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Cuttings and Waste Injection,Shale Fracturing Pressure Decline,and Domain Mapping

机译:扦插和废物注射,页岩压裂压力下降,以及域映射

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The rapid expansion of cuttings and waste injection operations into major E&P regions throughout the world,and millions of barrels of drilling cuttings and waste injected in complex shale formations dictate understanding of uncertainties regarding its actual downhole placement and footprint in so-called disposal domain.The disposal domain is defined as area of influence created by hydraulically induced fractures that accumulate the bulk volume of cutting solids from repetitive cuttings slurry injections.In spite of outstanding milestones achieved by cuttings and waste injection in recent years,the subsurface risks involved demand constant assessment to ensure thorough understanding of the injection and complex fracturing process.Limited understanding and characterization of the hydraulically induced fractures and waste domain footprint could potentially have a considerable environmental impact.Understanding of past assessments of the cuttings and waste injection disposal domain provides alternative means of reevaluating shale gas complex hydraulic fracturing.This involves past assessments of multiple fracturing complex systems along the lines of the uniform disposal domain and a system of interconnected dendrite fractures with bifurcations from the flank of the fracture,and its evaluation in terms of minimum and maximum in-situ stress change in a localized near-wellbore fracture area,in distance perpendicular and along the preferred fracture plane.This paper presents a comprehensive review of the historical waste disposal domain evolution from early developments--the Mounds Drill Cuttings Experiment(MDCE)by Moschovidis et al.(2000)--to current understanding derived from microseismic observations in the Barnett,Haynesville and Marcellus shale gas fracturing.Particular discussion is presented around the presence of fissures in shale formations and its impact on refracture initiation,extension and branching,together with an alternative assessment of the disposal domain from microseismic observations that took place during the MDCE.In addition,non-ideal bottom-hole pressure signatures reported in the past from observations during regular cuttings and waste injection are re-visited and re-aligned within a complex disposal domain model.Explanations and understanding of pressure anomalies are discussed.The paper demonstrates that a true level of assurance and risk control can be achieved for cuttings and waste injection disposal(and also shale gas fracturing for stimulation)around mapping of the fracture-waste disposal-storage capacity via proactive integration of pressure monitoring and analysis with microseismic.This is the valuable information required by environmentalist and regulatory authorities to ensure that fracturing for disposal can be performed in an environmentally safe and technically sound manner.
机译:在全世界的主要E&P区域以及数百万桶钻削切割和垃圾中的快速扩展,以及复杂页岩地层的储存量决定了了解其实际井下放置和所谓的处置域中的足迹的不确定性。处理结构域被定义为液压诱导的骨折产生的影响,该骨骼累积从重复的切屑浆液注入中积聚的切割固体体积。尽管近年来,近年来,所涉及的地下风险的消耗和废物注射造成的杰出里程碑的陈述需求不断评估确保彻底了解注射和复杂的压裂过程。限制和表征液压诱导的骨折和废物域足迹可能具有相当大的环境影响。过去评估扦插和废物注射处理域的过去评估提供了相当大的环境影响重新评估页岩气复合液压压裂的替代方法。这涉及沿着均匀处理结构域的线的多个压裂复合体系的评估和与来自骨折的侧面的相互连接的树突骨折的互连树突骨折,以及其评估本地化近井眼骨折区域的最小和最大原位应力变化,垂直近骨折骨折区域,沿着优选的裂缝面。本文提出了对早期发展的历史废物处理领域演进的全面审查 - 土墩钻扦插实验(MDCE)由MoSchovidis等。(2000) - 目前在Barnett的微震观测结果中,Haynesville和Marcellus页岩气体压裂的目前的理解。讨论在页岩形成的裂缝存在周围呈现出裂缝,延期和分支,以及处理领域的替代评估从MDCE期间发生的微震观察。在MDCE中进行的,在过去的常规切割过程中报告的非理想底部孔压力签名在常规切割期间和废物喷射期间的观察结果被重新访问并重新排列在复杂的处置结构域模型中。开发和讨论了对压力异常的理解。本文表明,通过积极主动地围绕骨折废物处理 - 储存能力的绘图,可以实现用于切割和废物喷射处理(以及刺激的页岩气体压裂)的真实保证和风险控制。压力监测和微观乳瘤分析的整合。这是环保主义和监管机构所需的有价值的信息,以确保在环境安全和技术上的声音方面进行残疾。

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