首页> 外文会议>AIAA aviation technology, integration and operations conference;AIAA aviation forum >Analysis of the Capacity Potential of Current Day and Novel Configurations for New York's John F. Kennedy Airport
【24h】

Analysis of the Capacity Potential of Current Day and Novel Configurations for New York's John F. Kennedy Airport

机译:纽约约翰·肯尼迪机场当前容量和新配置的容量潜力分析

获取原文

摘要

In 2015, a series of systems analysis studies were conducted on John F. Kennedy Airport in New York (NY) in a collaborative effort between NASA and the Port Authority of New York and New Jersey (PANYNJ). This work was performed to build a deeper understanding of NY airspace and operations to determine the improvements possible through operational changes with tools currently available, and where new technology is required for additional improvement. The analysis was conducted using tool-based mathematical analyses, video inspection and evaluation using recorded arrival/departure/surface traffic captured by the Aerobahn tool (used by Kennedy Airport for surface metering), and aural data archives available publically through the web to inform the video segments. A discussion of impacts of trajectory and operational choices on capacity is presented, including runway configuration and usage (parallel, converging, crossing, shared, independent, staggered), arrival and departure route characteristics (fix sharing, merges, splits), and how compression of traffic is staged. The authorization in March of 2015 for New York to use reduced spacing under the Federal Aviation Administration (FAA) Wake Turbulence Recategorization (RECAT) also offers significant capacity benefit for New York airports when fully transitioned to the new spacing requirements, and the impact of these changes for New York is discussed. Arrival and departure capacity results are presented for each of the current day Kennedy Airport configurations. While the tools allow many variations of user-selected conditions, the analysis for these studies used arrival-priority, no-winds, additional safety buffer of 5% to the required minimum spacing, and a mix of traffic typical for Kennedy. Two additional "novel" configurations were evaluated. These configurations are of interest to Port Authority and to their airline customers, and are believed to offer near-term capacity benefit with minimal operational and equipage changes. One of these is the addition of an Optimized Profile Descent (OPD) route to runways 22L and 22R, and the other is the simultaneous use of 4 runways, which is not currently done at Kennedy. The background and configuration for each of these is described, and the capacity results are presented along with a discussion of drawbacks and enablers for each.
机译:在2015年,在美国国家航空航天局(NASA)与纽约和新泽西州港口管理局(PANYNJ)的合作下,对纽约(NY)约翰·肯尼迪机场(John F. Kennedy Airport)进行了一系列系统分析研究。进行这项工作是为了加深对纽约领空和作战的了解,以确定通过使用当前可用工具进行的运营变更以及可能需要新技术进行进一步改进的地方,可以进行的改进。分析是通过基于工具的数学分析,视频检查和评估进行的,其中使用Aerobahn工具(肯尼迪机场用于地面计量)捕获的记录的到达/离开/地面交通进行了视频检查和评估,并通过网络公开提供了听觉数据档案,以告知视频片段。讨论了轨迹和操作选择对容量的影响,包括跑道配置和使用(平行,会聚,交叉,共享,独立,错开),到达和离开航线的特征(固定共享,合并,拆分)以及压缩方式的流量已上演。 2015年3月,根据美国联邦航空管理局(FAA)的尾流湍流重新分类(RECAT)授权纽约使用缩小的间隔,当纽约机场完全过渡到新的间隔要求时,这也为纽约机场带来了显着的运力收益,并且这些影响讨论了纽约的变化。肯尼迪机场当前每一天的到港和离港能力结果都会显示出来。尽管这些工具允许用户选择条件进行多种变化,但这些研究的分析使用了到达优先级,无风,将安全缓冲区增加5%到所需的最小间距以及混合的流量(肯尼迪通常情况下)。评估了另外两个“新颖”配置。这些配置是港务局及其航空公司客户所感兴趣的,并且相信可以在最小化运营和设备更改的情况下提供近期的运力收益。其中之一是在22L和22R跑道上增加了优化轮廓下降(OPD)路线,另一个是同时使用4条跑道,目前在肯尼迪机场还没有做到。描述了每种技术的背景和配置,并给出了容量结果以及每种技术的缺点和促成因素的讨论。

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