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Staged fracturing of horizontal shale gas wells with temporary plugging by sand filling

机译:水平井页岩气井分段压裂,填砂临时堵漏

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Due to downhole complexities, shale-gas horizontal well fracturing in the Sichuan Basin suffered from casing deformation and failure to apply the technique of cable-conveyed perforation bridge plug. In view of these problems, a new technique of staged volume fracturing with temporary plugging by sand filling is employed. Based on theoretical analyses and field tests, a design of optimized parameters of coiled tubing-conveyed multi-cluster sand-blasting perforation and temporary plugging by sand filling was proposed. It was applied in the horizontal Well ZJ-1 in which casing deformation occurred. The following results are achieved in field operations. First, this technique enables selective staged fracturing in horizontal sections. Second, this technique can realize massive staged fracturing credibly without mechanical plugging, with the operating efficiency equivalent to the conventional bridge plug staged fracturing. Third, full-hole is preserved after fracturing, thus it is possible to directly conduct an open flow test without time consumption of a wiper trip. The staged volume fracturing with temporary plugging by sand filling facilitated the 14-stage fracturing in Well ZJ-1, with similar SRV to that achieved by conventional bridge plug staged fracturing and higher gas yield than neighboring wells on the same well pad. Thus, a new and effective technique is presented in multi-cluster staged volume fracturing of shale gas horizontal wells.
机译:由于井下的复杂性,四川盆地页岩气水平井压裂受到套管变形和无法应用电缆输送射孔桥塞技术的困扰。鉴于这些问题,采用了一种新技术,该技术采用分阶段的体积压裂和通过填砂临时堵塞的方法。在理论分析和现场试验的基础上,提出了连续油管多团喷砂射孔和填砂临时堵漏的优化参数设计。应用于发生套管变形的水平井ZJ-1。在现场操作中获得以下结果。首先,该技术能够在水平段中进行选择性分段压裂。其次,该技术无需机械堵塞即可可靠地实现大规模分段压裂,其工作效率与常规桥塞分段压裂相当。第三,压裂后保留了全孔,因此可以直接进行开流试验,而不会浪费刮水器行程。通过填砂临时堵塞的分段体积压裂促进了ZJ-1井的14阶段压裂,其SRV与常规桥塞分段压裂实现的SRV相似,并且比同一井垫上的相邻井具有更高的产气量。因此,在页岩气水平井的多团分段压裂中提出了一种新的有效技术。

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