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首页> 外文期刊>Journal of Sensors >Radial Electrical Resistivity Measurements of Rocks on Laboratory Core Samples Using an Electromagnetic Sensor: Macro and Micro Eddy Currents
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Radial Electrical Resistivity Measurements of Rocks on Laboratory Core Samples Using an Electromagnetic Sensor: Macro and Micro Eddy Currents

机译:使用电磁传感器的实验室内芯样品上岩石电阻率测量:宏观和微涡流

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摘要

Rocks subjected to weak alternating magnetic fields exhibit a magnetic hysteresis phenomenon due to the magnetic susceptibility and chemical composition of ferromagnetic or ferrimagnetic mineral grains. In order to characterize the physical properties of rocks, magnetic susceptibility and electrical resistivity measurements have been carried out. So a device has been developed in our laboratory as a highly sensitive sensor to measure the magnetic and electrical properties of rocks. This work deals with a nondestructive method to analyze these properties. A ballistic method has been considered by using a search coil in a sensitive alternating current bridge. Usually, the use of the complex ac magnetic susceptibility is convenient to reach the bulk magnetic susceptibility, where the imaginary component is often very weak and neglected. In this paper, we have considered this to determine the electrical resistivity of rocks.
机译:由于铁磁性或铁磁磁性颗粒的磁性敏感性和化学成分,所经受弱交替磁场的岩石表现出磁滞现象。 为了表征岩石的物理性质,已经进行了磁性敏感性和电阻率测量。 因此,在我们的实验室中已经开发了一种设备作为高度敏感的传感器,以测量岩石的磁性和电气性能。 这项工作涉及非破坏性方法来分析这些属性。 通过使用敏感的交流电流桥中的搜索线圈考虑了弹道方法。 通常,使用复杂的交流磁性敏感性方便地达到散装磁化率,其中假想组分通常非常弱和忽略。 在本文中,我们认为这是为了确定岩石的电阻率。

著录项

  • 来源
    《Journal of Sensors》 |2018年第2期|共12页
  • 作者单位

    Univ Carthage Fac Sci Bizerte Lab Phys Mat Lamellaires &

    Nanomat Hybrides Zarzouna 7021 Tunisia;

    Univ Carthage Fac Sci Bizerte Lab Phys Mat Lamellaires &

    Nanomat Hybrides Zarzouna 7021 Tunisia;

    Higher Inst Technol Studies Bizerte Menzel Abderrahmen 7035 Bizerte Tunisia;

    Univ Carthage Fac Sci Bizerte Lab Phys Mat Lamellaires &

    Nanomat Hybrides Zarzouna 7021 Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

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