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首页> 外文期刊>ACS Omega >Technology and Application of Segmented Temporary Plugging Acid Fracturing in Highly Deviated Wells in Ultradeep Carbonate Reservoirs in Southwest China
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Technology and Application of Segmented Temporary Plugging Acid Fracturing in Highly Deviated Wells in Ultradeep Carbonate Reservoirs in Southwest China

机译:中国西南部超碳酸盐储层中高度偏离井分段临时堵塞酸性压裂的技术与应用

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The Shuangyu gas reservoirs in China has a reservoir depth of more than 7000 m and a reservoir temperature of 160 °C. It is a fractured porous carbonate gas reservoir, and the gas wells mainly establish production by acid fracturing. In the early stage, the Shuangyu gas reservoirs was mainly developed with vertical wells. After acid fracturing, the natural gas production was low and declined rapidly. To obtain higher natural gas production, a large number of highly deviated wells have been deployed in the Shuangyu gas reservoirs. Because the diameter of a highly deviated well in the Shuangyu gas reservoirs is small, a subsection tool cannot be operated inside it, so it can only adopt temporary plugging acid fracturing. In this paper, a resistance-reducing acid with low friction resistance is optimized and a set of temporary plugging agents with low dissolution rate in the acid solution are selected through laboratory tests. A dynamic temporary plugging instrument is used to evaluate the plugging ability of a temporary plugging agent with different concentrations and combinations for fractures with widths of 2 and 4 mm, developing a temporary plugging agent formulation suitable for temporary plugging segmented acid fracturing of the Shuangyu gas reservoirs. In the YY666 well, the application of the research results of this paper has successfully achieved a three-stage temporary plugging acid fracturing, and the natural gas production after fracturing has been increased by 3–4 times compared with those of surrounding wells.
机译:中国双宇气体储层的水库深度超过7000米,储层温度为160°C。它是一种骨折多孔碳酸盐气体储层,气井主要建立酸性压裂的生产。在早期阶段,双宇气体储层主要用垂直井开发。酸性压裂后,天然气生产低,迅速下降。为了获得更高的天然气生产,双宇气体储层部署了大量高度偏差的井。由于双宇气体储层中高度偏差井的直径小,因此在其内部不能操作套件工具,因此它只能采用临时堵塞酸性压裂。本文通过实验室试验,优化了具有低摩擦阻性的耐摩擦阻性的抗性降低酸,并通过实验室试验选择酸溶液中具有低溶解速率的临时堵塞剂。动态临时堵漏仪器用于评估具有不同浓度的临时堵塞剂的堵塞能力,以及裂缝的组合,宽度为2和4mm,临时堵塞剂配方适用于双宇气体储层的临时堵塞分段酸性压裂。在YY666嗯,本文的研究结果应用成功实现了三阶段的临时堵塞酸性压裂,与周围孔的水平相比,压裂后的天然气生产已增加3-4倍。

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