Volume 8 Number 2 (Feb. 2013)
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JCP 2013 Vol.8(2): 409-416 ISSN: 1796-203X
doi: 10.4304/jcp.8.2.409-416

Finite Element Analysis for Harmonic Oscillator of Acceleration Seismic Geophone

De En, Ningbo Zhang, Jieyu Feng, Ningning Wang, and Xiaobin Wang
School of Electrical Engineering and Automation, Henan Polytechnic University, Jiaozuo, China

Abstract—Abstract—In the oilfield development stage, more recoverable reserves can be found by using the more sophisticated seismic methods with stimulation. Threecomponent seismic exploration technology comes into being, and it is becoming a major oil exploration seismic technology currently. As the sensitive element of seismic geophone, the performance of the harmonic oscillator is vitally important to the entire seismic exploration. The working principle of the harmonic oscillator is introduced, the solid model of harmonic oscillator mass is created by using the finite element method, and its three-dimensional static analysis and modal analysis are carried out. Load is applied and solved. The first fourth-order model is taken for analysis. The frequency of twentieth order vibration mode of physical model is 78 kHz; the total displacement of twentieth order is 0.122×10-6μm; and the total displacement of the solid model is 0.236×10-19μm.

Index Terms—three-component, harmonic oscillator, msss, finite element

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Cite: De En, Ningbo Zhang, Jieyu Feng, Ningning Wang, and Xiaobin Wang, " Finite Element Analysis for Harmonic Oscillator of Acceleration Seismic Geophone," Journal of Computers vol. 8, no. 2, pp. 409-416, 2013.

General Information

ISSN: 1796-203X
Abbreviated Title: J.Comput.
Frequency: Bimonthly
Editor-in-Chief: Prof. Liansheng Tan
Executive Editor: Ms. Nina Lee
Abstracting/ Indexing: DBLP, EBSCO,  ProQuest, INSPEC, ULRICH's Periodicals Directory, WorldCat,etc
E-mail: jcp@iap.org
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