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Correcting for Mud Filtrate Contamination of Formation Water Samples for Scale Management Planning: A Case Study from the Nova Field,Norwegian North Sea

机译:矫正泥浆滤液形成水样的污染规模管理规划 - 以挪威北海诺瓦田的案例研究

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To develop scale management strategies and plans during field development planning,it is important to know the composition of formation water in the reservoir.Typically,formation water samples will be collected from appraisal wells and analysed for this purpose.However,when the wells are drilled with water-based mud,the samples are often contaminated with mud filtrate that has invaded the formation during drilling.By adding a tracer to the drilling mud and using a simple mass balance correction technique, it is possible to correct for the effects of contamination and obtain an estimate of the formation water composition.But,where reactions occur during invasion or within the sample after collection,this method of correction will generate an erroneous estimate of the composition.The errors will increase with the extent of reaction and degree of contamination. In this paper,we describe a new’correction’approach which additionally makes use of(a)1-D reactive transport modelling of mud filtrate invasion and(b)modelling of reactions occurring in formation water samples after collection.This approach accounts for the potential effects of these reactions and provides an estimate of the formation water composition within uncertainty limits.It reduces the risk of obtaining erroneous estimates of formation water composition and is particularly beneficial where reactions occur and where the mud contamination fractions are elevated(e.g.~10-40%).At higher fractions,the uncertainties can be so high that the estimated compositions are not useful,emphasising the risks of trying to estimate formation water compositions from heavily contaminated samples. This approach has been applied to formation water samples obtained from the Nova Field(formerly Skarfjell,Norwegian North Sea).It has meant that the resulting composition and associated uncertainties have been used with more confidence in scale management planning; to select seawater as the injection water,and to identify the scale risks across the relevant nodes in the production process over the life of field of the asset.Based on these risks,appropriate scale mitigation and monitoring measures have been selected.
机译:要在现场开发规划期间制定规模管理策略和计划,了解储层中地层水的组成非常重要。纯,形成水样品将从评估井收集并为此目的进行分析。然而,当井中钻井时随着水性泥浆,样品常被污染泥浆滤液,该泥滤液已经在钻井期间侵入了地层.by向钻井泥浆添加跟踪器并使用简单的质量平衡校正技术,可以纠正污染的影响和污染的影响获得形成水组合物的估计。但是,在收集后发生反应或在样品中发生反应,这种校正方法将产生对组合物的错误估计。误差随着反应程度和污染程度而增加。在本文中,我们描述了一种新的腐蚀性的人,其另外利用(a)1-d的泥浆滤液侵袭和(b)在收集后形成水样中发生的反应的建模。此方法占这些反应的潜在效果,并提供了不确定局限质内的形成水组合物的估计。降低了获得形成水组合物错误估计的风险,并且在发生反应的情况下特别有益,并且泥浆污染部分升高(例如〜10- 40%)。在较高的级分,不确定因素可以如此之高,即估计的组合物没有用,强调试图估计来自重污染样品的形成水组合物的风险。这种方法已被应用于从Nova领域(以前的Skarfjell,挪威北海)获得的地层水样。它意味着所产生的组成和相关的不确定性已被用于对规模管理计划的更具信心;选择海水作为注入水,并在资产领域的寿命中识别相关节点中的规模风险。基于这些风险,所选择的适当规模缓解和监测措施。

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