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Casing Pipe Damage Detection with Optical Fiber Sensors: a Case Study in Oil Well Constructions

机译:用光纤传感器检测套管损坏的方法:以油井建设为例

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Casing pipes in oil well constructions may suddenly buckle inward as their inside and outside hydrostatic pressure difference increases. For the safety of construction workers and the steady development of oil industries, it is critically important to measure the stress state of a casing pipe. This study develops a rugged, real-time monitoring, and warning system that combines the distributed Brillouin Scattering Time Domain Reflectometry (BOTDR) and the discrete fiber Bragg grating (FBG) measurement. The BOTDR optical fiber sensors were embedded with no optical fiber splice joints in a fiber reinforced polymer (FRP) rebar and the FBG sensors were wrapped in epoxy resins and glass clothes, both installed during the segmental construction of casing pipes. In-situ tests indicate that the proposed sensing system and installation technique can survive the downhole driving process of casing pipes, withstand a harsh service environment, and remain in tact with the casing pipes for compatible strain measurements. The relative error of the measured strains between the distributed and discrete sensors is less than 12%. The FBG sensors successfully measured the maximum horizontal principal stress with a relative error of 6.7% in comparison with a cross multi-pole array acoustic instrument.
机译:随着油管内部和外部静水压力差的增加,套管可能会突然向内弯曲。为了确保建筑工人的安全和石油工业的稳定发展,测量套管的应力状态至关重要。这项研究开发了一种坚固耐用的实时监视和警告系统,该系统结合了分布式布里渊散射时域反射法(BOTDR)和离散光纤布拉格光栅(FBG)测量。 BOTDR光纤传感器没有光纤接头,被嵌入到纤维增强的聚合物(FRP)钢筋中,而FBG传感器则被包裹在环氧树脂和玻璃布中,二者均在套管的分段构造中安装。现场测试表明,所提出的传感系统和安装技术可以在套管的井下驱动过程中幸存下来,经受恶劣的服务环境,并与套管保持完好无损,以进行兼容的应变测量。分布式传感器和离散传感器之间测得的应变的相对误差小于12%。与十字多极阵列声学仪器相比,FBG传感器成功测量了最大水平主应力,相对误差为6.7%。

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