33rd Joint Propulsion Conference and Exhibit 1997
DOI: 10.2514/6.1997-2717
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An improved time-dependent flowfield solution for solid rocket motors

Abstract: A model of the time-dependent velocity field in solid rocket motors is derived analytically for an oscillatory field that is subject to steady sidewall injection. The oscillatory pressure amplitude is assumed to be small by comparison to the mean pressure. The mathematical approach includes solving the momentum equation governing the rotational flow using separation of variables and multiple-scales. This requires identifying scales at which unsteady inertia, convection, and diffusion are significant. A composi… Show more

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Cited by 18 publications
(29 citation statements)
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“…In general, the time-dependent field is found to be controlled by the injection Strouhal number, Unsurprisingly, this parameter is identical to the one encountered in the circular-port geometry. 8 By comparison with the mean flow, the character of the unsteady field is remarkably analogous. Accordingly, unsteady vorticity is more pervasive in the slab configuration.…”
Section: Discussionmentioning
confidence: 97%
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“…In general, the time-dependent field is found to be controlled by the injection Strouhal number, Unsurprisingly, this parameter is identical to the one encountered in the circular-port geometry. 8 By comparison with the mean flow, the character of the unsteady field is remarkably analogous. Accordingly, unsteady vorticity is more pervasive in the slab configuration.…”
Section: Discussionmentioning
confidence: 97%
“…Equations (7)- (8) can be reduced to Berman's equation 24 and then solved asymptotically following Yuan. 25 Defining the streamfunction to be of the Berman type, (i.e., that varies linearly with the distance from the head end due to geometric similarity) we let…”
Section: A Classic Solution For Large Injectionmentioning
confidence: 99%
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“…ATHEMATICAL flow models of the internal gas dynamics in solid rocket motors have relied on subdividing the field into a mean and a time-dependent component. Recent analyses by Flandro, [1][2][3] Majdalani, 4,5 and Majdalani and Van Moorhem 6,7 have been successful in producing time-dependent solutions that could incorporate both viscous and rotational effects. At the outset, both viscous and rotational effects were shown to play important roles in prescribing the temporal flow behavior.…”
Section: Introductionmentioning
confidence: 99%