首页> 外文期刊>Natural Gas Industry B >Horizontal well fracturing mode of 'increasing net pressure, promoting network fracture and keeping conductivity' for the stimulation of deep shale gas reservoirs: A case study of the Dingshan area in SE Sichuan Basin
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Horizontal well fracturing mode of 'increasing net pressure, promoting network fracture and keeping conductivity' for the stimulation of deep shale gas reservoirs: A case study of the Dingshan area in SE Sichuan Basin

机译:“增加净压力,促进网络破裂,保持电导率”的水平井压裂模式对深层页岩气藏的增产作用-以四川盆地东南部定山地区为例

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The deep shale gas reservoirs of Upper Ordovician Wufeng–Lower Silurian Longmaxi Formation in the Dingshan area of the southeastern Sichuan Basin have a great burial depth and complicated geologic features, so the fracturing technologies that are used for medium–shallow shale gas reservoirs are not suitable for their stimulation. In this paper, "double sweet spot" zones of shale gas were selected by combining engineering and geological research. The horizontal well fracturing technology suitable for deep shale gas reservoir was developed. And the fracturing mode suitable for medium–shallow shale gas reservoirs was improved. In addition, the improved fracturing mode and technology were applied in 3 deep shale gas wells in the Dingshan area. And the following research results were obtained. First, the deep shale gas reservoirs in the northwest of the Dingshan area have the characteristics of "double sweet spot" of geology and fracturing, and the development of natural fractures and bedding fractures provides a favorable condition for the formation of complex fracture networks after fracturing. Second, a combined fracturing mode of "pre acid?+?gel?+?slickwater?+?gel" was developed for the "double sweet spot" zones. In this mode, high-viscosity slickwater is adopted to increase the proppant-transport ability of liquid and enhance the fracture-creating effect, the fracturing technology of "controlling the near and extending the far" can increase the effective stimulated reservoir volume far from the well, and the ultra-high pressure facility can increase the fracturing displacement and the net pressure in fractures. Third, after reservoir stimulation, 3 deep shale gas wells present remarkable stimulation results, and their shale gas production rate during the testing is in the range of 10.50?×?104–20.56?×?104?m3/d. In conclusion, the improved fracturing mode and technology can provide a technical method for the stimulation of deep shale gas reservoirs in the Dingshan area, as well as a support for the breakthrough of exploration and development of deep shale gas reservoirs.
机译:四川盆地东南部定山地区上奥陶统五峰—下志留统龙马溪组深部页岩气埋藏深度大,地质特征复杂,中浅页岩气藏采用的压裂技术是不合适的。为了他们的刺激本文结合工程和地质研究,选择了页岩气“双甜点”区。开发了适用于深页岩气藏的水平井压裂技术。改进了适合中浅页岩气藏的压裂模式。此外,在定山地区的3口深页岩气井中采用了改进的压裂方式和技术。并获得了以下研究结果。首先,定山地区西北部的深层页岩气藏具有地质和压裂的“双甜点”特征,天然裂缝和层理裂缝的发育为压裂后形成复杂的裂缝网络提供了有利条件。 。其次,针对“双最佳点”区域开发了“预酸” +“凝胶” +“滑水” +“凝胶”的组合压裂模式。在这种模式下,采用高粘度的滑水增加了液体的支撑剂输送能力,增强了压裂作用,“控制近,远延伸”压裂技术可以使有效增产油藏远离井,超高压设备可以增加压裂位移和裂缝的净压力。第三,储层增产后,3口深层页岩气井表现出明显的增产效果,试验期间页岩气产气量在10.50?×?104?20.56?×?104?m3 / d范围内。综上所述,改进的压裂方式和技术可以为定山地区深层页岩气藏增产提供技术手段,为深层页岩气藏勘探开发的突破提供支持。

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