the harmonic balance solver to predict the transient pressure fluctuations acting on the investigated stator surface. Wakes of an upstream rotor are generated by moving cylindrical bars at a prescribed rotational speed that refers to a frequency of f∼500 Hz. The excitation at the rear part of the suction side is essentially driven by the presence of a separation bubble and is therefore highly dependent on the unsteady behavior of turbulence. In order to increase the stability of the investigated harmonic balance solver, a developed Lanczos-type filter method is applied if the turbulence model is considered in an unsteady fashion.
ISSN:2504-186X
2504-186X
DOI:10.3390/ijtpp6030025