Please wait a minute...
工程设计学报  2009, Vol. 16 Issue (5): 344-347    
工程设计理论、方法与技术     
浮空飞行器压力调节控制系统工程研究
 李 楷1, 李红刚2
1.中国电子科技集团公司 第二十七研究所, 河南 郑州 450047;
2.海军装备研究院 系统所, 北京 100073
Engineering research on aerostat pressure control system
 LI   Kai1, LI  Hong-Gang2
1. No.27 Research Institute, China Electronic Technology Corporation, Zhengzhou 450047, China;
2. System Division, Naval Equipment Institute, Beijing 100073, China
 全文: PDF(464 KB)   HTML
摘要: 压力调节控制系统是浮空型飞行器最基本、最重要的组成部分之一,其工程设计直接关系到浮空平台的安全和性能.根据囊体材料应力分析和浮空平台保持形状的要求,推导了以飞艇为代表的浮空型飞行器压力控制的基本控制要求;探讨了浮空型飞行器压力控制系统的构成和主要参数的工程设计方法;从调节速度和调节范围两方面分析了压力控制系统的调节能力及其对飞艇平台性能的影响,并给出设计飞行高度和空气囊占比的关系曲线,从而明确了设计飞行高度对浮空平台体积的要求;介绍了典型的压力系统控制方法,并经中空实验飞艇自主飞行验证,压力控制效果明显.压力控制系统的工程设计研究侧重于实际应用,具有工程实用价值.
关键词: 浮空器压力控制囊体材料气囊    
Abstract: Pressure control system is one of the most essential and important systems for an aerostat, the engineering design of which may directly relate to its security and capability. The basic pressure control requirement of an aero-boat, as a typical instance of aerostat, was derived according to the stress analysis of envelope material and the requirements of aerodynamic shape-keeping. The construction of the pressure control system and the engineering design of its main parameters were discussed. The regulation capability of the system and its influence on the whole aerostats capability were analyzed from the aspects of regulating-speed and regulating-range. The relationship curve between ballonet-scale and flying-height was provided, which clearly showed the minimum vol. limit of the aerostat according to the designed flyingheight. Moreover, the typical control method of pressure control system was introduced, which was proved effective by autonomous flight experiments of a middle altitude verifying airship. The engineering research on pressure control system of aerostat focuses on its practicality,and is valuable in engineering design.
Key words: aerostat    pressure control    airship envelop materials    airship ballonet
出版日期: 2009-10-28
服务  
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章  
李 楷
李红刚

引用本文:

李 楷, 李红刚. 浮空飞行器压力调节控制系统工程研究[J]. 工程设计学报, 2009, 16(5): 344-347.

LI Kai, LI Hong-Gang. Engineering research on aerostat pressure control system[J]. Chinese Journal of Engineering Design, 2009, 16(5): 344-347.

链接本文:

https://www.zjujournals.com/gcsjxb/CN/        https://www.zjujournals.com/gcsjxb/CN/Y2009/V16/I5/344

[1] 周婧,高红飞,卢林,段国林. 变论域模糊PID控制微流挤出型3D打印机的挤压力研究[J]. 工程设计学报, 2022, 29(5): 572-578.
[2] 刘庆祥,郭冰菁,韩建海,李向攀,黄明祥. 体感交互式上肢镜像康复训练机器人系统[J]. 工程设计学报, 2022, 29(2): 143-152.
[3] 甄文强, 杨奇, 温金鹏, 曾飞, 陈强洪. 环形气囊地面及水下充气试验及仿真分析[J]. 工程设计学报, 2020, 27(2): 263-268.
[4] 李富贵, 龙伟, 罗亮, 詹从来. 预测模糊控制在液化天然气调峰系统的应用[J]. 工程设计学报, 2016, 23(1): 95-100.
[5] 张 振,龚国芳,饶云意,吴伟强,刘 统. TBM试验台支撑推进液压系统设计与仿真分析[J]. 工程设计学报, 2015, 22(5): 324-329.
[6] 张 振,龚国芳,饶云意,吴伟强,刘 统. TBM试验台支撑推进液压系统设计与仿真分析[J]. 工程设计学报, 2015, 22(4): 324-329.