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Study on variable-shape supersonic inlets and missiles with MRD device

机译:带有MRD装置的变型超音速导弹的进口与导弹研究

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摘要

This paper proposes a new aerodynamic device, which was designated multi-row-disk (MRD). This device has a cone and stabilizer disks being arranged in the axial direction. This device can arbitrarily change its aerodynamic characteristics by translating stabilizer disks. In the first part of this paper, the effect of several nose shape configurations including the MRD device on the aerodynamic characteristics is reported. By increasing the number of stabilizer disks, zero-lift drag and induced drag can be reduced. It was also found that putting cavities on the conical surface is effective for improving longitudinal static stability. In the second part, the effect of cavity flow instability on pressure and strain oscillation is reported. We drew the design criterion that the configuration of stabilizer disks should be determined not to couple the 1st mode with pressure oscillation frequency, which can be predicted with Rossiter's formula.
机译:本文提出了一种新的空气动力学装置,称为多行磁盘(MRD)。该装置具有沿轴向布置的锥形盘和稳定器盘。该装置可以通过平移稳定盘来任意改变其空气动力学特性。在本文的第一部分中,报告了包括MRD装置在内的几种机头形状配置对空气动力特性的影响。通过增加稳定盘的数量,可以减少零升力阻力和感应阻力。还发现在锥形表面上放置空腔对于改善纵向静态稳定性是有效的。在第二部分中,报告了空腔流动不稳定性对压力和应变振荡的影响。我们得出了设计标准,即应确定稳定盘的配置,以免将第一模式与压力振荡频率耦合,这可以用Rossiter公式预测。

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