Multi-Stage Hydraulic Fracturing Using High- Temperature Fracturing Fluids in the Deepest Offshore Well in China- Case Study of Lab Test and Field Execution

Yi Feng, Ming Zhang, Junbao Li, Bo Zhang, Lipeng Hu, Yisheng Wang, Xuefeng Zhang, Tian Liang, Zichao Wang, Liang Feng, Changhong Wuauthor
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Abstract

Bohai Bay is one of the world's largest oil and gas fields, consisting of different reservoirs with multiple lithologies. BZ condensate oil and gas reservoir is discovered in recently past years. It is planning to develop this field in future years. This field are fractured buried hill condensate gas reservoir, buried deeply and it is not property researched. Several Wells drilled at early stage of the production schedule is not stable and economic value is not enough, so hydraulic fracturing technology is needed to realize the maximization of the production. Due to the well was deep with extremely high temperature and high pressure, the choice of the method of completion, fracturing process design and the realization of the project are challengeable. When the target well depth over 5000m with temperature over 195 °C, we usually use metal crosslinked fluids, particularly using CMHPG and crosslinked with Zirconate crosslinker designed for high temperature. This system delivers a great combination of benefits: availability, low cost, ease to use, high viscosity, and fluid recovery. BZ 9 well is the deepest offshore in China by far. We finish the multi-stage hydraulic fracturing using High-temperature fracturing fluids. We conduct DST test, production evaluation, DFIT Test, Hydraulic Fracture for BZ 9 well. Data analysis and caliber the production evaluation is also tried to do. The high temperature fracture fluid stability test, break test, surface tension test, core perm recovery test is shown is this article. At the same time, also show the well fracturing design idea and method of pump schedule, fracturing model result, DFIT and SRT process, understanding of the reservoir, display and analysis of fracturing plot, the full 3D GRID- ORIENTED HYFRAULIC FRACTURE STIMULATOR corrective, the analysis of the pressure plot, flowback and production, and further suggestions are put forward.
高温压裂液在中国最深海上油井中的多级水力压裂——实验室试验和现场实施的案例研究
渤海湾是世界上最大的油气田之一,由多种岩性的不同储层组成。BZ凝析油气藏是近年来发现的。该公司计划在未来几年开发这一油田。该气田为裂缝性潜山凝析气藏,埋藏较深,尚未进行物性研究。在生产计划初期钻的几口井不稳定,经济价值不够,因此需要采用水力压裂技术来实现产量最大化。由于井深极高温高压,完井方式的选择、压裂工艺的设计以及工程的实现都具有一定的挑战性。当目标井深超过5000m,温度超过195℃时,我们通常使用金属交联液,特别是使用CMHPG和专为高温设计的锆酸盐交联剂。该系统具有以下优点:可用性、低成本、易于使用、高粘度和流体采收率。bz9井是目前为止中国海上最深的井。采用高温压裂液完成了多级水力压裂。对bz9井进行了DST测试、生产评价、DFIT测试、水力压裂等。并进行了数据分析和质量评价。本文介绍了高温压裂液稳定性试验、断裂试验、表面张力试验、岩心热恢复试验。同时,还介绍了井的压裂设计思路和方法,包括泵排、压裂模型结果、DFIT和SRT过程、对储层的认识、压裂图的显示和分析、全三维网格型水力压裂增产器的校正、压力图的分析、返排和生产,并提出了进一步的建议。
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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