热能与动力

粘滞作用下压缩机舌簧阀建模与运动过程

  • 慕光宇 ,
  • 米小珍 ,
  • 王枫
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  • (1. 大连交通大学 a. 机械工程学院;b.交通运输工程学院; c. 动车学院,辽宁 大连 116028;2.大连海洋大学  机械与动力工程学院,辽宁  大连  116023)
慕光宇(1982-),女,博士生,讲师,E-mail:mugy1982@126.com.

收稿日期: 2018-03-19

  修回日期: 2018-04-09

  网络出版日期: 2018-04-09

基金资助

 国家自然科学基金资助项目(51205035);辽宁省自然科学基金资助项目(201602133;20170540107;20180550493).

Modeling and motion analysis of the compressor reed valve under viscous effect

  • MU Guang-yu ,
  • MI Xiao-zhen ,
  • WANG Feng
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  • (1a. Mechanical Engineering College; 1b. School of Transportation Engineering; 1c. School of High-Train and Maintenance 
    Service
    ,Dalian Jiaotong University, Dalian 116028, China;2. Mechanical and Power Engineering College, Dalian Ocean University, Dalian 116023, China)

Received date: 2018-03-19

  Revised date: 2018-04-09

  Online published: 2018-04-09

Supported by

 

摘要

为进一步分析压缩机舌簧阀运动失效机理,揭示油膜黏滞力对舌簧阀运动过程的影响,建立黏滞作用下排气阀运动的单自由度系统模型.该模型综合考虑了阀片工作过程中与限位器发生贴绕的运动特点,以及黏滞力对阀片运动的影响.采用四阶龙格库塔法编制程序,在MATLAB环境下进行数值求解, 并通过排气阀位移测量实验进行验证.结果表明, 考虑黏滞作用的运动模型计算结果中有71.9 %的数据点落在10 %误差带内.与不考虑黏滞作用的单质点模型相比,该模型可更加准确地描述排气阀的动态特性. 最后,利用新模型分析了运动黏度和阀片刚度对舌簧排气阀开启时间和关闭过程的影响.该研究可为舌簧阀的可靠性设计及耐久性研究提供参考.

本文引用格式

慕光宇 , 米小珍 , 王枫 . 粘滞作用下压缩机舌簧阀建模与运动过程[J]. 大连海事大学学报, 2018 , 44(4) : 115 -120 . DOI: 10.16411/j.cnki.issn1006-7736.2018.04.017

Abstract

 In order to further analyze the failure mechanism of the reed-type valve in a compressor and reveal the influence of viscous effect arising from the oil between the valve and its seat on the movement process of reed valve, the single-degree of the freedom system model of discharge reed valve motion under viscous action was established. The motion characteristic of the valve reed bending with limiter during the working process and effect of viscous force on valve movement were taken into account in the model. The fourth-order Runge-Kutta method was used to program the numerical solution in the MATLAB environment. The displacement measurement experiment of the discharge reed valve was used to verify and test. Results show that 71.9 % data points in the calculated results of the proposed model fall within 10 % error bands. It is concluded that the proposed model can describe the dynamic characteristics of the reed valve more accurately compared with the model without viscous effect. Finally, the influences of kinematical viscosity and stiffness on the valve opening delay and closing process were analyzed with the proposed model. This research can provide a reference for the optimization and reliability design of the reedtype valve.

参考文献

[1]Feng Wang, Guangyu Mu & Qiang Guo.Design optimization of compressor reed valve based on axiomatic designInternational journal of refrigeration,2016,72: 132-139.[J].International journal of refrigeration, 2016, 72:132-139 [2]yuan Ma, Zhilong He, Xueyuan Peng & Ziwen Xing.Experimental investigation of the discharge valve dynamics in a reciprocating compressor for trans-critical CO2 refrigeration cycleApplied Thermal Engineering,2012,32: 13-21.[J].Applied Thermal Engineering, 2012, 32:13-21 [3]Costagliola, M.amp; Great Neck,NYThe Theory of Spring-Loaded Valves for Reciprocating Compressors[J].Journal of applied mechanics, 1950, 17(4):415-420 [4]SOEDEL Werner.Design and Mechanics of Compressor Valves[C]. Proceedings of the International Compressor Conference at Purdue: Short course, West Lafayette, Indiana, USA. 1984. [5]Guangbin Liu, Yuanyang Zhao, Bin Tang, Liansheng Li.Dynamic performance of suction valve in stepless capacity regulation system for large-scale reciprocating compressorApplied Thermal Engineering,2016,96: 167-177.[J].Applied Thermal Engineering, 2016, 96:167-177 [6]Lorentzen, G.On the performance of automatic compressor valves[C]. In: Proceedings of the 9th International Congress of Refrigeration, Paris. 1955. [7]Wambsganss, M.W. Mathematical Modeling and Design Evaluation of High-Speed Reciprocating Compressors[D]. PHD Thesis, Purdue University. 1966. [8]Giacomelli, E., Giorgetti, M., Evaluation of oil stiction in ring valves[C]. Proceedings of the Purdue Compressor Technology Conference, West Lafayette, IN, 1974.vol. 2, pp. 167-170. [9]Khalifa, H.E., Liu, X., Analysis of stiction effect on the dynamics of compressor suction valve[C]. Proceedings of the International Compressor Engineering Conference at Purdue, West Lafayette, IN, 1998.vol. 1, pp. 87-92. [10]Bauer, F.The influence of liquid on compressor valve[C]. Proceedings of the International Compressor Conference at Purdue, West Lafayette, IN, 1990, vol. 2, pp. 647-653. [11]Rodrigo A.Pizarro-Recabarren,Jader RBarbosa Jr.,Cesar J. Deschamps. Modeling the stiction effect in automatic compressor valves. International Journal of Refrigeration,2013,36: 1916-1924.[J].International Journal of Refrigeration, 2013, 36:1916-1924 [12]Augusto Jose Pereira Zimmermann.Visualization of the Opening Process of a Discharge Reed Valve in the Presence of Oil [C]. Proceedings of the International Compressor Engineering Conference at Purdue, West Lafayette, IN, 2014, C1569. [13]林梅, 姚峻, 潘树林.簧片阀三种力学模型的建立及比较[J].应用力学学报, 1997, 14(1):118-123 [14]束鹏程.气体力和油粘着对制冷压缩机及其气阀特性的影响[J].制冷学报, 1983, (4):13-20 [15]金听祥, 郑祖义, 陈焕新, 等.空调制冷系统中的油滞留特性分析[J].华中科技大学学报自然科学版, 2008, 36(4):88-91 [16]刘赵淼, 李锦辉, 申峰.收敛楔中黏塑性流体动力润滑性能及边界滑移行为[J].机械工程学报, 2014, 50(9):91-99 [17]慕光宇, 王枫, 米小珍.压缩机舌簧排气阀运动模型对比及动态特性影响因素分析[J].西安交通大学学报, 2017, 51(9):69-76
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