Inicio  /  Acoustics  /  Vol: 2 Par: 3 (2020)  /  Artículo
ARTÍCULO
TITULO

ACAT1 Benchmark of RANS-Informed Analytical Methods for Fan Broadband Noise Prediction?Part I?Influence of the RANS Simulation

Carolin Kissner    
Sébastien Guérin    
Pascal Seeler    
Mattias Billson    
Paruchuri Chaitanya    
Pedro Carrasco Laraña    
Hélène de Laborderie    
Benjamin François    
Katharina Lefarth    
Danny Lewis    
Gonzalo Montero Villar and Thomas Nodé-Langlois    

Resumen

A benchmark of Reynolds-Averaged Navier-Stokes (RANS)-informed analytical methods, which are attractive for predicting fan broadband noise, was conducted within the framework of the European project TurboNoiseBB. This paper discusses the first part of the benchmark, which investigates the influence of the RANS inputs. Its companion paper focuses on the influence of the applied acoustic models on predicted fan broadband noise levels. While similar benchmarking activities were conducted in the past, this benchmark is unique due to its large and diverse data set involving members from more than ten institutions. In this work, the authors analyze RANS solutions performed at approach conditions for the ACAT1 fan. The RANS solutions were obtained using different CFD codes, mesh resolutions, and computational settings. The flow, turbulence, and resulting fan broadband noise predictions are analyzed to pinpoint critical influencing parameters related to the RANS inputs. Experimental data are used for comparison. It is shown that when turbomachinery experts perform RANS simulations using the same geometry and the same operating conditions, the most crucial choices in terms of predicted fan broadband noise are the type of turbulence model and applied turbulence model extensions. Chosen mesh resolutions, CFD solvers, and other computational settings are less critical.

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