Development and Performance Evaluation of a Deep Water Synthetic Based Drilling Fluid System

Zengwei Chen, Yongxue Lin, Ninghui Dou, C. Xiao, H. Zhou, Yu Deng, Yuqiao Zhou, Wang Song, Dichen Tan, Huaiyuan Long
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Abstract

With the enhancement of environmental protection awareness, the requirements on drilling fluid are increasingly strict, and the use of ordinary oil-based drilling fluid has been strictly restricted. In order to solve the environmental protection and oil-gas reservoir protection problems of offshore oil drilling, a new synthetic basic drilling fluid system is developed. The basic formula is as follows: a basic fluid (80% Linear a-olefin + 20% Simulated seawater) + 2.5% nano organobentonite + 3.5% emulsifier RHJ-5# + 2.5% fluid loss agent SDJ-1 + 1.5% CaO + the right amount of oil wetting barite to adjust the density, and a multifunctional oil and gas formation protective agent YRZ has been developed. The performance was evaluated using a high-low-high-temperature rheometer, a high-temperature and high-pressure demulsification voltage tester, and a high-temperature and high-pressure dynamic fluid loss meter. The results show that the developed synthetic based drilling fluid has good rheological property, demulsification voltage ≥ 500 V, temperature resistance up to 160°C, high temperature and high pressure filtration loss < 3.5 mL. After adding 2% - 5% YRZ into the basic formula of synthetic based drilling fluid, the permeability recovery value exceeds 90% and the reservoir protection effect is excellent. The new synthetic deepwater drilling fluid is expected to have a good application prospect in offshore deepwater drilling.
深水合成基钻井液体系的研制与性能评价
随着环保意识的增强,对钻井液的要求越来越严格,普通油基钻井液的使用也受到了严格限制。为了解决海洋石油钻井的环境保护和油气藏保护问题,开发了一种新型的合成基础钻井液体系。其基本配方为:碱性流体(80%线性α-烯烃+20%模拟海水)+2.5%纳米有机膨润土+3.5%乳化剂RHJ-5#+2.5%降失剂SDJ-1+1.5%CaO+适量调油重晶石调密度,研制出多功能油气层保护剂YRZ。使用高-低-高温流变仪、高温高压破乳电压测试仪和高温高压动态流体损失仪对其性能进行了评估。结果表明,研制的合成基钻井液具有良好的流变性能,破乳电压≥500V,耐温达160°C,高温高压滤失量<3.5mL,渗透率恢复值超过90%,储层保护效果良好。新型合成深水钻井液在海上深水钻井中具有良好的应用前景。
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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