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Zhejiang University City College · China
Extended Range eVTOL
Zhejiang University City College Extrended Range eVTOL
多旋翼 · 原型机 · 核查 2026-10-01
下列为 VFS 目录披露的参数,包含设计目标及历史版本信息。目录阶段不等于适航或量产状态;不同任务条件的航程与载荷不能直接当作同一条件下的性能。
主要参数
- 座位/载员
- 未公开/未录入
- 乘客
- 未公开/未录入
- 驾驶方式
- 1 pilot and luggage
- 航程(按来源口径)
- 60 km (37 miles)
- 巡航速度
- Unknown
- 最大速度
- 未公开/未录入
- 最大起飞重量
- 未公开/未录入
- 载荷
- 未公开/未录入
- 空重
- 未公开/未录入
- 长度
- 未公开/未录入
- 翼展
- 未公开/未录入
- 高度
- 未公开/未录入
- 动力来源
- Hydrogen fuel cells and batteries
- 电机
- 8 electric motors
- 旋翼/螺旋桨
- 8 stacked propellers
- 续航时间
- 未公开/未录入
- 飞行高度
- 未公开/未录入
- 安全设计
- Distributed Electric Propulsion (DEP) uses multiple propellers or electric ducted fans, each powered by electric motors, to increase safety through redundancy. If one or more components fail, the remaining ones can still ensure a safe landing. There are also redundancies of critical components in the sub-systems of the aircraft providing safety through redundancy. Having multiple redundant systems on any aircraft decreases having any single point of failure. The aircraft has no moving surfaces or tilting parts when transitioning from vertical to forward flight and the reverse which increases safety by reducing complexity.
全部原始参数
Specifications:
- Aircraft type
- Passenger eVTOL multicopter prototype aircraft
- Piloting
- 1 pilot and luggage
- Cruise speed
- Unknown
- Range
- 60 km (37 miles)
- Propellers
- 8 stacked propellers
- Electric motors
- 8 electric motors
- Power source
- Hydrogen fuel cells and batteries
- Fuselage
- Carbon fiber composite
- Window
- Roof over the cockpit with open sides and possibly a windscreen in the front
- Landing gear
- The landing gear has fixed quadricycle wheeled landing gear on the prototype. The landing gear might be designed for fixed skid landing gear.
- Safety features
- Distributed Electric Propulsion (DEP) uses multiple propellers or electric ducted fans, each powered by electric motors, to increase safety through redundancy. If one or more components fail, the remaining ones can still ensure a safe landing. There are also redundancies of critical components in the sub-systems of the aircraft providing safety through redundancy. Having multiple redundant systems on any aircraft decreases having any single point of failure. The aircraft has no moving surfaces or tilting parts when transitioning from vertical to forward flight and the reverse which increases safety by reducing complexity.