Sources and Levels of Background Noise in the NASA Ames 40- By 80-Foot Wind Tunnel

Sources and Levels of Background Noise in the NASA Ames 40- By 80-Foot Wind Tunnel PDF Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
ISBN: 9781729270677
Category : Science
Languages : en
Pages : 46

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Book Description
Background noise levels are measured in the NASA Ames Research Center 40- by 80-Foot Wind Tunnel following installation of a sound-absorbent lining on the test-section walls. Results show that the fan-drive noise dominated the empty test-section background noise at airspeeds below 120 knots. Above 120 knots, the test-section broadband background noise was dominated by wind-induced dipole noise (except at lower harmonics of fan blade-passage tones) most likely generated at the microphone or microphone support strut. Third-octave band and narrow-band spectra are presented for several fan operating conditions and test-section airspeeds. The background noise levels can be reduced by making improvements to the microphone wind screen or support strut. Empirical equations are presented relating variations of fan noise with fan speed or blade-pitch angle. An empirical expression for typical fan noise spectra is also presented. Fan motor electric power consumption is related to the noise generation. Preliminary measurements of sound absorption by the test-section lining indicate that the 152 mm thick lining will adequately absorb test-section model noise at frequencies above 300 Hz. Soderman, Paul T. Ames Research Center RTOP 505-61-11

Sources and Levels of Background Noise in the NASA Ames 40- By 80-Foot Wind Tunnel

Sources and Levels of Background Noise in the NASA Ames 40- By 80-Foot Wind Tunnel PDF Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
ISBN: 9781729270677
Category : Science
Languages : en
Pages : 46

Get Book Here

Book Description
Background noise levels are measured in the NASA Ames Research Center 40- by 80-Foot Wind Tunnel following installation of a sound-absorbent lining on the test-section walls. Results show that the fan-drive noise dominated the empty test-section background noise at airspeeds below 120 knots. Above 120 knots, the test-section broadband background noise was dominated by wind-induced dipole noise (except at lower harmonics of fan blade-passage tones) most likely generated at the microphone or microphone support strut. Third-octave band and narrow-band spectra are presented for several fan operating conditions and test-section airspeeds. The background noise levels can be reduced by making improvements to the microphone wind screen or support strut. Empirical equations are presented relating variations of fan noise with fan speed or blade-pitch angle. An empirical expression for typical fan noise spectra is also presented. Fan motor electric power consumption is related to the noise generation. Preliminary measurements of sound absorption by the test-section lining indicate that the 152 mm thick lining will adequately absorb test-section model noise at frequencies above 300 Hz. Soderman, Paul T. Ames Research Center RTOP 505-61-11

Sources and Levels of Background Noise in the NASA Ames 40- by 80-foot Wind Tunnel

Sources and Levels of Background Noise in the NASA Ames 40- by 80-foot Wind Tunnel PDF Author: Paul T. Soderman
Publisher:
ISBN:
Category : Acoustical engineering
Languages : en
Pages : 48

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Publisher:
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Publisher: Springer Science & Business Media
ISBN: 3662050587
Category : Technology & Engineering
Languages : en
Pages : 327

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