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首页> 外文期刊>Arabian journal of geosciences >Magnet design of nuclear magnetic resonance system for well logging and geoscience applications
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Magnet design of nuclear magnetic resonance system for well logging and geoscience applications

机译:核磁共振系统磁铁设计,用于井井料和地球科学应用

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摘要

Nuclear magnetic resonance measurement (NMR) is an important technology to assess the characteristics of oil reservoirs which provides information on the type of fluid in the formation. The analysis by logging tool is based on using relaxation time measurements to understand the structure of the reservoir. In this research, the Computer Simulation Technology (CST) software is used to design a typical permanent magnet for NMR device and simulate it for different types of materials and different dimensions. The effects of temperature inside the well along with the magnetic response of the magnet which is a very important and effective parameter in well logging were considered. In addition, the effects of the cement wall on the field were studied. Due to the fact that the relative magnetic coefficient of ferrite material is in the range of 1.45 to 1.65, the effects of this parameter in the field of magnets have been investigated. Increasing the relative magnetic permeability coefficient reduces the amount of magnetic field in the considered depth. The influence of the magnet radius in the produced field has also been analyzed which indicates that, with a 6-inch diameter device, the penetration depth was greater than that using a similar 4.5-inch tool, thus making it an efficient tool for investigating the depth of the formation.
机译:核磁共振测量(NMR)是评估油藏特性的重要技术,提供有关地层中液体类型的信息。通过测井工具的分析是基于使用弛豫时间测量来了解储层的结构。在本研究中,计算机仿真技术(CST)软件用于为NMR器件设计典型的永磁体,并为不同类型的材料和不同尺寸模拟它。考虑了井内温度的影响以及磁体的磁响应,这是在井测井中是非常重要且有效的参数。此外,研究了水泥壁对该领域的影响。由于铁氧体材料的相对磁系数在1.45至1.65的范围内,研究了已经研究过该参数在磁体领域的影响。增加相对磁导率系数减少了所考虑的深度中的磁场量。还分析了磁体半径在所产生的场中的影响,这表明,具有6英寸直径的装置,穿透深度大于使用类似的4.5英寸工具的渗透深度,从而使其成为研究的有效工具形成深度。

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