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BOARDING PROCESS ASSESSMENT OF NOVEL AIRCRAFT CABIN CONCEPTS

机译:新型飞机客舱概念的登机过程评估

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For airlines, an efficient aircraft turnaround is an essential element to be competitive. Passenger boarding and disembarking, as key processes of an aircraft turnaround, are often on the critical path. Hence, a passenger process time reduction would also shorten the total turnaround time. Novel cabin concepts which can be adapted during boarding, such as foldable seats, provide more space for passengers’ movements and them stowing luggage. Yet, such concepts have not been investigated thoroughly, even though they promise a significant process time reduction. This paper investigates a lifting seat pan and a sideways foldable seat concept using the two-dimensional agent-based passenger flow simulation framework PAXelerate. The case studies follow the Monte Carlo approach with a probabilistic distribution of passenger anthropometrics, a variation of load factor and hand luggage to be stowed. In comparison with a reference case, a state-of-the-art short-to-medium haul aircraft with 180 seats in a six-abreast single-aisle layout, a boarding time reduction of up to 28% could be identified. This can be translated into an 11%-shorter total turnaround time, which is a significant contribution towards promoted environmental goals of international regulators.
机译:对于航空公司而言,有效的飞机周转是提高竞争力的重要因素。作为飞机转机的关键过程,旅客登机和下机通常处于关键路径上。因此,减少乘客处理时间也将缩短总周转时间。可在登机期间进行调整的新颖机舱概念(例如可折叠座椅)为乘客的活动和他们的行李寄存提供了更多空间。然而,尽管这些概念有望显着减少工艺时间,但尚未对其进行彻底的研究。本文研究了使用基于二维代理的乘客流量模拟框架PAXelerate的升降式座板和侧向折叠式座椅的概念。案例研究遵循了蒙特卡洛方法,其中包括了乘客人体测量学的概率分布,装载因子和手提行李的变化。与参考案例相比,采用最先进的中短途飞机,可在六座飞机的单通道布局中提供180个座位,登机时间最多可减少28%。这可以将总周转时间缩短11%,这对促进国际监管机构的环境目标做出了重大贡献。

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