The impact of fractures and planar structures on the quality of the Upper Jurassic Mozduran reservoir, Kopet Dagh basin (Northeast Iran)

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences Pub Date : 2024-04-28 DOI:10.1016/j.jseaes.2024.106167
Mohadese Ajami , Sepideh Davoodi , Kimia Asgari , Mohadeseh Torkamani , Ali Kadkhodaie , David A. Wood
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Abstract

In this study, based on stereographic projections, two sets of planar structures were identified in the Mozduran reservoir, a prolific reservoir in Northeast Iran. The first set includes shallow structures, consisting of stylolites, solution seams, dense veins, and bedding planes. These structures were created by both sedimentary and diagenetic processes and do not have much effect on reservoir quality. The second set includes structures are related to deformation, and these have a substantial impact on increasing the reservoir quality. To investigate the relationships between the types of fractures and their respective influences on reservoir quality, the production logging tool (PLT) gas production rate data was utilized. This analysis revealed that in fractured zones 2 and 4 of Mozduran reservoir, where fractures and flat structures have increased the quality of the reservoir, the PLT gas production rate also increases. Conversely, in areas where filled fractures and diagenetic processes have negatively affected reservoir quality, the PLT gas production rate decreases. This pattern indicates the contrasting impact of planar features on reservoir quality. Moreover, a higher frequency of fractures corresponds to a higher permeability in the Mozduran reservoir of Well #B, whereas a lower frequency of fractures corresponds to lower permeability in that reservoir in Well #A. These relationships confirm the positive influence of fractures on the Mozduran reservoir quality. The study results reveal that deformation variables in the examined reservoir have greater impacts on its quality than the sedimentary and diagenetic porosity/permeability components, but those impacts can have both positive and negative consequences.

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裂缝和平面结构对伊朗东北部科佩特达赫盆地上侏罗统莫兹杜兰储层质量的影响
在这项研究中,根据立体投影图,确定了伊朗东北部储量丰富的莫兹杜兰储油层中的两组平面结构。第一组包括浅层结构,由花柱岩、溶蚀缝、致密矿脉和层理平面组成。这些构造由沉积和成岩过程形成,对储层质量影响不大。第二类结构与变形有关,对提高储层质量有很大影响。为了研究裂缝类型及其各自对储层质量的影响之间的关系,利用了生产测井工具(PLT)的产气率数据。分析表明,在莫兹杜兰储层的裂缝 2 区和 4 区,裂缝和平面结构提高了储层质量,PLT 的产气量也随之增加。相反,在充填裂缝和成岩过程对储层质量产生负面影响的地区,PLT 产气率则会下降。这一规律表明,平面特征对储层质量的影响截然不同。此外,在 B# 井的莫兹杜兰储层中,裂缝频率越高,渗透率越高,而在 A# 井的该储层中,裂缝频率越低,渗透率越低。这些关系证实了裂缝对莫兹杜兰储层质量的积极影响。研究结果表明,与沉积和成岩孔隙度/渗透率成分相比,所研究储层中的变形变量对储层质量的影响更大,但这些影响既可能产生积极后果,也可能产生消极后果。
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来源期刊
Journal of Asian Earth Sciences
Journal of Asian Earth Sciences 地学-地球科学综合
CiteScore
5.90
自引率
10.00%
发文量
324
审稿时长
71 days
期刊介绍: Journal of Asian Earth Sciences has an open access mirror journal Journal of Asian Earth Sciences: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal of Asian Earth Sciences is an international interdisciplinary journal devoted to all aspects of research related to the solid Earth Sciences of Asia. The Journal publishes high quality, peer-reviewed scientific papers on the regional geology, tectonics, geochemistry and geophysics of Asia. It will be devoted primarily to research papers but short communications relating to new developments of broad interest, reviews and book reviews will also be included. Papers must have international appeal and should present work of more than local significance. The scope includes deep processes of the Asian continent and its adjacent oceans; seismology and earthquakes; orogeny, magmatism, metamorphism and volcanism; growth, deformation and destruction of the Asian crust; crust-mantle interaction; evolution of life (early life, biostratigraphy, biogeography and mass-extinction); fluids, fluxes and reservoirs of mineral and energy resources; surface processes (weathering, erosion, transport and deposition of sediments) and resulting geomorphology; and the response of the Earth to global climate change as viewed within the Asian continent and surrounding oceans.
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