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  • 1
    Publication Date: 2004-10-01
    Keywords: GENERAL
    Type: Conf. on Langley Res. Related to Apollo Misson; p 1-8
    Format: text
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  • 2
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    In:  CASI
    Publication Date: 2004-12-03
    Keywords: AERODYNAMICS
    Type: Supercritical Wing Technol.: A Report on Flight Evaluation; p 121-133
    Format: text
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  • 3
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    Unknown
    In:  Other Sources
    Publication Date: 2013-08-29
    Description: Methods of improving helicopter efficiency - air- foil characteristics, rotary drive, drag effects
    Keywords: BIOSCIENCES
    Format: text
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  • 4
    Publication Date: 2016-06-07
    Keywords: GENERAL
    Type: NASA Conf. on V(STOL Aircraft; p 101-118
    Format: application/pdf
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  • 5
    Publication Date: 2019-06-27
    Description: A study was conducted to assess the extent to which practicable reductions of the external noise level of various aircraft could be achieved by different methods. The aircraft included in the study are the O-1, O-2, U-10, OV-1, and A-6. The noise signatures obtained from field measurements and the estimated aural detection distance of aircraft operating in low speed cruising flight are presented. The characteristics of each aircraft and the modifications made to reduce the aerodynamic noise are explained. Tables of data are included to show the effectiveness of the noise reduction modifications for each aircraft.
    Keywords: AIRCRAFT PROPULSION AND POWER
    Type: NASA-TM-X-72644
    Format: application/pdf
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  • 6
    Publication Date: 2019-06-27
    Description: A study was undertaken to determine the noise reduction potential of the 0-2 airplane in order to reduce its aural detection distance. Static and flyover noise measurements were made to document the noise signature of the unmodified airplane. The results show that significant reductions in aural detection distance can be achieved by the combination of propeller geometry changes and the addition of engine exhaust mufflers. The best results were estimated for the aircraft equipped with a six-blade propeller operating at 3/4 engine speed in combination with a 3.49 cubic foot exhaust muffler installed on each engine. Detection distance for the modified aircraft is estimated to be reduced from about 4-1/4 miles to about 1-1/2 miles when the aircraft is operating at an altitude of 1,000 ft over grassy terrain. Reducing the altitude to 300 ft over a leafy jungle ground cover should reduce the aural detection distance to 0.9 miles. Reduced aural detection distances were also indicated for a modification utilizing a direct-drive six-blade propeller of reduced radius along with smaller exhaust mufflers.
    Keywords: AIRCRAFT PROPULSION AND POWER
    Type: NASA-TM-X-72641
    Format: application/pdf
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  • 7
    Publication Date: 2019-06-27
    Description: A study was undertaken by the NASA Langley Research Center to determine the noise reduction potential of the U-10 airplane in order to reduce its aural detection distance. Static and flyover noise measurements were made to document the basic airplane noise signature. Two modifications to the airplane configuration are suggested as having the best potential for substantially reducing aural detection distance with small penalty to airplane performance or stability and control. These modifications include changing the present 3-blade propeller to a 5-blade propeller, changing the propeller diameter, and changing the propeller gear ratio, along with the use of an engine exhaust muffler. The aural detection distance corresponding to normal cruising flight at an altitude of 1,000 ft over grassy terrain is reduced from 28,000 ft (5.3 miles) to about 50 percent of that value for modification 1, and to about 25 percent for modification 2. For the aircraft operating at an altitude of 300 ft, the analysis indicates that relatively straightforward modifications could reduce the aural detection distance to approximately 0.9 mile. Operation of the aircraft at greatly reduced engine speed (1650 rpm) with a 1.3-cu-ft muffler provides aural detection distances slightly lower than modification 1.
    Keywords: AIRCRAFT PROPULSION AND POWER
    Type: NASA-TM-X-72640
    Format: application/pdf
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