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Required Understanding for the Development of Shale Reservoirs in the Middle East in Light of Developments in North America

机译:在北美发展的发展中,对中东的页岩水库开发所需的理解

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The ever-increasing international energy demands require exploration of new fossil energy resources. Unconventional oil and gas have received a great deal of attention in recent years as the technological advancements have made their production possible and more economical.Most of the shale developments took place in North America where the learning curve is being developed.Although shales still require lots of understanding and more advanced technologies,a substantial experience has been developed in North America.This paper presents an effort to summarize the current experience in shales of North America from different angles:rock mechanics,rock/fluids interaction,gas flow mechanisms through shale rocks,proppant embedment and water recovery after shale fracturing. Three prospective areas for unconventional gas were found in the Kingdom of Saudi Arabia:in the Northwest,South Ghawar and condensate-rich shale gas in the Rub’Al-Khali area.The main targeted formations for unconventional natural gas are:the Ordovician Sarah,Silurian Qulibah,Qusaiba hot shale, Devonian Jauf and Permian Unayzah formations.The Qusaiba shale is located at depths of 7,500 to 20,000 ft throughout Saudi Arabia’s basins.The Qusaiba Hot Shale in the Northwest area is relatively thick and it is considered to be the richest in all possible source rocks with a maximum total organic content of 6.15%. Shales are composed of:kerogen,rock matrix and natural fractures.The mineralogy of shale varies from one field to another.Literature has confirmed that for Haynesville shale,the rock becomes more ductile with the increase in its clay content.Similar trends were seen for Lower Bakken shale.While other shale reservoirs,like Eagle Ford,Barnett and Middle Bakken are harder since they contain more quartz and calcite.The exposure of these clay-sensitive rocks to fracturing fluids does change their rock mechanical properties.This has been confirmed in literature where Middle Bakken shale lost 52%of its Young’s modulus after exposure to 2 wt%KCl slickwater at 300°F for 48 hours. The use of slickwater in fracturing represents a major challenge as it consumes huge volumes of this valuable resource.Recycling of produced water has been attempted in North America in Marcellus.An average amount of 3 to 8 million gallons of water are used in fracturing one well in Marcellus shale formation.In one application,re-use of the flowback water resulted in 25%reduction in the fresh water volumes and it reduced the cost of disposing produced water by 45 to 55%.The paper presents a summary of all of these findings from North America.A comprehensive understanding and analysis on unconven- tional reservoirs is required for the Middle Eastern reservoirs.
机译:不断增加的国际能源需求需要探索新的化石能源资源。近年来,近年来,由于技术进步使得其产量和更经济地,近年来,近年来,大量的石油和天然气得到了大量的关注。在北美发展,在北美发展的地位发展是在开发的学习曲线中。虽然Shales仍然需要批次理解和更先进的技术,北美已经发展了大量的经验。本文提出了总结从不同角度的北美罗斯的当前经验:岩石力学,岩石/液体相互作用,气流机制通过页岩岩石页岩压裂后的支撑剂嵌入和水恢复。在沙特阿拉伯王国发现了三个潜在的非传统气体的潜在地区:在鲁马 - 哈利地区的西北部,南格拉瓦尔和富含浓缩物的页岩气中。主要的自然天然气的主要针对性地层是:ordovician sarah, Silurian Qulibah,Qusaiba Hot Shale,Devonian Jauf和Permian Unayzah地层。Qusaiba Shale位于沙特阿拉伯的盆地的深度为7,500至20,000英尺。西北地区的Qusaiba热卖是相对较厚的,它被认为是最富有的在所有可能的源岩中,最大总有机含量为6.15%。 Shales由:Kerogen,岩石基质和自然骨折组成。页岩的矿物学从一个领域变化到另一个领域。对于Haynesville Shale来说,岩石随着其粘土含量的增加而变得更加延展性。看到了相似的趋势。较低的Bakken Shale.当其他页岩水库一样,像Eagle Ford,Barnett和Middle Bakken一样难以含有更多的石英和方解石。这些粘土敏感岩石对压裂液体的暴露确实改变了岩石力学性质。这已被证实文学中间Bakken Sheale在暴露于2wt%KCL Slickwater 48小时后,中间Bakken Sheale损失了52%的杨氏模量。在压裂中使用光滑剂是一个主要的挑战,因为它消耗了巨大的这种宝贵的资源。在Marcellus的北美已经尝试了产出的水。在Marcellus的平均金额为3〜800万加水分压裂在Marcellus页岩形成。在一个应用中,重新使用流量水导致淡水量减少25%,并将生产水的成本降低45%至55%。本文提出了所有这些的摘要从北美的调查结果。中东地区需要对不可行水库的全面理解和分析。

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