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混合动力三栖飞行器仿真设计

Simulation Design of Hybrid Power Triphibious Vehicle
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摘要 在新型轻量化轮内电动机技术、涡桨飞机发动机技术及高效太阳能电池技术日趋成熟的前提下,配合高强度复合材料对低风阻电动汽车、小水线面双体船和超轻型飞机进行技术整合后,一体化仿真设计制造已成为可能。混合动力是优化发动机驱动功效,减少交通工具污染环境的有效途径。混合动力三栖飞行器以电驱动防水轮内电动机方式作为陆基无污染交通工具,以电驱动喷水推进器实现水基航行,以燃烧航油方式驱动涡桨飞机发动机完成飞行器空中飞行,在机体大面积外覆宇航级高性能太阳能电池实现昼间辅助供电,通过虚拟仿真设计予以实现。 Under the premise of increasingly mature of new lightweight in-wheel motor technology,turboprop plane engine technology and high-efficiency solar cell technology,it was combined that high-strength composite materials for technical integration of low-wind resistance electric vehicles,small water-line double-body ships and ultra light aircraft,integrated simulation design and manufacturing has become possible.Hybrid Power was an effective way to optimize engine drive efficiency and reduce vehicle pollution.Hybrid power triphibious vehicle with hybrid electric wheel motors within the landbased pollution-free means of transport was a mean to electric driven water jet propulsion to achieve water-based navigation,realized driven aviation fuel combustion engine turboprop aircraft and the completion of aircraft flight,in a large area outside the body follow-up high-performance solar cells,achieved daytime auxiliary power supply through virtual simulation.
作者 杜佳颖 DU Jiaying(Zhengzhou No.1 Middle School,Zhengzhou 450000,China)
机构地区 郑州市第一中学
出处 《新技术新工艺》 2019年第1期38-41,共4页 New Technology & New Process
关键词 轮内电动机 喷水推进器 涡桨飞机发动机 混合动力 三栖飞行器 仿真设计 in-wheel motor water jet propeller turboprop aircraft engine hybrid power triphibious vehicle simulation design
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参考文献3

  • 1管德,郦正能编著..飞机结构强度[M].北京:北京航空航天大学出版社,2005:172.
  • 2王志瑾,姚卫星编著..飞机结构设计[M].北京:国防工业出版社,2007:210.
  • 3党兵..虚拟现实中的虚拟场景生成研究[D].北京交通大学,2010:

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