期刊文献+

Comprehensive Parameter for Analyzing Condensation in Pneumatic System

Comprehensive Parameter for Analyzing Condensation in Pneumatic System
下载PDF
导出
摘要 The condensation in pneumatic system is a complex physical phenomenon dependant upon status variation and phase transitions,which are related to the parameters of the compressed air,atmospheric conditions and the dimensions of the pneumatic components.Up to now,general research method for this problem is to calculate the status variation and movement quantity by numerical simulation and experiment directly.The comprehensive parameters composed of several different effect factors are rarely used to study the condensation.The composed components and the working conditions of each cylinder are different,a large number of experiments and complex calculations are necessary to determine the condensation.Additionally,the transferability of the determined results is poor.In this paper,the charging and discharging systems of serials cylinder with different structure parameters are studied.The condensation of the systems is observed and the effects of the structure parameters on condensation are analyzed.The changing trends of relative humidity,natural frequency and average speed against the structural parameters of the components during discharge of the pneumatic systems are analyzed.Three comprehensive parameters used to analyze and determine condensation composed by structure parameters of components are proposed,namely,the ratio of the effective area of the discharge tube and the container volume,the square root of the effective area of the discharge tube divided by the product of the container volume and the length of the discharge tube,and the discharge dimensionless tube-volume.The experimental results show that these comprehensive parameters can be used to quantitatively determine whether internal,external or zero condensation occurs in a pneumatic system,and can be also used to quantitatively analyze the experimental data of condensation in pneumatic systems directly.At the same time,the effect factors are too much and the effect relationships are very complex,which causes that the conclusions can't be put forward by using single effect factor in experimental data processing individually.The three obtained comprehensive parameters can be used to resolve the above problem.The proposed parameters can also resolve the problem of poor transferability in determining the state of condensation in pneumatic systems,and provide a novel method for the further study of condensation theory. The condensation in pneumatic system is a complex physical phenomenon dependant upon status variation and phase transitions,which are related to the parameters of the compressed air,atmospheric conditions and the dimensions of the pneumatic components.Up to now,general research method for this problem is to calculate the status variation and movement quantity by numerical simulation and experiment directly.The comprehensive parameters composed of several different effect factors are rarely used to study the condensation.The composed components and the working conditions of each cylinder are different,a large number of experiments and complex calculations are necessary to determine the condensation.Additionally,the transferability of the determined results is poor.In this paper,the charging and discharging systems of serials cylinder with different structure parameters are studied.The condensation of the systems is observed and the effects of the structure parameters on condensation are analyzed.The changing trends of relative humidity,natural frequency and average speed against the structural parameters of the components during discharge of the pneumatic systems are analyzed.Three comprehensive parameters used to analyze and determine condensation composed by structure parameters of components are proposed,namely,the ratio of the effective area of the discharge tube and the container volume,the square root of the effective area of the discharge tube divided by the product of the container volume and the length of the discharge tube,and the discharge dimensionless tube-volume.The experimental results show that these comprehensive parameters can be used to quantitatively determine whether internal,external or zero condensation occurs in a pneumatic system,and can be also used to quantitatively analyze the experimental data of condensation in pneumatic systems directly.At the same time,the effect factors are too much and the effect relationships are very complex,which causes that the conclusions can't be put forward by using single effect factor in experimental data processing individually.The three obtained comprehensive parameters can be used to resolve the above problem.The proposed parameters can also resolve the problem of poor transferability in determining the state of condensation in pneumatic systems,and provide a novel method for the further study of condensation theory.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第5期641-646,共6页 中国机械工程学报(英文版)
基金 supported by National Natural Science Foundation of China (Grant No.50575209)
关键词 pneumatic system CONDENSATION comprehensive parameter structure parameter pneumatic system condensation comprehensive parameter structure parameter
  • 相关文献

参考文献3

二级参考文献11

  • 1左克罗MJ 霍夫曼JD.气体动力学[M].北京:国防工业出版社,1984.205.
  • 2王祖温.結露に関する研究(第一報:結露の分类、メカニズム等).SMC技術報告書ER-STM-91-5, 1991:1-4
  • 3王祖温. 結露に関する研究(第二報:結露の影响因素). SMC技術報告書ER-STM-91-6, 1991:1-5
  • 4王祖温. 結露に関する研究(第三報:結露の対策). SMC技術報告書ER-STM-91-7, 1991:1-4
  • 5王祖温. 結露に関する研究(第四報:結露の実験研究). SMC技術報告書ER-STM-91-8, 1991:1-6
  • 6罗志昌. 流体网络理论. 北京:机械工业出版社, 1988
  • 7徐挺.相似理论与模型设计试验.北京:中国农业机械出版社,1982
  • 8Zhang H P, Ikeo S, Takahashi K, et al. Study on the condensation of water in a pneumatic system. In:Proceeding of the Second JHPS International Symposium on Fluid Power, Tokyo, 1993
  • 9Parker C Reist. Introduction to Aerosol Science. Macmillan Publishing Company, 1984
  • 10金英子,李军,包钢,王祖温.气动系统充放气过程中传热系数的测定及其影响[J].哈尔滨工业大学学报,1998,30(1):15-19. 被引量:17

共引文献11

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部