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Design of a 4-seat, general aviation, electric aircraft.

机译:四座通用航空电动飞机的设计。

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摘要

Range and payload of current electric aircraft is limited primarily due to low energy density of batteries. However, recent advances in battery technology promise storage of more than 1 kWh of energy per kilogram of weight in the near future. This kind of energy storage makes possible the design of an electric aircraft comparable to, if not better than existing state-of-the art general aviation aircraft powered by internal combustion engines. This thesis explores through parametric studies the effect of lift-to-drag ratio, flight speed, and cruise altitude on required thrust power and battery energy and presents the conceptual and preliminary design of a four-seat, general aviation electric aircraft with a takeoff weight of 1750 kg, a range of 800 km, and a cruise speed of 200 km/h. An innovative configuration design will take full advantage of the electric propulsion system, while a Lithium-Polymer battery and a DC brush less motor will provide the power. Advanced aerodynamics will explore the greatest possible extend of laminar flow on the fuselage, the wing, and the empennage surfaces to minimize drag, while advanced composite structures will provide the greatest possible savings on empty weight. The proposed design is intended to be certifiable under current FAR 23 requirements.
机译:当前的电动飞机的航程和有效载荷主要由于电池的低能量密度而受到限制。但是,电池技术的最新发展有望在不久的将来每千克重量存储超过1 kWh的能量。这种能量存储使电动飞机的设计成为可能,甚至与现有的由内燃机提供动力的最先进的通用航空飞机不相上下。本文通过参数研究探索了升阻比,飞行速度和巡航高度对所需推力功率和电池能量的影响,并提出了具有起飞重量的四座通用航空电动飞机的概念​​和初步设计。航程为1750公斤,航程为800公里,巡航速度为200公里/小时。创新的配置设计将充分利用电力推进系统,而锂聚合物电池和无刷直流电的电动机将提供动力。先进的空气动力学将探索层流在机身,机翼和尾翼表面上的最大可能扩展,以最大程度地减小阻力,而先进的复合材料结构将最大程度地节省空重。拟议的设计旨在根据当前的FAR 23要求进行认证。

著录项

  • 作者

    Rajagopalan, Arvindhakshan.;

  • 作者单位

    San Jose State University.;

  • 授予单位 San Jose State University.;
  • 学科 Engineering Aerospace.
  • 学位 M.S.
  • 年度 2013
  • 页码 45 p.
  • 总页数 45
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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