2009
DOI: 10.1016/j.ast.2009.04.008
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Investigation of acceleration effects on missile aerodynamics using computational fluid dynamics

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Cited by 13 publications
(19 citation statements)
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“…The first is that a number of effects in a non-inertial frame are familiar, such as the Coriolis effect, and should be shown in the context of flow around accelerating bodies; the second is that terms for linear acceleration and angular acceleration in rotation and revolution should be identifiable; and the third is to illustrate the use of dimensionless parameters in this field. In a previous paper, the derivation of the conservation equations for mass and momentum was presented by Gledhill et al [1]. In the following paragraphs, the mass and momentum equations are summarised, and the energy equation is derived.…”
Section: Conservation Equationsmentioning
confidence: 99%
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“…The first is that a number of effects in a non-inertial frame are familiar, such as the Coriolis effect, and should be shown in the context of flow around accelerating bodies; the second is that terms for linear acceleration and angular acceleration in rotation and revolution should be identifiable; and the third is to illustrate the use of dimensionless parameters in this field. In a previous paper, the derivation of the conservation equations for mass and momentum was presented by Gledhill et al [1]. In the following paragraphs, the mass and momentum equations are summarised, and the energy equation is derived.…”
Section: Conservation Equationsmentioning
confidence: 99%
“…Transformation of the continuity and momentum equations [1] is extended here to the energy equation. Part of the motivation for developing this theory is to develop guidance about what constitutes "significant" acceleration, and how the regimes of flow about accelerating objects can be distinguished and quantified.…”
Section: Earlier Workmentioning
confidence: 99%
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