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潜孔钻机油气缓冲系统动态特性研究
  • ISSN号:1006-1355
  • 期刊名称:《噪声与振动控制》
  • 时间:0
  • 分类:TP271.32[自动化与计算机技术—控制科学与工程;自动化与计算机技术—检测技术与自动化装置] TL413.233[核科学技术—核技术及应用]
  • 作者机构:[1]College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China
  • 相关基金:Project(51175518)supported by the National Natural Science Foundation of China
中文摘要:

To increase the efficiency and reliability of the thermodynamics analysis of the hydraulic system, the method based on pseudo-bond graph is introduced. According to the working mechanism of hydraulic components, they can be separated into two categories: capacitive components and resistive components. Then, the thermal-hydraulic pseudo-bond graphs of capacitive C element and resistance R element were developed, based on the conservation of mass and energy. Subsequently, the connection rule for the pseudo-bond graph elements and the method to construct the complete thermal-hydraulic system model were proposed. On the basis of heat transfer analysis of a typical hydraulic circuit containing a piston pump, the lumped parameter mathematical model of the system was given. The good agreement between the simulation results and experimental data demonstrates the validity of the modeling method.

英文摘要:

To increase the efficiency and reliability of the thermodynamics analysis of the hydraulic system, the method based on pseudo-bond graph is introduced. According to the working mechanism of hydraulic components, they can be separated into two categories: capacitive components and resistive components. Then, the thermal-hydraulic pseudo-bond graphs of capacitive C element and resistance R element were developed, based on the conservation of mass and energy. Subsequently, the connection rule for the pseudo-bond graph elements and the method to construct the complete thermal-hydraulic system model were proposed. On the basis of heat transfer analysis of a typical hydraulic circuit containing a piston pump, the lumped parameter mathematical model of the system was given. The good agreement between the simulation results and experimental data demonstrates the validity of the modeling method.

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期刊信息
  • 《噪声与振动控制》
  • 中国科技核心期刊
  • 主管单位:中国科协
  • 主办单位:中国声学学会
  • 主编:严济宽
  • 地址:上海华山路1954号交通大学
  • 邮编:200030
  • 邮箱:NVC@sjtu.edu.cn
  • 电话:021-62932221
  • 国际标准刊号:ISSN:1006-1355
  • 国内统一刊号:ISSN:31-1346/TB
  • 邮发代号:4-672
  • 获奖情况:
  • 国内外数据库收录:
  • 日本日本科学技术振兴机构数据库,中国中国科技核心期刊,中国北大核心期刊(2004版),中国北大核心期刊(2008版)
  • 被引量:8372