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      Overall Performance Analysis–Oriented Aerodynamic Configuration Optimization Design for Hypersonic Vehicles

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          Abstract

          At present, there is little consideration for the overall performance when optimizing the aerodynamic configuration design for hypersonic vehicles. This paper proposes a novel approach for integrated optimal design of overall performance and aerodynamic configuration, taking aerodynamic configuration and overall performance constraints into consideration. First, a geometric parametric model of hypersonic vehicles was established using the quadratic curve method, and three overall performance parameters (aerodynamic properties, volume ratio, and operational stability) of hypersonic vehicles were calculated by engineering estimation. Then, key geometric parameters affecting aerodynamic properties, volume ratio, and operational stability were determined based on parameter influence analysis. Based on that, the aerodynamic configuration optimal for the hypersonic vehicle was achieved using a computational fluid dynamics-based surrogate model optimization method with overall performance parameters as constraints. Finally, the accuracy of an engineering estimation approach and the effectiveness of the optimal design method used were verified by wind tunnel tests. This study provides effective technical means for aerodynamic configuration optimization for hypersonic vehicles.

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          Most cited references30

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          Analytical aeropropulsive-aeroelastic hypersonic-vehicle model with dynamic analysis

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            Fast dynamic grid deformation based on Delaunay graph mapping

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              Methods for the Accurate Computations of Hypersonic Flows: 1. AUSMPW + Scheme

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                Author and article information

                Journal
                jsr
                Journal of Spacecraft and Rockets
                J. Spacecraft
                American Institute of Aeronautics and Astronautics
                0022-4650
                1533-6794
                25 May 2017
                September–October 2017
                : 54
                : 5
                : 1015-1026
                Affiliations
                China Academy of Launch Vehicle Technology , 100076 Beijing, People’s Republic of China
                Northwestern Polytechnical University , 710072 Shanxi, People’s Republic of China
                Author notes
                [*]

                Senior Engineer, Aircraft Design Group, Science and Technology on Space Physics Laboratory; dengfan8245@ 123456sina.cn .

                [†]

                Engineer, Aircraft Design Group, Science and Technology on Space Physics Laboratory; zihan325@ 123456126.com .

                [‡]

                Professor, Aircraft Design Group, Science and Technology on Space Physics Laboratory; zihan325@ 123456hotmail.com .

                [§]

                Assistant Professor, School of Astronautics, National Key Laboratory of Aerospace Flight Dynamics, Xi’an; zhangdong@ 123456nwpu.edu.cn .

                [¶]

                Professor, School of Astronautics, National Key Laboratory of Aerospace Flight Dynamics, Xi’an; stangnwpu@ 123456163.com .

                Article
                A33729 A33729
                10.2514/1.A33729
                fc42d99a-e95c-4b70-8bcd-93044348757f
                Copyright © 2017 by the American Institute of Aeronautics and Astronautics, Inc. All rights reserved. All requests for copying and permission to reprint should be submitted to CCC at www.copyright.com; employ the ISSN 0022-4650 (print) or 1533-6794 (online) to initiate your request. See also AIAA Rights and Permissions www.aiaa.org/randp.
                History
                : 8 August 2016
                : 21 February 2017
                : 6 March 2017
                Page count
                Figures: 20, Tables: 5
                Categories
                Full-Length Paper

                Engineering,Physics,Mechanical engineering,Space Physics
                Engineering, Physics, Mechanical engineering, Space Physics

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