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Prediction of Dynamic Pairwise Wake Vortex Separations for Approach and Landing

机译:用于接近和降落的动态成对唤醒涡流分离的预测

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Design and performance of the Wake Vortex Prediction and Monitoring System WSVBS are described. The WSVBS has been developed to tactically increase airport capacity for approach and landing on single runways as well as closely-spaced parallel runways. It is thought to dynamically adjust aircraft separations dependent on weather conditions and the resulting wake vortex behavior without compromising safety. Dedicated meteorological instrumentation and short-term numerical terminal weather prediction provide the input to the prediction of wake-vortex behavior and respective safety areas. LIDAR monitors the correctness of WSVBS predictions in the most critical gates at low altitude. The WSVBS is integrated in the arrival manager AMAN of DLR. Performance tests of the WSVBS have been accomplished at Frankfurt airport in winter 2006/07 and at Munich Airport in summer 2010. Aircraft separations for landings on single runways have been compared employing the concepts of either heavy-medium weight class combinations or dynamic pairwise separations where individual aircraft type pairings are considered. For the very conservative baseline setup of the WSVBS the potential capacity gains of dynamic pairwise operations for single runways appear to be very small. On the other hand, the consideration of individual aircraft types and their respective wake characteristics may almost double the fraction of time when radar separation could be applied.
机译:描述了唤醒涡流预测和监测系统WSVB的设计和性能。 WSVBS已经开发出来,以战术增加机场能力,以便在单跑道以及紧密间隔的平行跑道上进行接近和着陆。据认为,在不损害安全性的情况下动态调整依赖于天气条件的飞机分离和所产生的瓶颈行为。专用的气象仪表和短期数值终端天气预报为预测唤醒涡行为和各自的安全区域提供了输入。 LIDAR监测WSVBS预测在低海拔最关键的盖茨中的正确性。 WSVBS融入了DLR的抵达经理Aman。 WSVBS的绩效考试在2006/07年冬季在法兰克福机场和2010年夏季慕尼黑机场完成。采用重型重量类组合或动态成对分离的概念进行了比较了单跑道上的着陆飞机分离考虑各种飞机类型配对。对于WSVBS非常保守的基线设置,单个跑道的动态成对操作的潜在容量增益似乎非常小。另一方面,考虑各个飞机类型及其各自的唤醒特性可以在应用雷达分离时几乎增加了一分的时间。

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