首页> 外文OA文献 >The Use of a Lidar Forward-Looking Turbulence Sensor for Mixed-Compression Inlet Unstart Avoidance and Gross Weight Reduction on a High Speed Civil Transport
【2h】

The Use of a Lidar Forward-Looking Turbulence Sensor for Mixed-Compression Inlet Unstart Avoidance and Gross Weight Reduction on a High Speed Civil Transport

机译:激光雷达前视湍流传感器在高速民用运输中避免混合压缩进气口的起步避免和减轻毛重的应用

摘要

Inlet unstart causes a disturbance akin to severe turbulence for a supersonic commercial airplane. Consequently, the current goal for the frequency of unstarts is a few times per fleet lifetime. For a mixed-compression inlet, there is a tradeoff between propulsion system efficiency and unstart margin. As the unstart margin decreases, propulsion system efficiency increases, but so does the unstart rate. This paper intends to first, quantify that tradeoff for the High Speed Civil Transport (HSCT) and second, to examine the benefits of using a sensor to detect turbulence ahead of the airplane. When the presence of turbulence is known with sufficient lead time to allow the propulsion system to adjust the unstart margin, then inlet un,starts can be minimized while overall efficiency is maximized. The NASA Airborne Coherent Lidar for Advanced In-Flight Measurements program is developing a lidar system to serve as a prototype of the forward-looking sensor. This paper reports on the progress of this development program and its application to the prevention of inlet unstart in a mixed-compression supersonic inlet. Quantified benefits include significantly reduced takeoff gross weight (TOGW), which could increase payload, reduce direct operating costs, or increase range for the HSCT.
机译:入口不启动会引起类似于超音速商用飞机的严重湍流的干扰。因此,当前启动频率的目标是每个车队寿命几次。对于混合压缩进气口,在推进系统效率和启动裕度之间需要权衡。随着启动裕度的降低,推进系统的效率会提高,但启动速度也会提高。本文的目的是首先量化高速民用运输(HSCT)的权衡,其次要研究使用传感器检测飞机前方湍流的好处。当已知湍流的存在并有足够的前置时间以允许推进系统调整启动余量时,可以最大程度地减少进气启动,同时使总效率最大化。 NASA机载相干激光雷达用于先进的飞行中测量程序正在开发激光雷达系统,以用作前瞻性传感器的原型。本文报告了该开发程序的进展及其在防止混合压缩超声速进气道进气道不启动中的应用。量化收益包括大大减少起飞总重(TOGW),这可能会增加有效载荷,降低直接运营成本或增加HSCT的航程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号