Validation of comprehensive dynamics analysis predictions for a rotor in descending flight

Author:

Park Jae S.,Jung Sung N.,You Young H.,Park Soo H.,Yu Yung H.

Abstract

PurposeThe purpose of this paper is to evaluate the prediction capability of comprehensive structural dynamics (CSD) analysis codes for the higher harmonic control aeroacoustic rotor test (HART) II data.Design/methodology/approachA nonlinear flexible multibody dynamics analysis code DYMORE, as well as the comprehensive analytical model of rotorcraft aerodynamics and dynamics (CAMRAD) II, are used to perform the task. The predicted results on rotating free vibration analysis, airloads, blade elastic motions, and structural moments are correlated with the measured data for the baseline, minimum noise, and minimum vibration cases.FindingsThe DYMORE analysis results with a free wake model show a good performance in capturing blade vortex interaction peaks in the prediction of section normal forces but apparently with a phase shift problem. The high‐frequency behavior in the airloads signal does not affect much on the aeroelastic response and structural moments of the rotor.Originality/valueThe present approach uses two separate CSD codes to systematically validate the HART II data. The accuracy of each code on structural dynamic aspects of HART II rotor is assessed using a consistent set of inputs. The effects of blade tip deflections on the interaction of blades and their trailed vortices leading to a reduced noise emission are also investigated.

Publisher

Emerald

Reference19 articles.

1. Bauchau, O.A. (2007), DYMORE User's Manual, Georgia Institute of Technology, Atlanta, GA.

2. Bhagwat, M.J. and Leishman, J.G. (2001), “Stability, consistency and convergence of time‐marching free‐vortex rotor wake algorithms”, Journal of the American Helicopter Society, Vol. 46 No. 1, pp. 59‐71.

3. Hodges, D.H. (1990), “A mixed variational formulation based on exact intrinsic equations for dynamics of moving beams”, International Journal of Solids and Structures, Vol. 26, pp. 1253‐73.

4. Johnson, W. (1992), CAMRAD II, Comprehensive Analytical Model of Rotorcraft Aerodynamics and Dynamics, Johnson Aeronautics, Palo Alto, CA.

5. Kumar, A.A., Viswamurthy, S.R. and Ganguli, R. (2008), “Correlation of helicopter rotor aeroelastic response with HART II wind tunnel test”, paper presented at the 35th European Rotorcraft Forum, Liverpool.

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