首页> 外文OA文献 >Environmental Impact Assessment, on the Operation of Conventional and More Electric Large Commercial Aircraft
【2h】

Environmental Impact Assessment, on the Operation of Conventional and More Electric Large Commercial Aircraft

机译:常规及更多电动大型民用飞机的运行环境影响评估

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Global aviation is growing exponentially and there is a great emphasis on trajectory optimization to reduce the overall environmental impact caused by aircraft. Many optimization techniques exist and are being studied for this purpose. The CLEAN SKY Joint Technology Initiative for aeronautics and Air transport, a European research activity run under the Seventh Framework program, is a collaborative initiative involving industry, research organizations and academia to introduce novel technologies to improve the environmental impact of aviation. As part of the overall research activities, "green" aircraft trajectories are addressed in the Systems for Green Operations (SGO) Integrated Technology Demonstrator. This paper studies the impact of large commercial aircraft trajectories optimized for different objectives applied to the on board systems. It establishes integrated systems models for both conventional and more electric secondary power systems and studies the impact of fuel, noise, time and emissions optimized trajectories on each configuration. It shows the significant change in the fuel burn due to systems operation and builds up the case as to why a detailed aircraft systems model is required within the optimization loop. Typically, the objective in trajectory optimization is to improve the mission performance of an aircraft or reduce the environmental impact. Hence parameters such as time, fuel burn, emissions and noise are key optimization objectives. In most instances, trajectory optimization is achieved by using models that represent such parameters. For example aircraft dynamics models to describe the flight performance, engine models to calculate the fuel burn, emissions and noise impact, etc. Such techniques have proved to achieve the necessary level of accuracy in trajectory optimization. This research enhances previous techniques by adding in the effect of systems power in the optimization process. A comparison is also made between conventional power systems and more electric architectures. In the conventional architecture, the environmental control system and the ice protection system are powered by engine bleed air while actuators and electrics are powered by engine shaft power off-takes. In the more electric architecture, bleed off take is eliminated and the environmental control system and ice protection system are also powered electrically through engine shaft power off takes.
机译:全球航空业呈指数增长,并且非常重视轨迹优化以减少飞机对环境造成的总体影响。存在许多优化技术,并且为此目的正在研究中。在第七框架计划下开展的一项欧洲研究活动-“航空和航空运输清洁技术联合技术计划”是一项由工业界,研究组织和学术界参与的合作计划,旨在引入新技术来改善航空对环境的影响。作为总体研究活动的一部分,“绿色”飞机的飞行轨迹在绿色运营系统(SGO)集成技术演示程序中得到了解决。本文研究了针对不同目标优化的大型商用飞机轨迹对机载系统的影响。它建立了适用于常规电力系统和更多电力二次系统的集成系统模型,并研究了燃料,噪声,时间和排放优化轨迹对每种配置的影响。它显示了由于系统运行而引起的燃油消耗的显着变化,并说明了为什么在优化循环内需要详细的飞机系统模型的情况。通常,轨迹优化的目标是提高飞机的任务性能或减少环境影响。因此,诸如时间,燃油消耗,排放和噪声等参数是关键的优化目标。在大多数情况下,通过使用表示此类参数的模型来实现轨迹优化。例如,用于描述飞行性能的飞机动力学模型,用于计算燃油消耗,排放和噪声影响的发动机模型等。这些技术已被证明在轨迹优化中达到了必要的精度水平。这项研究通过在优化过程中增加系统功率的影响来增强以前的技术。在常规电源系统和更多电气体系结构之间也进行了比较。在常规架构中,环境控制系统和防冰系统由发动机引气驱动,而致动器和电气装置则由发动机轴的动力输出口驱动。在更加电气化的体系结构中,消除了放气口,并且还通过发动机轴的放气口为环境控制系统和防冰系统供电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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