Operational Analysis of Vertiport Surface Topology

S. Zelinski
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引用次数: 13

Abstract

Urban Air Mobility (UAM) concepts and technologies are being developed to safely enable operations of small, electric-powered or hybrid, pilot-optional, vertical-takeoff-and-landing (VTOL) passenger and cargo aircraft at vertiport facilities in urban and suburban environments. It is likely that many of the highest demand locations for vertiports will be in space constrained urban environments, requiring vertiport designs to maximize throughput within a compact surface footprint. This paper presents several generic vertiport topology design approaches and evaluates their relative surface area utilization and operational efficiency under different wind constrained configurations while meeting safety driven spacing constraints derived from heliport design standards and subject matter expert interviews.
垂直端口表面拓扑的操作分析
城市空中交通(UAM)概念和技术正在开发中,以确保小型、电动或混合动力、飞行员可选、垂直起降(VTOL)客机和货机在城市和郊区环境中的垂直机场设施上安全运行。许多对垂直机场需求最高的地点很可能是在空间有限的城市环境中,这就要求垂直机场的设计能够在紧凑的表面空间内实现吞吐量最大化。本文介绍了几种通用的垂直机场拓扑设计方法,并评估了它们在不同风约束配置下的相对表面积利用率和运行效率,同时满足来自直升机场设计标准和主题专家访谈的安全驱动间距约束。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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