著者
Kent L. GEE Eric B. WHITING Tracianne B. NEILSEN Michael M. JAMES Alexandria R. SALTON
出版者
THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES
雑誌
TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES, AEROSPACE TECHNOLOGY JAPAN (ISSN:18840485)
巻号頁・発行日
vol.14, no.ists30, pp.Po_2_9-Po_2_15, 2016 (Released:2016-07-27)
被引用文献数
5 5

Near-field characterization of the acoustical environment near rockets has often involved extrapolating far-field measurements. However, because far-field amplitude data reveals only limited information about source characteristics, a vector intensity measurement system and analysis package has been developed to examine source features more directly. This paper describes the development of the measurement and analysis capability and its application to a horizontal firing of a GEM-60 solid propellant rocket motor firing conducted at ATK Space Systems near Promontory, Utah. An analysis of near-field intensity data provides insight both into the spatial extent and principal radiation lobe as a function of frequency. For 50 Hz, the far-field spectral peak frequency in the maximum radiation direction, the dominant source region derived from tracing the near-field intensity vectors spans 17-32 nozzle diameters, with peak radiation at ~68°. At high frequencies, the radiation results from a more contracted region that occurs farther upstream and is directed at about ~85°. These results point to the potential utility of near-field vector intensity measurements, in part because the near-field environments represented do not agree with historical far-field data-based models.

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The #AtlasV 531 configuration used three @northropgrumman GEM-63 solid fuel boosters. @BYU_PASCAL has been studying the acoustics of the GEM boosters over the past decade: GEM-63: https://t.co/nSAcW1NXx2 GEM-60: https://t.co/QZT4uAC7V9 https://t.co/sY5lUO5w3h
The Delta IV Medium rocket used the ATK (Northrop Grumman) GEM-60 booster. @BYUAcoustics characterized the rocket #noise source region using acoustic intensity: https://t.co/Os9Y4Utt5i Using the results in a forthcoming @ASA_JASA review article on launch vehicle #acoustics. https://t.co/LRiHOpVjAJ

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