An Assessment of Comprehensive Code Prediction State-Of-The-Art Using the HART II International Workshop Data

VFS-F68-000058

5/1/2012

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Abstract
Content

Despite significant advancements in computational fluid dynamics and their coupling with computa- tional structural dynamics (= CSD, or comprehensive codes) for rotorcraft applications, CSD codes with their engineering level of modeling the rotor blade dynamics, the unsteady sectional aerodynam- ics and the vortical wake are still the workhorse for the majority of applications. This is especially true when a large number of parameter variations is to be performed and their impact on performance, structural loads, vibration and noise is to be judged in an approximate yet reliable and as accurate as possible manner. In this paper, the capabilities of such codes are evaluated using the HART II International Workshop data base, focusing on a typical descent operating condition which includes strong blade-vortex interactions. Three cases are of interest: the baseline case and two cases with 3/rev higher harmonic blade root pitch control (HHC) with different control phases employed. One setting is for minimum blade-vortex interaction noise radiation and the other one for minimum vibration generation. The challenge is to correctly predict the wake physics - especially for the cases with HHC - and all the dynamics, aerodynamics, modifications of the wake structure and the aero-acoustics coming with it. It is observed that the comprehensive codes used today have a surprisingly good predictive capability when they appropriately account for all of the physics involved. The minimum requirements to obtain these results are outlined.

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DOI
https://doi.org/10.4050/VFS-F68-000058
Citation
van der Wall, B., Lim, J., Smith, M., Jung, S., et al., "An Assessment of Comprehensive Code Prediction State-Of-The-Art Using the HART II International Workshop Data," Forum 68 - Ft. Worth, TX 2012, Ft. Worth, TX, May 1, 2012, https://doi.org/10.4050/VFS-F68-000058.
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Publisher
Published
5/1/2012
Product Code
VFS-F68-000058
Content Type
Technical Paper
Language
English