首页> 外文会议>SPWLA Annual Logging Symposium >REAL-TIME INTERPRETATION OF FORMATION STRUCTURE FROM DIRECTIONAL EM MEASUREMENTS
【24h】

REAL-TIME INTERPRETATION OF FORMATION STRUCTURE FROM DIRECTIONAL EM MEASUREMENTS

机译:从定向EM测量的实时解释结构结构

获取原文

摘要

A new Electro-Magnetic (EM) Logging-While-Drilling (LWD) tool provides a deep directional response for well placement and for high-angle and horizontal well formation evaluation applications. In order to use the measurements from this tool for real-time steering or other drilling decisions, a real-time data interpretation method had to be provided. To this end, we have developed a model-based parametric inversion technique, which computes the distance to bed boundaries as well as formation resistivity from the raw directional EM measurements. The inversion can be run in a fully automatic mode that requires no user intervention for a quick “first-look” interpretation as well as in an interactive mode in which manual constraints can be used to refine the inversion. In the automatic-interpretation mode, all available realtime measurements are inverted for a simple three-layer model. The inversion runs a fast approximate model to compute response to two boundaries, giving satisfactory results for thick beds. The algorithm inverts multiple models, from simple to complex, with the most complex model using up to six parameters, including distance to two shoulder beds, anisotropic bed resistivity, and two shoulder-bed resistivity values. An Akaike information criterion that favors simpler models is then combined along with physics-based constraints to select the simplest model that fits the data. To refine the interpretation in expert mode, data can be interpreted segment-by-segment. The model may be built point-by-point, or all data may be inverted for a common layered structure to determine the resistivities and thicknesses of all layers. This simultaneous inversion reduces the uncertainty due to any random measurement or to environmental errors. It also provides a way to estimate the apparent dip, which is essential for reservoir characterization and for highangle and horizontal well applications. Validation of the interpretation method will be shown first through synthetic examples and then through interpretation of field data from the EM directional tool. Inversion results from the field data demonstrate consistent structure interpretation over long sections. The field data also reveal that lateral heterogeneities of the reservoirs are common, thus underscoring that it is not sufficient to rely on 3D seismic surveys alone for accurate well placement.
机译:新的电磁(EM)钻孔(EM)钻孔(LWD)工具为井放置和高角度和水平井形成评估应用提供了深的方向响应。为了使用该工具的测量来实时转向或其他钻探决策,必须提供实时数据解释方法。为此,我们开发了一种基于模型的参数反转技术,其计算到床边界的距离以及从原始定向EM测量的形成电阻率。反转可以在完全自动模式下运行,该模式不需要用于快速的“第一外观”解释以及在哪个交互模式中的用户干预,其中可以使用手动约束来改进反转。在自动解释模式中,所有可用的实时测量值都是一个简单的三层模型反转。反演运行快速近似模型以计算对两个边界的响应,为厚床提供令人满意的结果。该算法反转多个模型,从简单到复杂,最复杂的模型使用多达六个参数,包括距离两肩床,各向异性床电阻率和两个肩床电阻率值。然后,符合更简单的模型的Akaike信息标准以及基于物理的约束,可以选择适合数据的最简单模型。为了在专家模式中优化解释,可以解释逐段解释数据。该模型可以是逐点构建的,或者可以反转所有数据以用于共同分层结构以确定所有层的电阻性和厚度。由于任何随机测量或环境误差,这种同时反演会降低不确定性。它还提供了一种方法来估计表观倾角,这对于储层表征至关重要,以及占地面积和水平井应用。解释方法的验证将首先通过合成示例显示,然后通过来自EM定向工具的现场数据的解释来示出。现场数据的反演结果展示了长部分的一致结构解释。现场数据还揭示了储存器的横向异质性是常见的,因此强调不足以依靠3D地震测量,以便精确井放置。

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