首页> 外文会议>SAE AeroTech Congress Exhibition >Trajectory Optimization of Airliners to Minimize Environmental Impact
【24h】

Trajectory Optimization of Airliners to Minimize Environmental Impact

机译:轨道优化客机,以最大限度地减少环境影响

获取原文

摘要

With the rapid growth in passenger transportation through aviation projected to continue into the future, it is incumbent on aerospace engineers to seek ways to reduce the negative impact of airliner operation on the environment. Key metrics to address include noise, fuel consumption, Carbon Dioxide and Nitrous Oxide emissions, and contrail formation. The research presented in this paper generates new aircraft trajectories to reduce these metrics, and compares them with typical scheduled airline operated flights. Results and analysis of test cases on trajectory optimization are presented using an in-house aircraft trajectory optimization framework created under the European Clean Sky Joint Technology Initiative, Systems for Green Operation Integrated Technology Demonstrator. The software tool comprises an optimizer core and relatively high fidelity models of the aircraft's flight path performance, air traffic control constraints, propulsion and other systems. The tool includes models to predict noise, emissions and contrail formation. The results report horizontal and vertical trajectories for a long haul flight from London Heathrow to Colombo in Sri Lanka. Particular studies have been conducted on contrails formation during flight in the cruise segment, as well as the impact of conventional and more electric systems penalties on the aircraft's performance. Minimum noise and minimum fuel burn criteria are objectives in the optimization of the departure and arrival segments. Minimum time and minimum fuel burn are used in the optimization of the en-route segments, together with the contrails optimized routes for comparative assessment. The solutions of optimized trajectories are presented in terms of flight profile charts for the altitude and speed. The environmental gains between the investigated criteria, in each flight segment, are presented based on the results obtained using the framework.
机译:随着航空航空飞行运输的快速增长,将继续进入未来,在航空航天工程师上努力寻求减少客机运作对环境的负面影响的方法。地址的关键指标包括噪声,燃料消耗,二氧化碳和氧化二氮排放和凝结尾部。本文提出的研究会产生新的飞机轨迹,以减少这些指标,并将其与典型的预定航空公司进行比较。使用欧洲清洁天空联合技术倡议,绿色运营综合技术示范系统中的内部飞机轨迹优化框架,介绍了轨迹优化测试用例的结果与分析。该软件工具包括优化器核心和飞机飞行路径性能,空中交通管制约束,推进和其他系统的相对高的保真模型。该工具包括预测噪声,排放和绑定形成的模型。结果报告了从伦敦希思罗机场到斯里兰卡科伦坡的长途航班的水平和垂直轨迹。在巡航区段飞行期间,在凝结轨形成的特定研究以及常规和更多电力系统对飞机表现的影响。最小噪音和最小燃料燃烧标准是在优化出发和到达段的目标中的目标。最小时间和最小燃料燃烧用于优化纳米段,以及对绑定的比较评估的优化路线。优化轨迹的解决方案是以航空概况图表提供的高度和速度。基于使用该框架获得的结果,提出了调查标准之间的环境收益。

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