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Quiet High-Speed Fan

Quiet High-Speed Fan
Author:
Publisher:
Total Pages: 102
Release: 1996
Genre:
ISBN:

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Quiet High-Speed Fan

Quiet High-Speed Fan
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 96
Release: 2018-07-10
Genre:
ISBN: 9781722707842

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A calibration of the acoustic and aerodynamic prediction methods was performed and a baseline fan definition was established and evaluated to support the quiet high speed fan program. A computational fluid dynamic analysis of the NASA QF-12 Fan rotor, using the DAWES flow simulation program was performed to demonstrate and verify the causes of the relatively poor aerodynamic performance observed during the fan test. In addition, the rotor flowfield characteristics were qualitatively compared to the acoustic measurements to identify the key acoustic characteristics of the flow. The V072 turbofan source noise prediction code was used to generate noise predictions for the TFE731-60 fan at three operating conditions and compared to experimental data. V072 results were also used in the Acoustic Radiation Code to generate far field noise for the TFE731-60 nacelle at three speed points for the blade passage tone. A full 3-D viscous flow simulation of the current production TFE731-60 fan rotor was performed with the DAWES flow analysis program. The DAWES analysis was used to estimate the onset of multiple pure tone noise, based on predictions of inlet shock position as a function of the rotor tip speed. Finally, the TFE731-60 fan rotor wake structure predicted by the DAWES program was used to define a redesigned stator with the leading edge configured to minimize the acoustic effects of rotor wake / stator interaction, without appreciably degrading performance. Lieber, Lysbeth and Repp, Russ and Weir, Donald S. Glenn Research Center...


Design and Test of Fan/Nacelle Models Quiet High-Speed Fan Design

Design and Test of Fan/Nacelle Models Quiet High-Speed Fan Design
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 244
Release: 2018-06-27
Genre:
ISBN: 9781721942015

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The primary objective of the Quiet High-Speed Fan (QHSF) program was to develop an advanced high-speed fan design that will achieve a 6 dB reduction in overall fan noise over a baseline configuration while maintaining similar performance. The program applies and validates acoustic, aerodynamic, aeroelastic, and mechanical design tools developed by NASA, US industry, and academia. The successful fan design will be used in an AlliedSignal Engines (AE) advanced regional engine to be marketed in the year 2000 and beyond. This technology is needed to maintain US industry leadership in the regional turbofan engine market. Miller, Christopher J. (Technical Monitor) and Repp, Russ and Gentile, David and Hanson, David and Chunduru, Srinivas Glenn Research Center NAS3-27752; WU 781-30-11


NASA Technical Paper

NASA Technical Paper
Author:
Publisher:
Total Pages: 24
Release: 1980
Genre: Science
ISBN:

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Design and Test of Fan/Nacelle Models Quiet High-Speed Fan

Design and Test of Fan/Nacelle Models Quiet High-Speed Fan
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 266
Release: 2018-06-27
Genre:
ISBN: 9781721942107

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The Quiet High-Speed Fan program is a cooperative effort between Honeywell Engines & Systems (formerly AlliedSignal Engines & Systems) and the NASA Glenn Research Center. Engines & Systems has designed an advanced high-speed fan that will be tested on the Ultra High Bypass Propulsion Simulator in the NASA Glenn 9 x 15 foot wind tunnel, currently scheduled for the second quarter of 2000. An Engines & Systems modern fan design will be used as a baseline. A nacelle model is provided that is characteristic of a typical, modern regional aircraft nacelle and meets all of the program test objectives. Miller, Christopher J. (Technical Monitor) and Weir, Donald Glenn Research Center NAS3-27752; WU-781-30-11