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Stagnation temperature effect on the supersonic axisymmetric minimum length nozzle design with application for air

机译:停滞温度对超音速轴对称最小长度喷嘴设计的影响及其在空气中的应用

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When the stagnation temperature of a perfect gas increases, the specific heats and their ratio do not remain constant any more and start to vary with this temperature. The gas remains perfect; its state equation remains always valid, except, it is named in more by calo-rically imperfect gas. The aim of this work is to trace the profiles of the supersonic axisymmetric minimum length nozzle to have a uniform and parallel flow at the exit section, when the stagnation temperature is taken into account, lower than the dissociation threshold of the molecules, and to have for each exit Mach number and stagnation temperature shape of nozzle. The method of characteristics is used with the algorithm of the second order finite differences method. The form of the nozzle has a point of deflection and an initial angle of expansion. The comparison is made with the calorically perfect gas.
机译:当理想气体的停滞温度升高时,比热及其比值不再保持恒定,并随该温度开始变化。气体保持完美;它的状态方程始终保持有效,除了它的名称更多是由热量不完全的气体命名的。这项工作的目的是追踪超音速轴对称最小长度喷嘴的轮廓,以便在考虑到停滞温度时,在出口处具有均匀且平行的流动,并低于分子的解离阈值,并具有每个出口的马赫数和喷嘴的停滞温度形状。特征方法与二阶有限差分法的算法一起使用。喷嘴的形状具有偏转点和初始膨胀角。比较是用热量完美的气体进行的。

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