Fan Xiangyu, Zhao Pengfei, Zhang Qiangui, Zhang Ting, Zhu Kui, Zhou Chenghua
College of Petroleum Engineering, Southwest Petroleum University, Chengdu 610500, China.
State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China.
Materials (Basel). 2018 May 21;11(5):856. doi: 10.3390/ma11050856.
Well leakage of fractured strata is a tricky problem while drilling. This unwieldy problem is usually caused by the poor formation of the cementing degree, the staggered-mesh of the fracture, and the low bearing capacity of the formation, which can also lead to a narrow and even unsafe window of drilling fluid density. For fractured strata, the normal plugging material has the disadvantages of unsuitable size and low strength, resulting in unsuccessful first time plugging and an increase in cost. Therefore, we developed a polymer plugging gel for the fractured strata, named XNGJ-3. XNGJ-3 is mainly made of an acrylamide monomer and is accompanied by the reactive monomers of carboxyl and hydroxyl as ingredients. XNGJ-3 has a low viscosity before gelling. At 80 °C it becomes gelled, and the gelling time was controlled within the required time of the practical application. These conditions are beneficial for making the plugging material enter the crossing fracture smoothly and occlude the fracture. XNGJ-3 also has a good deformability and can avoid being damaged during the process of fracture closure. The well leakage simulated experiment revealed that the bearing capacity of this material can reach 21 MPa and the inverse bearing capacity can reach 20 MPa. These strengths are more than twice that of common polymer plugging gels. Finally, three leaked wells in the fractured strata of the Sichuan Basin were used to verify the plugging effect of XNGJ-3. Compared with other common plugging materials, XNGJ-3 has the advantages of having a higher success rate of first time plugging, a lower economic cost, a shorter work time, and so forth, which indicate that this plugging material has a good engineering application value in dealing with well leakage of fractured strata.
在钻井过程中,裂缝性地层漏失是一个棘手的问题。这个难以处理的问题通常是由固井程度不佳、裂缝交错以及地层承载能力低引起的,这也会导致钻井液密度窗口变窄甚至不安全。对于裂缝性地层,常规堵漏材料存在尺寸不合适和强度低的缺点,导致首次堵漏失败且成本增加。因此,我们开发了一种用于裂缝性地层的聚合物堵漏凝胶,名为XNGJ - 3。XNGJ - 3主要由丙烯酰胺单体制成,并伴有羧基和羟基的反应性单体作为成分。XNGJ - 3在胶凝前粘度较低。在80℃时它会胶凝,并且胶凝时间被控制在实际应用所需的时间内。这些条件有利于使堵漏材料顺利进入交叉裂缝并封堵裂缝。XNGJ - 3还具有良好的变形能力,能够避免在裂缝闭合过程中被破坏。漏失模拟实验表明,这种材料的承载能力可达21MPa,反承载能力可达20MPa。这些强度是普通聚合物堵漏凝胶的两倍多。最后,利用四川盆地裂缝性地层中的三口漏失井来验证XNGJ - 3的堵漏效果。与其他常用堵漏材料相比,XNGJ - 3具有首次堵漏成功率高、经济成本低、工作时间短等优点,这表明这种堵漏材料在处理裂缝性地层漏失方面具有良好的工程应用价值。