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Studies of the pressure field and related beam jitter for hemisphere-on-cylinder turrets.

机译:研究半球形圆柱转塔的压力场和相关的光束抖动。

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摘要

Beam jitter is defined as the unsteady variation of a laser beam's propagation direction. For airborne directed energy systems that feature turrets, the high speed flow around the aircraft introduces jitter into the system. The jitter has two main forms: mechanical jitter from vibration induced by the unsteady pressure field over the turret and aero-optical jitter from large scale structures that impose aberrations with length scales larger than the beam aperture. Beam jitter is highly dependent on the specific geometry and construction of a directed energy turret as surface geometry changes will modify the flow field over the turret and interior construction changes will alter the vibrational modes. This dissertation investigates the exact character of jitter over a specific turret geometry. This is done through surface pressure, jitter and vibration measurements to not only separate the total jitter into aero-optical and mechanical components, but also determine which flow features over a turret drive the two different forms of jitter. The techniques presented in this dissertation can be applied to characterize the jitter of any given directed energy system. A few guidelines to mitigate potential jitter in future turret designs are also given.
机译:光束抖动定义为激光束传播方向的不稳定变化。对于具有转塔的机载定向能量系统,飞机周围的高速流动将抖动引入系统中。抖动有两种主要形式:由转塔上非恒定压力场引起的振动引起的机械抖动,以及来自大型结构的航空光学抖动,这些大型结构会施加像差,其长度尺度大于光束孔径。光束抖动高度依赖于定向能量塔架的特定几何形状和结构,因为表面几何形状的变化将改变塔架上的流场,而内部结构的变化将改变振动模式。本文研究了特定转塔几何结构上抖动的确切特征。这是通过表面压力,抖动和振动测量完成的,不仅可以将总抖动分为航空和机械组件,还可以确定转塔上的哪些流量特征会驱动两种不同形式的抖动。本文提出的技术可以应用于表征任何给定定向能量系统的抖动。还提供了一些减轻未来转塔设计中潜在抖动的指南。

著录项

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Aerospace engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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