对古巴达格矿床粘土矿物特性的调查及基于这些特性的钻井液开发

A. R. Deryaev
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引用次数: 0

摘要

研究粘土矿物的特性并在此基础上研制创新型钻井液,对于改进自然资源的开采工艺、降低运营成本和提高工业运营的能源效率极为重要。本研究的目的是根据对粘土矿物特性的研究,探索在土库曼斯坦古巴达格矿床条件下钻井和维护钻井液成分的可能性。研究过程中使用了统计方法、实验和分析。研究结果表明,古巴达格矿床的粘土具有亲水性低、结构稳定性弱的特点,表现为水化能有限和过滤渗透率高。这导致天然溶液的粘度、流变学和结构力学参数较低。由此可见,Gubadag 粘土属于劣质材料。用上述不同类型的水样制备的溶液体积在 2-3 立方米之间。然而,在用烧碱处理海水后,2 号样品产生了超过 4 立方米的溶液,与其他样品明显不同。这说明有必要进行更多的研究来优化钻井液配方,因为必须确定粘土材料对溶液性质的影响,并根据材料的特性及其在钻井中的使用条件开发出更合适的配方。所获成果的实际意义在于显著提高了地质条件恶劣地区的钻井和水井维护效率,为钻井液的制备提供了新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the Gubadag deposit clay minerals properties and development of drilling fluids based on them
The study of the properties of clay minerals and the creation of innovative drilling fluids based on them are extremely important aspects for improving the processes of extraction of natural resources, reducing operating costs, and increasing the energy efficiency of industrial operations. The purpose of this study was to explore the possibilities of developing a composition of drilling fluids based on the investigation of the properties of clay minerals for drilling and maintenance of wells in the conditions of the Gubadag deposit located in Turkmenistan. Statistical methods, experiments, and analysis were used in the course of the work. The results of the study showed that clay from the Gubadag deposit is characterised by low hydrophilicity and weakened structural stability, which is manifested in limited hydration energy and high filtration permeability. This leads to low viscosity, rheological, and structural-mechanical parameters of natural solutions. It follows from this that Gubadag clay is classified as a low-quality material. The prepared solutions from the above samples on different types of water have volumes in the range of 2-3 m³. However, after treating sea water with caustic soda, sample No. 2 generates more than 4 m³ of solution, significantly different from other samples. This highlights the need for additional research to optimise drilling fluid formulae, since it is important to determine the effect of clay materials on the properties of solutions and develop more adapted formulae that consider the specifics of the material and the conditions of its use in drilling wells. The practical significance of the results obtained lies in a significant improvement in the efficiency of drilling and maintenance of wells in regions with difficult geological conditions, offering new methods for preparing drilling fluids.
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