泥浆添加剂对PAM/PEI防漏体系胶凝性能影响的研究

M. Shamlooh, A. Hamza, I. Hussein, M. Nasser, S. Salehi
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引用次数: 0

摘要

漏失是油气井钻井中最常见的问题之一,泥浆会通过天然裂缝或人工裂缝泄漏。漏失会增加作业成本,影响油井的稳定性,造成严重后果。最近,聚合物配方被引入井筒强化,它可以同时作为漏失循环材料(lcm)。聚合物lcm有可能在作业过程中与钻井液混合,而无需停止,以避免非生产时间。在这项研究中,研究了最常见的常规泥浆添加剂的意义及其对聚丙烯酰胺(PAM) /聚乙烯亚胺(PEI)凝胶性能的影响。典型添加剂钻井液的设计重量为9.6 ppg。添加剂包括膨润土、重晶石、羧甲基纤维素(CMC)、褐煤、烧碱、desco和碳酸钙分别和组合进行了研究。每种添加剂与聚合物配方(PAM 9% PEI 1%)按不同比例混合,然后在130℃下保存24小时。采用平行板几何测试了成熟凝胶的流变性能,采用振荡测试评估了储存模量和损失模量。此外,为了模拟储层条件,在500psi的温度下测试了凝胶剖面,以获得凝胶时间。聚合物基泥浆的凝胶时间可以通过加入盐缓凝剂(氯化铵)来控制,在130℃下可以实现2小时以上的凝胶时间。实验室观察表明,膨润土和CMC的效果最好,因为它们都有助于产生更强的凝胶。膨润土作为增强材料,CMC增加交联网络。膨润土成功地将凝胶强度提高了15%,在不影响凝胶时间的情况下提供高达1150 Pa的存储模量。这项工作有助于更好地理解在钻井活动中使用聚合物配方的过程。它为钻井作业中常规用于堵水的胶凝系统集成提供了见解,以取代传统的漏失循环材料,以提供更高的成功率。
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Investigation on the Effect of Mud Additives on the Gelation Performance of PAM/PEI System for Lost Circulation Control
Lost circulation is one of the most common problems in the drilling of oil and gas wells where mud escapes through natural or induced fractures. Lost circulation can have severe consequences from increasing the operational cost to compromising the stability of wells. Recently, polymeric formulations have been introduced for wellbore strengthening purposes where it can serve as Loss Circulation Materials (LCMs) simultaneously. Polymeric LCMs have the potential to be mixed with drilling fluids during the operation without stopping to avoid non-productive time. In this study, the significance of most common conventional mud additives and their impact on the gelation performance of Polyacrylamide (PAM) / Polyethyleneimine (PEI) has been investigated. Drilling fluid with typical additives has been designed with a weight of 9.6 ppg. Additives including bentonite, barite, CarboxyMethylCellulose (CMC), lignite, caustic soda, desco, and calcium carbonate has been studied individually and combined. Each additive is mixed with the polymeric formulation (PAM 9% PEI 1%) with different ratios, then kept at 130°C for 24 hrs. Rheological performance of the mature gel has been tested using parallel plate geometry, Oscillatory tests have been used to assess the storage Modulus and loss modulus. Moreover, the gelation profile has been tested at 500 psi with a ramped temperature to mimic the reservoir conditions to obtain the gelation time. The gelation time of the polymer-based mud was controllable by the addition of a salt retarder (Ammonium Chloride), where a gelation time of more than 2 hours could be achieved at 130°C. Laboratory observations revealed that bentonite and CMC have the most effect as they both assist in producing stronger gel. While bentonite acts as a strengthening material, CMC increases the crosslinking network. Bentonite has successfully increased the gel strength by 15% providing a storage modulus of up to 1150 Pa without affecting the gelation time. This work helps in better understanding the process of using polymeric formulations in drilling activities. It provides insights to integrate gelling systems that are conventionally used for water shut-off during the drilling operation to replace the conventional loss circulation materials to provide a higher success rate.
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