期刊文献+

运载火箭液压伺服系统节点热模型仿真分析与试验

Nodal Thermal Model Simulation and Experiment of a Thrust Vest Control Hydraulic Servo System
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摘要 提出节点热模型分析方法,从电液伺服系统生热、传热机理出发,建立节点热物理模型,推导出节点热数学模型。在此基础上,搭建系统节点热物理模型,列写各节点热数学模型并组装成系统,并在Matlab下仿真求解。设计一套温度试验系统,得到了覆盖全系统的温度场信息。将仿真结果与试验数据对比,验证了节点热模型分析方法。旨在把握伺服系统温升机理,建立一套具有一定可行性和精确度的伺服系统热分析方法,为温控方案设计和技术创新奠定基础。 In order to understand the mechanism of temperature rising in servo system, laying a solid foundation for better temperature control and technical innovation of servo systems, a nodal thermal model analytical method for a Thrust Vest Control hydraulic servo system was put forward. Based on the heat generation and transfer theory, the thermal physical model was established and the thermal mathematical model was derived. The system model was established in the form of one-order differential equations, and was calculated using Matlab. Experiments were conducted to obtain the temperature field of the whole system. The simulation results were compared with experimental data, validating the nodal thermal model analytical method.
出处 《导弹与航天运载技术》 北大核心 2015年第1期29-32,37,共5页 Missiles and Space Vehicles
关键词 液压伺服系统 热分析 节点模型 Hydraulic servo system Thermal analysis Nodal model
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参考文献10

  • 1胡道鑫.飞机液压系统热设计[M].北京:第三机械工业部,1979.
  • 2谢三保,焦宗夏.飞机液压系统温度仿真计算与分析[J].机床与液压,2005,33(5):67-68. 被引量:25
  • 3Slidders J A, Tilley D O, Chapple P J. Thermal-hydraulic performance prediction in fluid power systems[C]. London: Proceedings of the Institution of Mechanical Engineers, 1996, 210(4): 231-242.
  • 4Li C G, Jiao Z X. Calculation method for thermal-hydraulic system simulation[J]. Journal of Heat Transfer, 2008, 130(8).
  • 5李永林,李宝瑞,沈燕良,胡良谋.液压伺服阀的热力学模型研究及数字仿真[J].系统仿真学报,2009,21(2):340-343. 被引量:5
  • 6王剑鹏.50型装载机液压系统动态特性与热平衡研究[D].长春:吉林大学,2011.
  • 7波特尔MC,萨默顿MC.全美经典学习指导系列工程热力学[M].郭航,译.北京:科学出版社,2002.
  • 8SALEH J M.流体流动手册[M].邓敦夏,译.北京:中国石化出版社,2004.
  • 9Schlunder E U. Heat exchanger design handbook[M]. London: Hemisphere Publishing Corporation, 1983.
  • 10王正林,王胜开.Matlab/Simulink与控制系统仿真[M].北京:电子工业出版社,2012:89.90.

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