Deep EM Method for Proactively Prediction of Resistivity ahead of Bit to Determine Salt Bottom Position

Q. Guo, Xiang Bao Hao, Chaogang Wu, J. Seydoux, Chao Wang, Y. Shim, Y. Liu
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Abstract

Most wells in TOC block A need to be drilled through the salt formation, which is always with troubles, like high-pressure salt water, mud loss, stuck pipe etc. Furthermore, the salt formation has great heterogeneity, thickness and depth of the salt different from well to well. For these wells, it's very important to drill through the salt formation safely then set casing accurately at the bottom of it. The common practice for client is to drill using small bit and then reamer to large hole through the salt formation, which is costing time and large uncertainty in salt formation detecting. The deep EM look-ahead method application aims to help client to predict the bottom of salt formation, then set casing to the right place. This new approached method in this paper based on deep EM technology can detect formation features, especially development for measuring resistivity contrasts ahead of the bit in real time to reduce cost and risk during drilling operations. It provides a step change with regard to precision in detecting changes in resistivity properties ahead of the bit in vertical and low-angle wells. This method can reduce mainly drilling risks and improve landing but detecting potential drilling hazard and reducing depth uncertainty ahead of the bit. The main application of this method in this paper is to detect salt bottom ahead of bit. Using this method, we can now finally drill and react pro-actively on formation resistivity properties several meters ahead of the drill-bit, instead of drilling reactively on resistivities at or behind the bit. After one well application, we successfully helped client detecting the bottom of formation and setting case to the right depth. In this paper, a pilot project case will be discussed detailly featuring successful application of EM method to react pro-actively on formation resistivity changes ahead of bit, helping client reducing drilling risks.
主动预测钻头前方电阻率确定盐底位置的深部电磁法
TOC A区块大部分井需要钻穿盐层,而盐层存在高压盐水、泥浆漏失、卡管等问题。此外,盐层具有较大的非均质性,不同井的盐层厚度和深度不同。对于这些井来说,安全钻穿盐层并在盐层底部准确下入套管是非常重要的。对于客户来说,通常的做法是先用小钻头钻进,然后用扩眼器钻过盐层,这既费时又不确定。深电磁预测方法的应用旨在帮助客户预测盐层底部,然后将套管安装到正确的位置。本文提出的这种基于深部电磁技术的新方法可以探测地层特征,特别是可以实时测量钻头前方的电阻率对比,从而降低钻井作业中的成本和风险。在垂直井和小斜度井中,它在检测钻头前方电阻率特性变化方面的精度有了阶跃变化。该方法主要可以降低钻井风险,提高着陆效果,同时还可以检测潜在的钻井危险,减少钻头前的深度不确定性。该方法在本文中的主要应用是超前探测钻头的盐底。使用这种方法,我们现在可以在钻头前方几米的地方钻进并主动响应地层电阻率特性,而不是在钻头处或钻头后被动响应地层电阻率。经过一口井的应用,我们成功地帮助客户探测到地层底部,并将套管定位到正确的深度。在本文中,将详细讨论一个试点项目案例,该案例成功地应用了EM方法,在钻头之前对地层电阻率变化做出主动反应,帮助客户降低了钻井风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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