论文:2020,Vol:38,Issue(5):952-958
引用本文:
郭一鸣, 闫建国, 邢小军, 吴慈航, 陈潇然, 李丰浩. 变形翼伞回收系统的建模与分析[J]. 西北工业大学学报
GUO Yiming, YAN Jianguo, XING Xiaojun, WU Cihang, CHEN Xiaoran, LI Fenghao. Modeling and Analysis of Deformed Parafoil Recovery System[J]. Northwestern polytechnical university

变形翼伞回收系统的建模与分析
郭一鸣, 闫建国, 邢小军, 吴慈航, 陈潇然, 李丰浩
西北工业大学 自动化学院, 陕西 西安 710072
摘要:
翼伞的气动力计算是研究翼伞回收系统建模的关键技术问题。为了进一步提高建模精度,同时考虑了翼伞充气变形和后缘下偏量的影响,通过流固耦合方法获得各个状态下的升力系数、阻力系数。然后使用最小二乘法辨识获得气动系数和下偏量及变形之间的量化关系,改进翼伞回收系统的六自由度模型。研究表明,考虑变形及下偏情况的翼伞不仅结构和实际翼伞类似,且获得的气动参数与风洞试验更加接近,证明新方法对于翼伞回收系统精确建模的研究有一定的意义。
关键词:    翼伞    流固耦合    后缘下偏    充气变形    动力学模型   
Modeling and Analysis of Deformed Parafoil Recovery System
GUO Yiming, YAN Jianguo, XING Xiaojun, WU Cihang, CHEN Xiaoran, LI Fenghao
School of Automation, Northwestern Polytechnical University, Xi'an 710072, China
Abstract:
The aerodynamic calculation of parafoil is the key technology of the parafoil recovery system modeling. In order to further improve the model accuracy, the lift coefficient and drag coefficient under the various states are obtained via fluid structure coupling method by considering the influence of the aerodynamic deformation and trailing edge deviation. Then, the least square method is used to identify the quantitative relationship among the aerodynamic coefficient, deflection, and deformation so as to improve the 6-DOF parafoil recovery system model. The results show that the structure of parafoil considering deformation and deflection is not only similar to the actual parafoil, but also the obtained aerodynamic parameters are more close to the wind tunnel test, which proves that the present method has certain significance for precisely modeling the parafoil recovery system.
Key words:    parafoil    fluid structure coupling    trailing edge deflection    inflatable deformation    dynamic model   
收稿日期: 2019-11-25     修回日期:
DOI: 10.1051/jnwpu/20203850952
基金项目: 国家自然科学基金(61771399)与陕西省自然科学基金(2020JM-123)资助
通讯作者:     Email:
作者简介: 郭一鸣(1993-),女,西北工业大学博士研究生,主要从事翼伞气动仿真及控制算法研究。
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参考文献:
[1] NICOLAIDES J D. Parafoil Wind Tunnel Tests[R]. Notre Dame Univ in Dept of Aerospace and Mechanical Engineering, 1971
[2] DOWLING M, COSTELLO M. Feasibility Study of Embedded Wind Energy Harvesting System for Parafoil-Payload Aircraft[J]. Journal of Aircraft, 2018, 55(5):2127-2136
[3] BERGERON K, SEIDEL J, MCLAUGHLIN T E. Wind Tunnel Investigations of Rigid Ram-Air Parachute Canopy Configurations[C]//23rd AIAA Aerodynamic Decelerator Systems Technology Conference, 2015
[4] UDDIN M N, MASHUD O M, WALIULLAH T, et al. Effect of Introducing Large Scale Roughness through Static Curvature Modifications on the Low Speed Flow over an Airfoil[C]//46th AIAA Aerospace Sciences Meeting and Exhibit, 2013
[5] WANNAN W, QINGLIN S, MINGWEI S, et al. Modeling and Control of Parafoil Based on Computational Fluid Dynamics[J]. Applied Mathematical Modelling, 2019(70):378-401
[6] TAO J, LIANG W, SUN Q L, et al. Modeling and Control of a Powered Parafoil in Wind and Rain Environments[J]. IEEE Trans on Aerospace and Electronic Systems, 2017, 53(4):1642-1659
[7] GHOREYSHI M, BERGERON K, LOFTHOUSE A J, et al. CFD Calculation of Stability and Control Derivatives for Ram-Air Parachutes[C]//AIAA Atmospheric Flight Mechanics Conference, 2016
[8] TAO J, SUN Q L, LIANG W, et al. Computational Fluid Dynamics Based Dynamic Modeling of Parafoil System[J]. Applied Mathematical Modelling, 2018(54):136-150
[9] FOGELL N, SHERWIN S J, COTTER C J, et al. Fluid-Structure Interaction Simulation of the Inflated Shape of Ram-Air Parachutes[C]//27th AIAA Aerodynamic Decelerator Systems Conference, 2013
[10] PERALTA R, JOHARI H. Geometry of a Ram-Air Parachute Canopy in Steady Flight from Numerical Simulations[C]//23rd AIAA Aerodynamic Decelerator Systems Technology Conference, 2015
[11] 张思宇,余莉,刘鑫. 翼伞充气过程的流固耦合方法数值仿真[J]. 北京航空航天大学学报, 2020, 46(6):1108-1115 ZHANG Siyu, YU Li, LIU Xing. Numerical Simulation of Parafoil Inflation Process Based on Fluid-Structure Interaction Method[J]. Journal of Beijing University of Aeronautics and Astronautics, 2020, 46(6):1108-1115(in Chinese)
[12] 张春, 曹义华. 基于弱耦合的翼伞充气变形数值模拟[J]. 北京航空航天大学学报, 2013, 39(5):605-609 ZHANG Chun, CAO Yihua. Numerical Simulation of Parafoil Aerodynamics and Structural Deformation Based on Loose Coupled Method[J]. Journal of Beijing University of Aeronautics and Astronautics, 2013, 39(5):605-609(in Chinese)
[13] SLEGERS N, COSTELLO M. Aspects of Control for a Parafoil and Payload System[J]. Journal of Guidance, Control, and Dynamics, 2003, 26(6):898-905
[14] 孙青林,梁炜,陶金, 等. 基于CFD与最小二乘法的翼伞动力学建模[J]. 北京理工大学学报, 2017, 37(2):157-162 SUN Qinglin, LIANG Wei, TAO Jin, et al. Dynamic Modeling of Parafoil Based on CFD Simulation and Least Square[J]. Trans of Beijing Institute of Technology, 2017, 37(2):157-162(in Chinese).
[15] LONGFANG W, WEILIANG M. Analytical Study on Deformation and Structural Safety of Parafoil[J]. International Journal of Aerospace Engineering, 2018, 16:1-7
[16] OMPRAKASH N A. Modeling and Simulation of 9-DOF Parafoil-Payload System Flight Dynamics[C]//AIAA Atmospheric Flight Mechanics Conference and Exhibit, 2006
[17] 刘媛,闫建国,李明君, 等. 冲压式翼伞气动性能研究[J]. 飞行力学, 2017, 35(3):24-27 LIU Yuan, YAN Jianguo, LI Mingjun, et al. Research on Aerodynamic Performance of Ram-Air Parafoil[J]. Flight Dynamics, 2017, 35(3):24-27(in Chinese)