...
首页> 外文期刊>Fortschritte der Physik >Theory, Design, Realization, and Field Results of an Inductive Casing Collar Locator
【24h】

Theory, Design, Realization, and Field Results of an Inductive Casing Collar Locator

机译:电感套管领定位器的理论,设计,实现和现场结果

获取原文
获取原文并翻译 | 示例
           

摘要

During well-logging operations, the depth of a logging tool is usually obtained by measuring the length of the wireline cable that suspends the tool in the well. In some cases, a secondary depth reference is obtained with a casing collar locator (CCL) that detects the collars along the steel casing lining the well. The thicker steel at these collars is detected by measuring the perturbations it causes to the field of a permanent magnet in the CCL logging tool. Due to its simplicity and efficiency, the CCL tool has not seen many changes throughout the years. However, for small, untethered sensor platforms, neither of the above methods is practical. This paper describes the theory, design, construction, and testing of an inductive sensor that detects the gap on the inside of the casing where two pipe joints mate together within a collar. Two identical cylindrical coils along a common axis are connected in a bridge configuration and driven by an ac signal. When one coil is near the gap, its inductance is slightly larger than that of the other, misbalancing the bridge. The sensor was implemented in a wireline tool and tested in a well. The field data show a clear double pulse of ac signal across the bridge each time the tool passes a collar. This sensor is smaller and lighter than CCLs that use permanent magnets, making it suitable for small, untethered sensor platforms.
机译:在记录良好的操作期间,通过测量悬挂该工具的电缆电缆的长度,通常可以获得测井工具的深度。在一些情况下,用壳体套环定位器(CCL)获得次级深度参考,该套环定位器(CCL)沿着井衬里衬里衬砌衬砌的套环。通过测量其导致CCL测井工具中的永磁体的领域的扰动来检测这些套环处的较厚钢。由于其简单性和效率,CCL工具在整个年内没有看到许多变化。但是,对于小型,不可阻止的传感器平台,上述方法都不是实用的。本文介绍了一种感应传感器的理论,设计,结构和测试,该感应传感器检测壳体内部的间隙,其中两个管接头在轴环内配合在一起。沿公共轴的两个相同的圆柱形线圈以桥接配置连接并由AC信号驱动。当一个线圈在间隙附近时,其电感略大于另一个,不平衡桥的不平衡。传感器在有线工具中实现并在井中进行测试。现场数据在每次工具通过套环时,在桥接桥中显示出AC信号的清晰双脉冲。该传感器比使用永磁体的CCL更小且较轻,使其适用于小型不受限制的传感器平台。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号