Optimization of fracturing stages/clusters in horizontal well based on unsupervised clustering of bottomhole mechanical specific energy on the bit

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS
Shimeng Hu , Mao Sheng , Shanzhi Shi , Jiacheng Li , Shouceng Tian , Gensheng Li
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Abstract

Multi-cluster perforation and multi-staged fracturing of horizontal well is one of the main technologies in volumetric fracturing stimulation of unconventional oil and gas reservoirs, but unconventional reservoirs in China are generally of strong heterogeneity, which causes different fracture initiation pressures in different positions of lateral, making it difficult to ensure the balanced fracture initiation and propagation between clusters in multi-cluster perforating. It is in urgent need to precisely evaluate the difference in rock strength in lateral and determine the well section with similar rock strength to deploy fractures, so as to reach the goal of balanced stimulation. Based on the drilling and logging data, this paper establishes an unsupervised clustering model of mechanical specific energy of bit at the bottomhole the lateral. Then, the influence of drill string friction, composite drilling and jet-assisted rock breaking on the mechanical specific energy is analyzed, and the distribution and clustering categories of bottomhole mechanical specific energy with decimeter spatial resolution are obtained. Finally, a fracture deployment optimization method for horizontal well volumetric fracturing aiming balanced stimulation is developed by comprehensively considering inter-fracture interference, casing collar position, plug position, and clustering result of bottomhole mechanical specific energy. The following results are obtained. First, compared with brittleness index, Poisson's ratio and stress difference, perforation erosion area is in a stronger correlation with the mechanical specific energy, and the mechanical specific energy can effectively characterize the difference in the amount of proppant injected into the perforation clusters in the lateral, so it can be served as one of the important indicators for the selection of fracture deployment position. Second, the drilling and logging data cleaning and smoothing and the clustering number selection by the elbow method are the key steps to obtain the clustering results of bottomhole mechanical specific energy, which can tell the difference in the mechanical specific energy with decimeter-level resolution. Third, the interval with mechanical specific energy within 10% of the average value in the section is selected for deploying perforation clusters, and the compiled computer algorithm can automatically determine the optimal position of fracturing section and cluster, so as to realize the differential design of stage spacing and cluster spacing. In conclusion, the research results can further improve the fractures deployment efficiency and balanced stimulation of volumetric fracturing in unconventional oil and gas reservoirs, and this technology is expected to provide ideas and new methods for the fracture deployment optimization of horizontal well volumetric fracturing in unconventional oil and gas reservoirs.

基于钻头上井底机械比能的无监督聚类优化水平井压裂阶段/簇
水平井多组射孔、多级压裂是非常规油气藏体积压裂技术中的主要技术之一,但我国非常规油气藏普遍具有较强的异质性,导致侧向不同位置的压裂起始压力不同,难以保证多组射孔中各组间压裂起始和传播的均衡性。因此,亟需精确评估侧向岩石强度的差异,确定岩石强度相近的井段进行压裂部署,以达到均衡增产的目的。本文基于钻井和测井数据,建立了横向井底钻头机械比能的无监督聚类模型。然后,分析了钻柱摩擦、复合钻井和射流辅助破岩对机械比能的影响,并得到了分米级空间分辨率的井底机械比能分布和聚类。最后,综合考虑压裂层间干扰、套管环位置、塞子位置以及井底机械比能的聚类结果,提出了以平衡激励为目的的水平井体积压裂的压裂部署优化方法。研究结果如下。首先,与脆性指数、泊松比和应力差相比,射孔侵蚀面积与机械比能的相关性更强,机械比能能有效表征侧向射孔簇中支撑剂注入量的差异,可作为选择压裂部署位置的重要指标之一。其次,钻井和测井数据的清洗、平滑以及肘法聚类数的选择是获得井底机械比能聚类结果的关键步骤,可以分辨出分米级分辨率的机械比能差异。第三,选择机械比能在该区段平均值 10%以内的区段部署射孔簇,编制的计算机算法可自动确定压裂区段和射孔簇的最佳位置,从而实现级间距和射孔簇间距的差异化设计。总之,该研究成果可进一步提高非常规油气藏体积压裂的压裂部署效率和均衡激励效果,有望为非常规油气藏水平井体积压裂的压裂部署优化提供思路和新方法。
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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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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