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Oil Rock Interaction:Impact on Optimum Drawdown

机译:油岩互动:对最佳绘制的影响

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Oil rock interaction may lead some wells to a sharp decline in productivity which is not associated with a major drop in reservoir pressure or increase in water cut.Also excessive drawdown is known to cause productivity decline and potentially causes permanent damage to the wells through one or all of the following:Fine migration,asphaltene deposition and/or emulsion formation around the wellbore.Flooding tests were performed under reservoir conditions of pressure and temperature using filtered reservoir crude oil and synthetic brine generated from a geochemical analysis representative of the reservoir brine.A major finding of the experimental displacement tests showed that monitoring of pressure gradient across the cores at various flow rates and water cuts have indicated a marked rock fluid interaction rendering Darcy's law inapplicable.Emulsion formation has been monitored through visual observation first using a sight glass ahead of the backpressure regulator followed by observation under ambient conditions.The nature and distribution of fines inside the cores as well as hydrocarbons deposition were evaluated through post-flood examination of the cores under the microscope as well as by SEM and thin section techniques,and comparison with pre-flood conditions.The main objective of this paper is to describe the adopted approach,utilizing field data and laboratory experiments to quantify the impact of rock fluid interaction on optimum drawdown.
机译:油岩相互作用可能导致一些井的生产率急剧下降,这与水库压力的主要下降无关,或者水切口的增加。已知过度降低造成生产率下降,并且可能导致井中的永久性损坏井或以下所有内容:井眼周围的细迁移,沥青质沉积和/或乳液形成。通过由储层盐水的地球化学分析的地球化学分析产生的过滤的储存器原油和合成盐水,在压力和温度的储层条件下进行。实验位移试验的主要发现表明,在各种流速和水切口上对压力梯度的监测表明,达西法互动的标记岩石流体相互作用是可靠的。通过视觉观察首次使用瞄准玻璃来监测乳液形成。背压调节器后面是观察n在环境条件下。通过显微镜下的核和晶体和薄剖面技术进行核心的核和晶粒缺液中的核和烃沉积的性质和分布,以及与洪水前的条件进行比较。本文的主要目的是描述采用的采用方法,利用现场数据和实验室实验来量化岩石流体相互作用对最佳绘制的影响。

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