Study and Field Application of New Agent for Casing Repair in High Temperature and High Salinity Reservoir

Meng Xiangjuan, Pan Zhaocai, Chen Defei, Su Zhou, Wang Peng, Liu Ju, Jianxin Shen, Cao Xianping, Bai Xiaofei
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Abstract

Casing failure probability is high in Tarim Oilfield, due to high pressure high temperature and high sality operational environment, near 6% of total wells were damaged during their production life, which has serious impacts on the development well pattern, resulting in unbalanced injection-production. Based on the analysis of the situation and distribution of casing damage in the Tarim Oilfield, which located in northwest of China, was discovered in 1989, Its production formation has unwanted characteristics of high temperature (150°C) and high salinity (250000mg/L), in order to treatment the casing damage wells, a new type of chemical plugging agent named LTTD was synthesized on the basis of LTSD and its resistance to acid, temperature and salinity were carried out by experiments to evaluate the property of new chemical plugging agent. The plugging strength of LTTD and G-grade cement solidified body in different periods was studied by simulating the actual conditions of Tarim Oilfield, the mechanical properties of adhesive interface between LTTD and G-grade cement under dynamic condition were evaluated and microscopic observation of adhesive interface under dynamic condition were carried out. The experimental results show that the new plugging agent is characterized by marked improvement of performance and the enhanced resistance to acid, high salinity and high temperature conditions, moreover the formation of "the interpenetrating network structure" with high pressure bearing capacity in short time. In the actual condition of Tarim Oilfield, the plugging strength of LTTD plugging increase with the increase of temperature, which is higher than the strength of G-grade cement, during dynamic process, LTTD plugging is superior to G-grade cement in less amount of dissolution of calcium in hydration process and in better anti-channeling performance. Microscopic observation shows that both the inner and the bonding surfaces of the LTTD blocking agent have compact microstructure, which could effectively avoid the excessive formation of hydration product on bonding interface, and could produce hydration products against erosion, with strong self-healing ability and improve plugging quality. Field tests show that not only repair casing damage successfully, but also promote the oil production. Therefore, the development of new plugging agent can improve the ultimate recovery of Tarim oilfield. This article provides a type of plugging agent for solving the casing damage and the result may be valuable to develop the similar oilfields.
高温高矿化度油藏套管修复新药剂的研究与现场应用
塔里木油田由于高压、高温、高盐作业环境,套管损坏概率高,近6%的油井在生产寿命期内损坏,严重影响了开发井网,造成注采不平衡。在分析塔里木油田1989年发现的套管损伤情况及分布的基础上,发现其生产地层具有高温(150°C)、高矿化度(250000mg/L)的不良特性,为治理套管损伤井,在LTSD及其耐酸性能的基础上合成了一种新型化学封堵剂LTTD。通过实验对新型化学堵漏剂的性能进行了温度和盐度评价。通过模拟塔里木油田的实际情况,研究了LTTD与g级水泥固化体在不同时期的封堵强度,评价了LTTD与g级水泥在动态条件下的胶结界面力学性能,并进行了动态条件下胶结界面的微观观察。实验结果表明,新型堵剂性能明显改善,抗酸、耐高盐、耐高温性能增强,并在短时间内形成具有高承压能力的“互穿网络结构”。在塔里木油田实际情况中,LTTD封堵强度随温度升高而增大,高于g级水泥的封堵强度,在动态过程中,LTTD封堵在水化过程中钙溶出量少,抗窜流性能优于g级水泥。微观观察表明,LTTD阻堵剂的内表面和粘结表面微观结构致密,可有效避免在粘结界面上形成过多的水化产物,产生抗侵蚀的水化产物,具有较强的自愈能力,提高封堵质量。现场试验表明,该方法不仅成功修复了套管损伤,而且提高了石油产量。因此,开发新型堵漏剂可以提高塔里木油田的最终采收率。本文提供了一种解决套管损坏的堵漏剂,对类似油田的开发具有一定的参考价值。
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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