首页> 外文学位 >A theoretical treatment of technical risk in modern propulsion system design.
【24h】

A theoretical treatment of technical risk in modern propulsion system design.

机译:现代推进系统设计中技术风险的理论处理。

获取原文
获取原文并翻译 | 示例

摘要

A prevalent trend in modern aerospace systems is increasing complexity and cost, which in turn drives increased risk. Consequently, there is a clear and present need for the development of formalized methods to analyze the impact of risk on the design of aerospace vehicles. The objective of this work is to develop such a method that enables analysis of risk via a consistent, comprehensive treatment of aerothermodynamic and mass properties aspects of vehicle design.; The key elements enabling the creation of this methodology are recent developments in the analytical estimation of work potential based on the second law of thermodynamics. This dissertation develops the theoretical foundation of a vehicle analysis method based on work potential and validates it using the Northrop F-5E with GE J85-GE-21 engines as a case study. Although the method is broadly applicable, emphasis is given to aircraft propulsion applications.; Three work potential figures of merit are applied using this method: exergy, available energy, and thrust work potential. It is shown that each possesses unique properties making them useful for specific vehicle analysis tasks, though the latter two are actually special cases of exergy. All three are demonstrated on the analysis of the J85-GE-21 propulsion system, resulting in a comprehensive description of propulsion system thermodynamic loss. This “loss management” method is used to analyze aerodynamic drag loss of the F-5E and is then used in conjunction with the propulsive loss model to analyze the usage of fuel work potential throughout the F-5E design mission. The results clearly show how and where work potential is used during flight and yield considerable insight as to where the greatest opportunity for design improvement is.; Next, usage of work potential is translated into fuel weight so that the aerothermodynamic performance of the F-5E can be expressed entirely in terms of vehicle gross weight. This technique is then applied as a means to quantify the impact of engine cycle technologies on the F-5E airframe. Finally, loss management methods are used in conjunction with probabilistic analysis methods to quantify the impact of risk on F-5E aerothermodynamic performance.
机译:现代航空航天系统的普遍趋势是复杂性和成本不断增加,这反过来又增加了风险。因此,目前存在明确的需求,需要开发正式的方法来分析风险对航空航天器设计的影响。这项工作的目的是开发一种方法,通过对车辆设计的空气动力学和质量特性进行一致,全面的处理,从而能够进行风险分析。能够创建这种方法的关键要素是基于热力学第二定律的工作潜能分析估计的最新进展。本文以工作潜力为基础,建立了车辆分析方法的理论基础,并以诺斯罗普F-5E和GE J85-GE-21发动机为例进行了验证。尽管该方法广泛适用,但重点是飞机推进应用。使用此方法可应用三个工作势能指标:火用,可用能量和推力工作势能。结果表明,每一个都具有独特的属性,使其可用于特定的车辆分析任务,尽管后两个实际上是火用的特殊情况。通过对J85-GE-21推进系统的分析论证了这三者,对推进系统的热力学损失进行了全面描述。这种“损失管理”方法用于分析F-5E的空气阻力损失,然后与推进损失模型结合使用,以分析整个F-5E设计任务中燃料工作潜力的利用。结果清楚地表明了在飞行过程中如何以及在何处利用工作潜力,并且对于改进设计的最大机会在哪里有了相当多的见识。接下来,将工作潜力的利用转化为燃料重量,以便F-5E的空气动力学性能可以完全以车辆总重来表示。然后将该技术用作量化发动机循环技术对F-5E机体的影响的手段。最后,将损失管理方法与概率分析方法结合使用以量化风险对F-5E气动热力学性能的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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