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Acoustic Emission and Echo Signal Compensation Techniques Applied to an Ultrasonic Logging-While-Drilling Caliper

机译:超声波测井卡尺中的声发射和回波信号补偿技术

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摘要

A logging-while-drilling (LWD) caliper is a tool used for the real-time measurement of a borehole diameter in oil drilling engineering. This study introduces the mechanical structure and working principle of a new LWD caliper based on ultrasonic distance measurement (UDM). The detection range is a major performance index of a UDM system. This index is determined by the blind zone length and remote reflecting interface detection capability of the system. To reduce the blind zone length and detect near the reflecting interface, a full bridge acoustic emission technique based on bootstrap gate driver (BGD) and metal-oxide-semiconductor field effect transistor (MOSFET) is designed by analyzing the working principle and impedance characteristics of a given piezoelectric transducer. To detect the remote reflecting interface and reduce the dynamic range of the received echo signals, the relationships between the echo amplitude and propagation distance of ultrasonic waves are determined. A signal compensation technique based on time-varying amplification theory, which can automatically change the gain according to the echo arrival time is designed. Lastly, the aforementioned techniques and corresponding circuits are experimentally verified. Results show that the blind zone length in the UDM system of the LWD caliper is significantly reduced and the capability to detect the remote reflecting interface is considerably improved.
机译:随钻测井(LWD)卡尺是一种用于实时测量石油钻探工程中井眼直径的工具。本研究介绍了一种基于超声波测距(UDM)的新型随钻测井卡尺的机械结构和工作原理。检测范围是UDM系统的主要性能指标。该指标由系统的盲区长度和远程反射界面检测能力确定。为了减小盲区长度并在反射界面附近进行检测,通过分析自举栅极驱动器(BGD)和金属氧化物半导体场效应晶体管(MOSFET)的全桥声发射技术,设计了一种全桥声发射技术。给定的压电换能器。为了检测远程反射界面并减小接收到的回波信号的动态范围,确定了回波幅度与超声波传播距离之间的关系。设计了一种基于时变放大原理的信号补偿技术,该技术可以根据回波到达时间自动改变增益。最后,对上述技术及相应电路进行了实验验证。结果表明,随钻测距卡尺的UDM系统中的盲区长度显着减小,并且检测远程反射界面的能力得到了显着提高。

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