Mobile QR Code QR CODE : Journal of the Korean Society of Civil Engineers
Title Development of Temperature Compensated Micro Cone by using Fiber Optic Sensor
Authors 김래현 ; 이우진 ; 윤형구 ; 이종섭
Page pp.163-174
ISSN 10156348
Keywords CPT;fiber bragg grating;layer detection;micro cone;temperature compensation;다층지반탐지;마이크로콘;온도보상;콘관입시험;FBG센서
Abstract Mechanical device using the load cell or strain gage sensor can be influenced by tempearute changes because temperature change can cause a shift in the load cell or straing gage output at zero loading. In this paper, micro cone penetrometers with 1~7㎜ in diameter, are developed by using an optical fiber sensor (FBG: Fiber Bragg Grating) to compensate the continous temperature change during cone penetration test. Note the temperature compensated method using optical fiber sensor which has hair-size in diameter, and is not affected by environmental conditions because the measured data is the wavelength shifting of the light instead of the intensity of the electric voltage. Temperature effect test shows that the output voltage of strain gage changes and increases with an increase in the temperature. A developed FBG cone penetrometer, however, achieves excellent temperature compensation during penetration, and produces continuous change of underground temperature. In addition, the temperature compensated FBG cone shows the excellent sensitivity and detects the interface of the layered soils with higher resolution. This study demonstrates that the fiber optic sensor renders the possibility of the ultra small size cone and the new fiber optic cone may produce more reliable temperature compensated tip resistance.