Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust

Flying wing is a preferred configuration for unmanned combat air vehicle(UCAV),in which its airframe is highly integrated with intake and exhaust of propulsion system. To implement rapid geometric model of flying wing UCAV concept,a parametric geometry modeling method for flying wing UCAV configurat...

Full description

Bibliographic Details
Main Authors: FANG Xinrui, YU Xiongqing
Format: Article
Language:zho
Published: Editorial Department of Advances in Aeronautical Science and Engineering 2024-02-01
Series:Hangkong gongcheng jinzhan
Subjects:
Online Access:http://qktg.shnu.edu.cn/zrb/shsfqkszrb/ch/reader/view_abstract.aspx?file_no=2024-1-30.htm
_version_ 1797271104864124928
author FANG Xinrui
YU Xiongqing
author_facet FANG Xinrui
YU Xiongqing
author_sort FANG Xinrui
collection DOAJ
description Flying wing is a preferred configuration for unmanned combat air vehicle(UCAV),in which its airframe is highly integrated with intake and exhaust of propulsion system. To implement rapid geometric model of flying wing UCAV concept,a parametric geometry modeling method for flying wing UCAV configuration integrated with the intake and exhaust is proposed in this paper. Firstly,parametric models for configuration of the flying wing airframe and the intake and exhaust are established using class function/shape function. Then,the related geometry parameters between the flying wing airframe and the intake and exhaust are identified,and the correlative control rules are set to match airframe-propulsion interactions. 3D geometric models of the flying wing UCAV configuration are automatically generated by use of the parametric geometry model and CATIA API. Application examples indicate that flying wing UCAV configurations can automatically adjust its shape to match the different intake and exhaust concepts by use of the proposed method. The method can effectively improve efficiency for flying wing UCAV conceptual design.
first_indexed 2024-04-25T02:14:52Z
format Article
id doaj.art-54d9603a536d4a96a7ab21e295658ded
institution Directory Open Access Journal
issn 1674-8190
language zho
last_indexed 2024-04-25T02:14:52Z
publishDate 2024-02-01
publisher Editorial Department of Advances in Aeronautical Science and Engineering
record_format Article
series Hangkong gongcheng jinzhan
spelling doaj.art-54d9603a536d4a96a7ab21e295658ded2024-03-07T09:54:37ZzhoEditorial Department of Advances in Aeronautical Science and EngineeringHangkong gongcheng jinzhan1674-81902024-02-01151303710.16615/j.cnki.1674-8190.2024.01.042024014Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaustFANG Xinrui0YU Xiongqing1College of Aeronautical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaCollege of Aeronautical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaFlying wing is a preferred configuration for unmanned combat air vehicle(UCAV),in which its airframe is highly integrated with intake and exhaust of propulsion system. To implement rapid geometric model of flying wing UCAV concept,a parametric geometry modeling method for flying wing UCAV configuration integrated with the intake and exhaust is proposed in this paper. Firstly,parametric models for configuration of the flying wing airframe and the intake and exhaust are established using class function/shape function. Then,the related geometry parameters between the flying wing airframe and the intake and exhaust are identified,and the correlative control rules are set to match airframe-propulsion interactions. 3D geometric models of the flying wing UCAV configuration are automatically generated by use of the parametric geometry model and CATIA API. Application examples indicate that flying wing UCAV configurations can automatically adjust its shape to match the different intake and exhaust concepts by use of the proposed method. The method can effectively improve efficiency for flying wing UCAV conceptual design.http://qktg.shnu.edu.cn/zrb/shsfqkszrb/ch/reader/view_abstract.aspx?file_no=2024-1-30.htmflying wingconceptual designparametric modelingairframe-propulsion integrationunmanned air vehicle
spellingShingle FANG Xinrui
YU Xiongqing
Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
Hangkong gongcheng jinzhan
flying wing
conceptual design
parametric modeling
airframe-propulsion integration
unmanned air vehicle
title Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
title_full Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
title_fullStr Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
title_full_unstemmed Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
title_short Parametric geometry modeling of flying wing UAV configuration integrated with intake and exhaust
title_sort parametric geometry modeling of flying wing uav configuration integrated with intake and exhaust
topic flying wing
conceptual design
parametric modeling
airframe-propulsion integration
unmanned air vehicle
url http://qktg.shnu.edu.cn/zrb/shsfqkszrb/ch/reader/view_abstract.aspx?file_no=2024-1-30.htm
work_keys_str_mv AT fangxinrui parametricgeometrymodelingofflyingwinguavconfigurationintegratedwithintakeandexhaust
AT yuxiongqing parametricgeometrymodelingofflyingwinguavconfigurationintegratedwithintakeandexhaust