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Origin of formation water salinity variation and its geologicaludsignificance in Chang 9 Stratum, Jiyuan Oilfield

机译:地层水盐分变化的成因及其地质 ud济源油田长9地层的意义

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摘要

The origin of formation water salinity variation in Chang 9 stratum, Jiyuan oilfield, Ordos basin is studied here. 91 formation water samples show that water salinity is characterized by a wide range and a complex plane distribution. In order to find out the main cause of such distribution complexity and reveal the relationship between formation water and evolution of reservoir traps, core data, chemical analysis result of formation water and log data are analyzed from perspectives of diagenesis and tectonism. And then, their characteristics are presented as the followings. In high salinity area, tuffaceous mudstone interlayer is found growing. Besides, the condition of Na++K+ is opposite to that of Ca2+, for its rate of concentration increase slows down with total salinity accumulating. In low salinity area, while, with fracture and faults developing, some formation water of CaCl2 type turns into MgCl2, NaHCO3 or Na2SO4 type. The cause is thus proposed to be composed of two aspects. One covers tuff alteration and later diagenesis for the high salinity. To be specific, montmorillonite, developed from tuff alteration, absorbs cation selectively and then ions migrate, during which more Na++K+ get lost, while more Ca2+ reserved. Afterwards, those reserved Ca2+ get released with montmorillonite transforming to illite, which results in a loss of Na++K+ and accumulation of Ca2+. Lots of ions are released into formation water during that process and later diagenetic process, which leads to the high water salinity. The other aspect is the development of faults and fractures, through which, the upper low salinity formation water gets connected. And that is the main cause of low salinity. At last, geological significance is discussed from two angles. Firstly, tuff alteration and later diagenesis are pivotal to reservoir reconstruction; and secondly, faults and fractures play an important role in oil transportation and storage.
机译:本文研究了鄂尔多斯盆地济源油田长9层地层水盐度变化的成因。 91个地层水样品表明,水盐度的特征是范围广且平面分布复杂。为了找出这种分布复杂的主要原因,并揭示地层水与储层圈闭演化的关系,从成岩作用和构造学角度分析了岩心数据,地层水化学分析结果和测井数据。然后,它们的特征表现如下。在高盐度地区,发现凝灰质泥岩夹层正在生长。此外,Na ++ K +的条件与Ca2 +的条件相反,因为其浓度增加速率随着总盐分的积累而减慢。在低盐度地区,随着裂缝和断层的发育,一些CaCl2型地层水变成MgCl2,NaHCO3或Na2SO4型。因此,提出原因包括两个方面。其中之一是凝灰岩的改变,后来又因高盐度而发生成岩作用。具体而言,由凝灰岩蚀变形成的蒙脱石选择性地吸收阳离子,然后离子迁移,在此期间,更多的Na ++ K +丢失,而更多的Ca2 +保留。之后,那些保留的Ca2 +随蒙脱石转变为伊利石而释放,从而导致Na ++ K +的损失和Ca2 +的积累。在此过程中以及随后的成岩过程中,大量离子释放到地层水中,这导致了高盐度。另一方面是断层和裂缝的发育,上部低盐度地层水通过这些断层与裂缝相连。这是低盐度的主要原因。最后从两个角度探讨了地质意义。首先,凝灰岩蚀变和后来的成岩作用对储层重建至关重要。其次,断层和裂缝在石油的运输和储存中起着重要的作用。

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