Advances in the Study of Fractured Reservoirs

Advances in the Study of Fractured Reservoirs
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裂缝性油藏研究进展

DOI:
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发表时间:
2014
期刊:
影响因子:
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通讯作者:
J. Daniel
J. Daniel
中科院分区:
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文献类型:
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作者:
G. Spence;J. Redfern;R. Aguilera;T. Bevan;J. Cosgrove;G. Couples;J. Daniel

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天然裂缝性储集层占剩余碳氢化合物资源的相当大比例;它们在其他不渗透的岩石中形成勘探目标,包括未被勘探的结晶基底;它们可以用作人为二氧化碳的地质储存库。传统上,它们在生产过程中的复杂行为很难预测,这在很大程度上导致了油藏开发的不确定性。天然裂缝性油藏的应用研究试图通过发展新的认识来限制这种不确定性,这必然是一个广泛的、综合的、跨学科的课题。这本书阐述了一些挑战和进步的知识,途径,概念和方法用于表征岩石基质和裂隙网络的相互作用,与流体流动和碳氢化合物回收有关。主题包括:描述、描述和确定露头、岩心、地球物理数据、数字和数字模型对裂缝网络的控制;地质力学对储集层行为的影响;流体流动的数值模拟和模拟;碳酸盐岩、硅屑和变质天然裂缝性油藏的勘探和开发案例研究。
Naturally fractured reservoirs constitute a substantial percentage of remaining hydrocarbon resources; they create exploration targets in otherwise impermeable rocks, including under-explored crystalline basement; and they can be used as geological stores for anthropogenic carbon dioxide. Their complex behaviour during production has traditionally proved difficult to predict, causing a large degree of uncertainty in reservoir development. The applied study of naturally fractured reservoirs seeks to constrain this uncertainty by developing new understanding, and is necessarily a broad, integrated, interdisciplinary topic. This book addresses some of the challenges and advances in knowledge, approaches, concepts, and methods used to characterize the interplay of rock matrix and fracture networks, relevant to fluid flow and hydrocarbon recovery. Topics include: describing, characterizing and identifying controls on fracture networks from outcrops, cores, geophysical data, digital and numerical models; geomechanical influences on reservoir behaviour; numerical modelling and simulation of fluid flow; and case studies of the exploration and development of carbonate, siliciclastic and metamorphic naturally fractured reservoirs.