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Associated Shale Gas: From Flares to Rig Power

机译:相关页岩气:从耀斑到钻机力量

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From September 2011 to July 2013 the percentage of flared associated gas produced in the Bakken shale formation decreased from 36% to 29%. Although the percentage decreased, the volume of associated gas produced has almost tripled to 900 MMscf/D, resulting in the flaring of approximately 266 MMscf/D. The Bakken area is one of the most productive shale oil and condensate formations in the US. Reported volumes for this formation suggest that the amount of associated gas flared is more than enough to power drilling and hydraulic fracturing operations. This research shows the technical feasibility of replacing diesel for powering drilling and hydraulic fracturing operations in the Bakken formation with flared associated shale gas. We show that this is a more efficient solution to powering drilling rigs and hydraulic fracturing equipment while also reducing the amount of gas being flared in shale oil and condensate plays producing associated gas. To do this, we investigated the composition and volumes of gas being flared and the average energy requirements for drilling rigs and hydraulic fracturing equipment in the Bakken area. The investigation reveals that the amount of associated shale gas being flared is more than enough to supply the energy required for power to the drilling rig and frac spreads. After reviewing power sources that can use natural gas (including turbines, dual-fuel, and dedicated spark ignited engines) and associated gas separation technologies, we are able to make recommendations for the best use of flared associated shale gas. We show that making the switch to natural gas from diesel can result in cost savings for drilling rig and hydraulic fracturing operators. Natural gas costs less than diesel and is more environmentally friendly.
机译:2011年9月至2013年7月,Bakken页岩形成中产生的喇叭口相关气体的百分比从36%降至29%。虽然百分比降低,所产生的相关气体的体积几乎增加到900 mmscf / d,导致大约266mmf / d的速度。 Bakken地区是美国最富有成效的页岩油和冷凝水形成之一。报告的这种形成的量表明,相关气体的量耀斑的量足以推动钻孔和液压压裂操作。本研究表明,用喇叭形相关页岩气体替换钻孔和水力压裂操作的柴油的技术可行性。我们表明这是一种更有效的解决方案,可以为供电钻机和液压压裂设备,同时还减少了在页岩油和产生相关气体的凝结物中燃烧的气体量。为此,我们调查了Bakken地区钻井钻井平台和液压压裂设备的平均气体的组成和体积。调查表明,传出的相关页岩气的量足以提供给钻机和FRAC扩散所需的能量。在审查可以使用天然气(包括涡轮机,双燃料和专用火花点火发动机)和相关的气体分离技术的电源之后,我们能够提出建议,以便最好地使用喇叭形相关的页岩气。我们表明,将切换到柴油的天然气可导致钻机和液压压裂操作员的成本节约。天然气成本低于柴油,更环保。

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