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Integrated Reservoir Characterization and Simulation to Optimize Recoveryfrom a Mature Carboniferous North Sea Gas Field with Water Influx

机译:集成储层表征和仿真,以优化成熟的石炭系北海天然气领域与水中流入

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The E17a-A gas field,located offshore The Netherlands in the Southern North Sea,started production in2009 from Upper Carboniferous sandstones,initially from three wells.Since early production history of thefield,the p/z plot extrapolation has consistently shown an apparent Gas Initially In Place (GIIP) which wasmore than 50% higher than the volumetric GIIP mapped.The origin of the pressure support (e.g.aquifersupport,much higher GIIP than mapped) and overall behavior of the field were poorly understood.An integrated modeling study was carried out to better understand the dynamics of this complex field,evaluate infill potential and optimize recovery.An initial history matching attempt with a simulationmodel based on a legacy static model highlighted the limitations of existing interpretations in terms ofin-place volumes and connectivity.The structural interpretation of the field was revisited and a novelfacies modeling methodology was developed.3D training images,constructed from reservoir analogue andoutcrop data integrated with deterministic reservoir body mapping,allowed successful application of MultiPoint Statistics techniques to generate plausible reservoir body geometry,dimensions and connectivity.Following a series of static-dynamic iterations,a satisfying history match was achieved which matchesobserved reservoir pressure data,flowing wellhead pressure data,water influx trends in the wells andRFT pressure profiles of two more recent production wells.The new facies modeling methodology,usingoutcrop analogue data as deterministic input,and a revised seismic interpretation were key improvementsto the static model.Apart from resolving the magnitude of GIIP and aquifer pressure support,the reservoircharacterization and simulation study provided valuable insights into the overall dynamics of the field-e.g.crossflows between compartments,water encroachment patterns and vertical communication.Based on themodel a promising infill target was identified at an up-dip location in the west of the field which lookedfavorable in terms of increasing production and optimizing recovery.At the time of writing,the new wellhas just been drilled.Preliminary logging results of the well will be briefly discussed and compared to pre-drill predictions based on the results of the integrated reservoir characterization and simulation study.The new facies modeling methodology presented is in principle applicable to a number of Carboniferousgas fields in the Southern North Sea.Application of this method can lead to improved understanding and optimized recovery.In addition,this case study demonstrates how truly integrated reservoir characterizationand simulation can lead to a revision of an existing view of a field,improve understanding and unlockhidden potential.
机译:该E17a-A气田,位于离岸荷兰在北海南部,开始生产IN2009从上石炭统砂岩,最初从thefield三个wells.Since早期的生产历史中,P / Z情节外推一再表明一个明显的天然气开始到位(GIIP),这比wasmore比压力支持的体积GIIP mapped.The产地高出50%(egaquifersupport,更高GIIP比映射)和场的整体性能进行了不良understood.An集成建模进行了研究,更好地了解这一复杂领域的动态,评估填充潜力,优化recovery.An与基于传统的静态模型强调了在现有条件解释的局限性奥芬放卷一个模拟模型和connectivity.The构造解释最初的历史匹配的尝试现场被重新审视和novelfacies建模方法是developed.3D训练图像,从RESERV构建OIR类似物andoutcrop具有确定性贮液器本体的映射,允许多点统计技术成功的应用,以产生合理的贮液器本体几何形状,尺寸和connectivity.Following一系列静态动态迭代中,满足历史匹配的实现,其matchesobserved储层压力数据综合数据,在流动井井口压力数据,水侵趋势两个近期生产的andRFT压力分布wells.The新相建模方法,usingoutcrop模拟数据作为输入的确定性,以及修订后的地震解释的解决是关键improvementsto静态model.Apart GIIP和含水层压力支持的幅度,在reservoircharacterization和模拟研究提供了有价值的见解舱,水侵模式和垂直communication.Based上themodel一个有前途的填充目标是在一个上倾鉴定的现场egcrossflows的整体动态罗阳离子领域的西侧,在提高产量和优化recovery.At写作的时间方面lookedfavorable,新wellhas刚刚井的测井drilled.Preliminary结果将基于简要讨论,并与钻前预测综合油藏描述和模拟study.The新相建模方法呈现的结果是原则上适用于一些在这种方法的南朝北Sea.Application Carboniferousgas领域可能会导致更好地理解和优化recovery.In此外,该案例研究表明真正的综合油藏模拟characterizationand如何导致领域的现有视图的修订,提高认识和unlockhidden潜力。

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