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Optimization of an Advanced Hybrid Wing Body Concept using HCDstruct Version 1.2

机译:使用HCDstruct 1.2版优化高级混合翼机体概念

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Hybrid Wing Body (HWB) aircraft concepts continue to be promising candidates for achieving the simultaneous fuel consumption and noise reduction goals set forth by NASA's Environmentally Responsible Aviation (ERA) project. In order to evaluate the projected benefits, improvements in structural analysis at the conceptual design level were necessary; thus, NASA researchers developed the Hybrid wing body Conceptual Design and structural optimization (HCDstruct) tool to perform aeroservoelastic structural optimizations of advanced HWB concepts. In this paper, the authors present substantial updates to the HCDstruct tool and related analysis, including: the addition of four inboard and eight outboard control surfaces and two all-movable tail/rudder assemblies, providing a full aeroservoelastic analysis capability; the implementation of asymmetric load cases for structural sizing applications; and a methodology for minimizing control surface actuation power using NASTRAN SOL 200 and HCDstruct's aeroservoelastic finite-element model (FEM).
机译:混合翼机体(HWB)飞机的概念​​继续成为实现NASA的环境责任航空(ERA)项目提出的同时降低油耗和降低噪音的目标的有希望的候选人。为了评估预期的收益,有必要在概念设计级别上改进结构分析;因此,NASA研究人员开发了混合翼体概念设计和结构优化(HCDstruct)工具,以对高级HWB概念进行航空弹性结构优化。在本文中,作者对HCDstruct工具和相关分析进行了实质性更新,包括:增加了四个内侧和八个外侧控制面以及两个全活动式尾翼/方向舵组件,从而提供了完整的航空弹性分析能力;为结构选型应用实现非对称荷载工况;以及使用NASTRAN SOL 200和HCDstruct的航空弹性有限元模型(FEM)来最小化控制表面驱动力的方法。

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