鄂尔多斯盆地页岩油水平井开发技术问题

Qihong Lei , Youan He , Qiheng Guo , Yongchao Dang , Tianjing Huang , Changchun Liu
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摘要

中国石油长庆油田分公司以三叠系延长组长7段(长7段)富有机质泥页岩组重力流砂岩薄夹层为目标,成功实现了中国鄂尔多斯盆地陆相低压淡水湖层间页岩油的大规模经济开发。重大发现10亿吨级青城页岩油田,探明储量1.052 × 109吨,标志着中国首个百万吨页岩油开发区建成。然而,生产和建设的广泛增长带来了值得注意的挑战,包括地质差异、低初始产量、快速下降、低采收率和高开发成本。基于丰富的现场经验,本文确定了页岩油开发中的几个技术问题,并通过系统分析提出了综合建议。页岩水平井的遇井率是提高单井产能的关键,在水平井部署过程中,通过优先选择优质储层的延伸方向,可以在垂直方向和水平方向上提高遇井率。压裂液弹性对采收率的贡献相对较低。储层改造不应过分强调大的含砂量、流体量或排量。此外,优化井距、垂直层间分布和裂缝发育等参数对于最大限度地提高压裂规模、作业排量和其他参数的效率至关重要。烃源岩质量的变化和成岩作用强度对砂体含油饱和度的影响较大,影响了有利区域的选择和优质储层的分布。此外,在压裂前使用CO2被证明是降低粘度和提高最终采收率的有效方法。为了保证长庆油田页岩油的高效开发,本文强调必须深化综合地质研究,明确页岩油非均质成藏的主控因素,细致刻画三维甜点,同时探索更有效的开发方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technological issues in shale oil development using horizontal wells in Ordos Basin, China

The PetroChina Changqing Oilfield Company has successfully achieved large-scale economical development of continental low-pressure freshwater lake interlayer shale oil in the Ordos Basin, China, targeting the gravity-flow sandstone thin interlayers in the organically rich mud shale formation of the seventh member of Yanchang Formation (Chang 7 Member) of Triassic,. Their significant discovery of the 1-billion-ton-level Qingcheng shale oil field, with a proven reserve of 1.052 × 109 t, has marked the establishment of China's first million-ton shale oil development zone. However, the extensive growth in production and construction has brought attention to notable challenges, including geological variances, low initial production, rapid decline, low recovery rates, and high development costs. Based on extensive field experience, this paper identifies several technological issues in shale oil development and offers comprehensive recommendations through systematic analysis. The encounter rate of horizontal shale oil wells, crucial for enhancing individual well productivity, can be improved both vertically and horizontally by prioritizing the extension direction of high-quality reservoirs during the deployment of horizontal wells. The contribution of fracturing fluid elasticity to the recovery rate is relatively low. Reservoir modification should not overemphasize large sand volume, fluid volume, or discharge. Additionally, optimizing parameters such as well spacing, vertical interlayer distribution, and fracture development is essential for maximizing the efficiency of fracturing scale, operation discharge, and other parameters. Variability in hydrocarbon source rock quality and the strength of diagenesis significantly impact oil saturation in sand bodies, affecting the selection of favorable areas and the distribution of high-quality reservoirs. Furthermore, the utilization of pre-fracturing with CO2 proves to be an effective approach in reducing viscosity and increasing the ultimate recovery rate. To ensure the efficient development of shale oil in the Changqing Oilfield, this paper emphasizes the necessity of deepening integrated geological studies, clarifying the main controlling factors of shale oil heterogeneous accumulation, and meticulously depicting three-dimensional sweet spots while exploring more effective development methodologies.

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