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Concept and benefits of a unified departure operation spacing standard

机译:统一出发间隔标准的概念和好处

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The initial spacing applied between departing aircraft is a major factor affecting the efficiency of departure operations at an airport. When departure operations are conducted under Instrument Flight Rules (IFR), successive in-trail departures must be provided a minimum of 3 nautical miles (NM) radar separation unless visual separation is applied. However, if the departure paths diverge by 15 degrees or more immediately after takeoff, reduced initial spacing can often be applied: separation is provided by the increasing lateral distance between the aircraft rather than by a fixed in-trail distance. The smaller initial spacing when diverging departures can be conducted leads to more departures per hour. This paper explores options for application of efficiency-enhancing reduced departure spacing and presents the concept of a single separation rule, the Unified Departure Operation Spacing (UDOS) concept, where the same reduced initial spacing is generally applied whether or not the departure paths diverge. The paper reviews the currently applicable standards, describes the analysis and simulation approaches taken to assess longitudinal spacing observed in actual operations, and provides estimates of potential operational benefits.
机译:离场飞机之间的初始间隔是影响机场离场运营效率的主要因素。当按照仪表飞行规则(IFR)进行离场操作时,除非应用了目视间隔,否则必须连续提供至少3海里(NM)的雷达间隔。但是,如果起飞后立即离开,航路偏离了15度或更多,则通常可以采用减小的初始间距:通过增加飞机之间的横向距离而不是通过固定的行进距离来实现分隔。可以进行发散偏离时,较小的初始间距会导致每小时更多的偏离。本文探讨了应用效率提高的减小的出发间隔的选项,并提出了一个单独的分离规则的概念,即统一出发操作间隔(UDOS)概念,其中无论出发路径是否发散,通常都应用相同的减小的初始间隔。该文件回顾了当前适用的标准,描述了用于评估实际运行中观察到的纵向间距的分析和模拟方法,并提供了潜在运行效益的估算。

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