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Fracturing technologies of deep shale gas horizontal wells in the Weirong Block, southern Sichuan Basin

机译:四川盆地南部堰龙砌块深层页岩气水平井压裂技术

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Stimulation of hydraulic fracturing of horizontal shale gas wells in Weirong Block has always been facing many difficulties due to many factors such as complicated geological conditions, small differences between the horizontal principal stress and the vertical principal stress, high working pump pressures, and low sensitive sand ratios. In view of this, by combing the geological structure, engineering geological characteristics and the difficulties of fracturing of deep shale gas wells in Weirong Block, learning from the general idea of volumetric fracturing for shale gas reservoirs at home and abroad, we determined the main ideas and technical countermeasures for fracturing in the area and applied them to the subsequent fracturing practices of shale gas wells. And the following achievements were obtained. First, the conventional fracturing technology applied to the shale gas wells in Weirong Block resulted in low fracture complexity, small stimulated reservoir volume (SRV), difficulties in guaranteeing the effectiveness of perforation clusters, low strength of proppant adding, difficulties in obtaining higher conductivity, poor stable production capacity after stimulation, and difficulties in meeting the need of well fracturing with casing deformation. Second, in view of the difficulties of fracturing stimulation in deep shale gas wells of Weirong Block, super high pressure, huge displacement, large fluid volume, temporary plugging and diverting in fracturing, and variable displacement technology can effectively increase SRV and the complexity of fractures in distant wells. The effectiveness of multi-cluster perforation can be guaranteed by comprehensive utilization of multi-cluster perforation optimization technology, big displacement technology and temporary plugging and diverting & fracturing technology at slots. The continuous proppant-adding technology with huge displacement, high viscosity, low sand ratio, low density and small particle size can improve sand adding strength and fracture conductivity. Besides, the stimulation technology for casing deformed wells using coiled tubing fast processing?+?small diameter bridge plug and separate pumping technology of perforating gun have been formed. Third, after the above fracturing technologies have been applied in five shale gas horizontal wells in Weirong Block, the average absolute open flow (QAOF) reached 26.11?×?104?m3/d, indicating a good stimulation effect. In conclusion, this paper can provide meaningful reference for the development of deep shale gas wells of the similar type.
机译:威龙块水平页岩气井水力压裂刺激一直面临着许多困难,因为许多因素如复杂的地质条件,水平主应力和垂直主应力,高工作泵压力和低敏感砂之间的小差异比率。鉴于此,通过梳理地质结构,工程地质特征以及威龙区堤坝煤气井断裂的困难,从国内外页岩气藏的体积压裂总体概念学习,我们确定了主要思想和该地区压裂的技术对策,并将其应用于随后的页岩气井井的断裂实践。获得以下成就。首先,将传统的压裂技术应用于韦龙块的页岩气井,导致低断裂复杂性,小刺激的储存量(SRV),难以保证穿孔簇的有效性,高强度的支撑剂加入,难以获得更高的导电性,刺激后的稳定生产能力差,难以满足套管变形需求的需求。其次,鉴于威龙块的深层页岩气井中压裂刺激的困难,超高压,巨大的位移,大流体体积,临时堵塞和压裂中的转移,可变排量技术可以有效地提高SRV和骨折的复杂性在遥远的井里。通过在槽中的多集群穿孔优化技术,大型位移技术和临时堵塞和转移和压裂技术的综合利用,可以保证多集群穿孔的有效性。具有巨大位移,高粘度,低砂比,低密度和小粒度的连续支撑剂加入技术可以改善砂增加强度和断裂电导率。此外,使用卷绕管快速加工壳体变形孔的刺激技术?+?已经形成了穿孔枪的小直径桥塞和单独的泵送技术。第三,在韦隆块的五个页岩气水平井中应用于上述压裂技术后,平均绝对开放流量(QAOF)达到26.11?×104?M3 / D,表明良好的刺激效果。总之,本文可以为类似类型的深层页岩气井开发提供有意义的参考。

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