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Mitigation of Autoignition Due to Premixing in a Hypervelocity Flow Using Active Wall Cooling

机译:使用主动墙体冷却的超细流量中预混合引起的自燃减轻

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Preinjection of fuel on the forebody of an airbreathing vehicle is a proposed method to gain access to hypervelocity flight Mach numbers. However, this creates the possibility of autoignition either near the wall or in the core of the flow, thereby consuming fuel prematurely as well as increasing the amount of pressure drag on the vehicle. The computational fluid dynamics code VULCAN was used to conduct three dimensional simulations of the reacting flow in the vicinity of hydrogen injectors on a flat plate at conditions relevant to a Mach 12 notional flight vehicle forebody to determine the location where autoignition occurs. Active wall cooling strategies were formulated and simulated in response to regions of autoignition. It was found that tangential film cooling using hydrogen or helium were both able to nearly or completely eliminate wall autoignition in the flow domain of interest.
机译:燃料前置燃料的预注调是一种提出的方​​法,可以获得对超型飞行马赫数的访问。然而,这产生了在墙壁附近或流动的核心附近自燃的可能性,从而消耗燃料,以及增加车辆上的压力拖曳量。计算流体动力学代码硫磺用于在与Mach 12名义飞行车辆前体相关的条件下,在平板上进行氢气喷射器附近的反应流动的三维模拟,以确定发生自燃的位置。响应于自燃的区域,配制和模拟了主动壁冷却策略。发现使用氢气或氦气的切向膜冷却既能够接近或完全消除流动领域的壁自燃。

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