首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Study of transient electromagnetic method measurements using a superconducting quantum interference device as B sensor receiver in polarizable survey area
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Study of transient electromagnetic method measurements using a superconducting quantum interference device as B sensor receiver in polarizable survey area

机译:使用超导量子干扰装置在极化调查区域中使用超导量子干扰装置测量的瞬态电磁方法测量

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摘要

Time-domain transient electromagnetic method (TEM) measurements sometimes exhibit a sign reversal in the secondary field during the off-time, which is usually attributed to the induced- polarization (IP) effect. In contrast with the conventional IP method, which uses a current source, TEM with an ungrounded transmitting loop operates using a pure voltage source, which is induced by the primary field switching on and off. We performed TEM measurements in a resistive survey area showing an IP effect, and we used a low-temperature superconducting quantum interference device (LT-SQUID) with sensitivity of ≈ 10 fT∕√p Hz as a magnetic field sensor. A sign reversal in all of our measurements was observed; furthermore, the negative amplitude reached ≈ 10 pT. In-depth analysis with an extended version of a wire-filament circuit reveals that the large negative signal may be due to discharging of in-ground capacitance, an IP effect. The conduction response of the ground can be restored by subtracting the fitted discharging response (negative valued) from the observed data. To verify this operation, we compared TEM measurements with and without wireloop targets, which can induce a conduction field with a known decay time constant during the off-time. The extracted conduction responses of the wire-loop targets match the expected ones well. This research reveals that the primary field switch-off must always be included when interpreting TEM data with sign reversal and an LT-SQUID may be a good alternative sensor for studying the IP effect in TEM.
机译:时域瞬态电磁法(TEM)测量有时在次要场中在次要场中呈现符号反转,这通常归因于诱导极化(IP)效应。与使用电流源的传统IP方法相比,使用未接地的发射环路的TEM使用纯电压源进行操作,该纯电压源由主场开关诱导。我们在电阻测量区域进行了TEM测量,显示了IP效果,并且我们使用了低温超导量子干扰装置(LT-Squid),灵敏度为≈10ft/√pHz作为磁场传感器。观察到所有测量中的标志逆转;此外,负幅度达到≈10pt。利用延长版本的线丝电路进行深度分析,揭示了大负信号可能是由于接地电容的放电,IP效果。通过从观察到的数据中减去装配的放电响应(负值),可以恢复地的导通响应。为了验证此操作,我们将TEM测量与无电缆目标进行比较,其可以在关闭时间内引起具有已知衰减时间常数的传导区域。线圈目标的提取的导通响应匹配良好的良好预期的响应。该研究表明,当用符号反转的TEM数据和LT-Squid解释TEM数据时,必须始终包括主要场关闭,用于研究TEM中的IP效果的良好替代传感器。

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  • 作者单位

    Jilin University College of Instrumentation and Electrical Engineering Changchun China;

    Shanghai Institute of Microsystem and Information Technology (SIMIT) Chinese Academy of Sciences (CAS) State Key Laboratory of Functional Materials for Informatics Shanghai China;

    Shanghai Institute of Microsystem and Information Technology (SIMIT) Chinese Academy of Sciences (CAS) State Key Laboratory of Functional Materials for Informatics Shanghai China;

    Formerly Shanghai Institute of Microsystem and Information Technology (SIMIT) Chinese Academy of Sciences (CAS) State Key Laboratory of Functional Materials for Informatics Shanghai China;

    Shanghai Institute of Microsystem and Information Technology (SIMIT) Chinese Academy of Sciences (CAS) State Key Laboratory of Functional Materials for Informatics Shanghai China;

    Jilin University College of Geo-exploration Science and Technology Changchun China;

    Jilin University College of Instrumentation and Electrical Engineering Changchun China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    electromagnetic; measurements; superconducting;

    机译:电磁;测量;超导;

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