首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Achievement of Maximum Mud Weights in WBM with Micromax/Barite Blend and its Successful Implementation in Deep HPHT Challenging Environment
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Achievement of Maximum Mud Weights in WBM with Micromax/Barite Blend and its Successful Implementation in Deep HPHT Challenging Environment

机译:Micromax /晶片混合物的WBM最大泥浆重量的成就及其深海HPHT挑战环境的成功实施

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The use of water based mud (WBM) in drilling applications under extreme Pressure and temperature has been increasing rapidly in the drilling industry over the past few years. It is now more crucial to close the technological gap that presents challenges towards developing high Density water based mud systems for High Temperature High Pressure (HPHT) wells. These challenges include rheology control, weighting agents sagging tendencies associated with high down hole temperature, In addition to the high solids loading which limits the free water availability impacting polymers performance and therefore, rheology, HPHT fluid loss and filter cake thickness control become an issue that requires special optimization and extra field maintenance. Operating under narrow margin between pore pressure and fracture initiation pressures adds to the complexity of the drilling fluids maintenance where a slight change in the bottom hole pressure (BHP) could lead to significant increase in the non-productive time "NPT" due to the time spent in solving possible fluid losses and kicks. This paper discusses the outstanding performance achieved in a deep HPHT formation drilled using water base mud weighted with Manganese Tetroxide (Micromax)/Barite blend, from planning and extensive lab testing to field implementation. This paper also describes and compares the methodology of using Micromax/Barite versus using barite only as the weighting agent and finally the field results.
机译:在过去几年中,在极压和温度下,在极压和温度下在钻井应用中使用水基泥浆(WBM)在钻井业中迅速增加。近距离技术缺乏高温高压(HPHT)井开发高密度水泥浆系统的技术差距更为重要。这些挑战包括流变控制,加权药物与高孔温度相关的倾向,除了高固体负载,这限制了自由水可用性影响聚合物性能,因此,流变学,HPHT流体损失和滤饼厚度控制成为一个问题需要特殊优化和额外的现场维护。在孔隙压力和骨折起始压力之间的窄边缘下操作增加了钻井液的复杂性,其中底部孔压力(BHP)的微小变化可能导致由于时间而导致非生产时间“NPT”的显着增加在解决可能的液体损失和踢球方面。本文讨论了使用水基泥浆(Micromax)/重晶体混合物加权的水基泥浆,从规划和广泛的实验室测试中钻取的深层HPHT形成的出色性能。本文还描述并比较了使用Micromax / Barite与使用重晶矿作为加重剂的方法的方法,最后是现场结果。

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