282,156 research outputs found

    Combustion instability sustained by unsteady vortex combustion

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    The determination of an internal feedback mechanism which leads to combustion instability inside a small scale laboratory combustor is presented in this paper. During combustion instability, the experimental findings show that a large vortical structure is formed at an acoustic resonant mode of the system. The subsequent unsteady burning, within the vortex as it is convected downstream, feeds energy into the acoustic field and sustains the large resonant oscillations. These vortices are formed when the acoustic velocity fluctuation at the flameholder is a large fraction of the mean flow velocity. The propagation of these vortices is not a strong function of the mean flow speed and appears to be dependent upon the frequency of the instability. Continued existence of large vortical structures which characterize unstable operation depends upon the fuel-air ratio, system acoustics, and fuel type

    UNH Survey Center: Romney Leads Unsettled GOP Field In New Hampshire

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    [Book Review] \u3cem\u3eHuman Life in the Balance\u3c/em\u3e, by David C Thomasma

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    The Jungle of Mergers: Making a Path or Finding a Clearing?

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    UNH Survey Center: NH Residents Concerned About State Budget, Unsure About Causes And Solutions

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