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논문검색

Thermal-hydraulic Analysis of Buffer System for Hydraulic Pile Hammers by Pseudo-bond Graph

초록

영어

The damage of cylinder and equipment due to the pile detaching can be avoided by using the buffer device with large flow, which adopts throttle buffer inside the cylinder combining with the control of the relief valve outside the cylinder. To investigate the thermodynamic characteristics of the cylinder chambers and the law of movement of piston, the accurate mathematic model need to be established so the method based on pseudo-bond graph is introduced. According to the conservation equations for mass and energy, the thermal-hydraulic pseudo bond graph C and R elements are developed, and the connection rule for the two elements are determined based on their input and output variables. The bond graph model of the buffer system containing the coupled of multiple energy domains is obtained in a unified way based on the structure and working principle of buffer device, then the system state equations have been derived from the model. The model can be used in variable parameters’ simulation with the parameters in the experiment, the pressure simulation data of two chambers of impact cylinder agree well with the experimental results, which indicate that the model can be used for the design and optimization of buffer device of hydraulic pile hammer.

목차

Abstract
 1. Introduction
 2. Pseudo Bond Graph Elements for Thermal-hydraulic Model
  2.1. Pseudo Bond Graph C Element for the Capacitive Component
  2.2. Pseudo Bond Graph R Element for the Resistance Component
  2.3. Heat Transfer Calculation
 3. Description of Buffer System
  3.1. The Structure of Buffer Device
  3.2. The Working Principle of Buffer System
 4. Hammers Buffer System Modeling
 5. Simulation Results and Discussions
 6. Conclusion
 Acknowledgements
 References

저자정보

  • Kejun Li College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China
  • Junping Hu College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China

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