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Aerodynamic Study of Blended Wing Body

机译:混纺机翼体的空气动力学研究

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In recent years, air transportation has increased between major cities. Conventional aircraft's lack fuel efficiency, high Lift to Drag (L/D) ratio, high payload carrying capacity since there has not been a major technological breakthrough in aerodynamic geometry. Hence, there has been a need to develop a new composite structure to push the boundaries of current technologies and to breathe new life into civil transportation. Blended Wing Body (BWB) bridges the gap between future requirements. The BWB configuration is a new concept in aircraft design which provides greater internal volume, aerodynamics and structural efficiency, noise reduction, and most importantly significant improvement on cost-per-seat-mile. The design approach of BWB is to maximize overall efficiency by integrating the propulsion systems, wings, and the body into a single lifting surface. BWB is a unique tailless single entity where the fuselage is merged with wing and tail. Blended wing body has flattened and airfoil surface which contributes higher lift than conventional ones. The objective of this paper is to study aerodynamic study of blended wing body layout.
机译:近年来,主要城市之间的航空运输增加。传统的飞机缺乏燃料效率,高升力拖动(L / D)比率,高有效载荷承载能力,因为空气动力学几何形状中没有主要的技术突破。因此,有需要开发一种新的复合结构,以推动当前技术的界限,并将新的生活呼吸到民用运输。混纺机翼体(BWB)桥接未来要求之间的差距。 BWB配置是飞机设计中的一个新概念,它提供了更大的内部体积,空气动力学和结构效率,降噪,以及最重要的改进对每座位的成本。 BWB的设计方法是通过将推进系统,翼和主体集成到单个提升表面中来最大化整体效率。 BWB是一个独特的尾部单身实体,机身与翼和尾部合并。混纺机翼体具有扁平的翼型和翼型表面,其贡献比常规升力更高。本文的目的是研究混合翼体布局的空气动力学研究。

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