标题: | 磁环式FBG地层下陷感测系统之研发 Development of a Magnetic Ring Optical Fiber Bragg Grating Ground Subsidence Sensor System |
作者: | 吕怡中 Lu,Yi-Chung 黄安斌 Huang,An-Bin 土木工程系所 |
关键字: | 光纤光栅;地层下陷;磁环分层监测井;FBG;ground subsidence;subsidence monitoring well |
公开日期: | 2013 |
摘要: | 现有常用来监测地层下陷方法使用多个磁环安装在同一钻孔不同深度来监测地层沉陷随深度之变化,磁环深度使用有刻度之铟钢尺配合装有磁感应开关,以目视来辨识,其主要观测误差来源包括深度判读误差,且判定磁环深度位置的方法不够严谨,或当深度较深之量测时,探测感应器之讯号可能薄弱等缺点,本研究企图利用既有之磁环式分层监测井,配合光纤之轻巧、不会受潮短路、可十公里以上之长距离传输等优势,研发光纤光栅(FBG)感测器代来量测地陷测井内之磁环位置。作者于室内进行新研发之FBG probe试验,包括干式、浸水式及9m室内试验,并于成功大学水工试验所的监测井施作现地量测。本论文叙述FBG probe之设计原理,室内试验及现地试验结果,评估新研发FBG probe之功能及效益,并对未来改进提出建议。 Multiple megnatic rings installed at varous depths in a cased borehole have been used for ground subsidence profile monitoring. A graded metallic tape with a reed switsh at the bottom was dropped into the borehole. The depth was visually identified from the tape measurement when the reed switch was triggered by the megnatic ring. The method for depth reading is not rigorous and often result in errors. In a deep borehole, the reed switch signal can be weak. The objectives of this research are to develop a fiber Bragg (FBG) based probe to work with the existing multiple megnatic rings system for ground subsidence profile monitoring. The FBG probe takes advantage of the fact that optical fiber is light weight, immune to short circuit, and signal transmission can easily exceeds 10 km. The author performed a series of laboratory test using the new FBG probe under dry and submerged conditions, and in a 9 m inclinometer casing with multiple megnatic rings attached. Field experiment was carried out using an existing observation well at a National Cheng Kung University Hydraulic Tesing Laboratory test site. The thesis describes the principles of the FBG probe, results from the laboratory and field tests, evalauates the performance of the FBG probe and make recommendations for further improvements. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070151258 http://hdl.handle.net/11536/76432 |
显示于类别: | Thesis |