theoretical investigation of shock stand-off distance for non-equilibrium flows over spheres

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2018
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Abstract
We derived a theoretical solution of the shock stand-off distance for a non-equilibrium flow over spheres based on Wen and Hornung’s solution and Olivier’s solution. Compared with previous approaches, the main advantage of the present approach is allowing an analytic solution without involving any semi-empirical parameter for the whole non-equilibrium flow regimes. The effects of some important physical quantities therefore can be fully revealed via the analytic solution. By combining the current solution with Ideal Dissociating Gas (IDG) model, we investigate the effects of free stream kinetic energy and free stream dissociation level (which can be very different between different facilities) on the shock stand-off distance. Keywords: Gas dynamics, Supersonic/hypersonic flow, Shock stand-off distance, Non-equilibrium flow, Blunt body shock
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shen2018chinesetheoretical Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Hua SHEN;Chih-Yung WEN
Journal Cancer epidemiology
Year 2018
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