Maneuvering Rotorcraft Noise Prediction

Maneuvering Rotorcraft Noise Prediction A New Code for a New Problem

Paperback (26 Sep 2018)

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Publisher's Synopsis

This paper presents the unique aspects of the development of an entirely new maneuver noise prediction code called PSU-WOPWOP. The main focus of the code is the aeroacoustic aspects of the maneuver noise problem, when the aeromechanical input data are provided (namely aircraft and blade motion, blade airloads). The PSU-WOPWOP noise prediction capability was developed for rotors in steady and transient maneuvering flight. Featuring an object-oriented design, the code allows great flexibility for complex rotor configuration and motion (including multiple rotors and full aircraft motion). The relative locations and number of hinges, flexures, and body motions can be arbitrarily specified to match the any specific rotorcraft. An analysis of algorithm efficiency is performed for maneuver noise prediction along with a description of the tradeoffs made specifically for the maneuvering noise problem. Noise predictions for the main rotor of a rotorcraft in steady descent, transient (arrested) descent, hover and a mild "pop-up" maneuver are demonstrated. Brentner, Kenneth S. and Bres, Guillaume A. and Perez, Guillaume and Jones, Henry E. Ames Research Center; Langley Research Center

Book information

ISBN: 9781724073952
Publisher: Amazon Digital Services LLC - KDP Print US
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 28
Weight: 91g
Height: 279mm
Width: 216mm
Spine width: 2mm