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Simple Physics-Based Model for the Prediction of Shock-Train Location

机译:基于简单的物理模型的冲击火车位置预测

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A simple physics-based model was developed for the prediction of shock-train location in constant-area scramjet isolators. The shock train was shown to manifest at the location within the isolator that possesses the Mach number required to match the isolator pressure ratio, the ratio of isolator exit pressure to inlet pressure. The model assumes that the Mach-number gradient along the isolator is due to boundary-layer growth. Using the normal-shock and quasi-one-dimensional isentropic-flow equations, a relation was derived for determining the location of the leading shock of the shock train. The model must be calibrated to obtain some measure of the boundary-layer thickness and growth. The model accuracy depends upon the amount of calibration data used. The model performed well using only the Mach-number-gradient information in a Mach 1.8 cold-flow direct-connect isolator, but not as well in a combusting Mach 2.2 direct-connect dual-mode scramjet tunnel. Improved performance of the model for both tunnels was achieved with the use of more calibration data. This simple model is useful for gaining physical insight into isolator dynamics and implementing closed-loop control schemes that seek to control the shock-train location in the isolator. Particularly, it demonstrates the importance of the isolator Mach-number gradient in determining the range of isolator pressure ratios the isolator can sustain.
机译:开发了一个简单的基于物理的模型来预测恒定面积超燃冲压隔离器中的冲击波位置。冲击波列示在隔离器内的某个位置,该位置具有与隔离器压力比(隔离器出口压力与入口压力之比)匹配的马赫数。该模型假设沿着隔离器的马赫数梯度是由于边界层的增长而引起的。利用正激波和准一维等熵流方程,推导了确定冲击波前冲位置的关系。必须对模型进行校准以获得边界层厚度和生长的某种度量。模型的准确性取决于所用校准数据的数量。该模型仅在Mach 1.8冷流直连式隔离器中仅使用Mach数梯度信息,但在燃烧Mach 2.2直连双模超燃冲压隧道中的效果不佳。通过使用更多的校准数据,可以提高两个隧道模型的性能。这个简单的模型对于获得对隔离器动力学的物理洞察力以及实施旨在控制隔离器中冲击波位置的闭环控制方案很有用。特别地,它证明了隔离器马赫数梯度在确定隔离器可以维持的隔离器压力比范围内的重要性。

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