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History Matching of Naturally Fractured Reservoirs Using Pressure Transient Analysis and a Case Study

机译:使用压力瞬态分析和案例研究自然裂缝储层的历史匹配

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This paper presents a modelling workflow to efficiently history match naturally fractured reservoirs using Pressure Transient Analysis(PTA)with application to a complex naturally fractured sandstone reservoir.Incorporated in the modelling workflow is the use of deconvolution to streamline the history matching process.To ensure this workflow is flexible to mature fields with interference between wells,a work around to achieve a similar output to multi-well deconvolution is presented.The modeling workflow was successfully applied to a case study resulting in reduction of computer processing time by around 60%.The product of this workflow was not just a single dual-porosity model which best matched the historical data-set,but a suite of models which sample the range of possibilities.From the multiple history matched models,the low(P90),mid(P50)and high case(P10)models were selected statistically.Fracture porosity is shown to be the input parameter with largest impact on the pertinent simulation outputs in the case study such as time to water breakthrough,pressure match and recoverables.As such,time should be spent gathering and processing data to narrow the uncertainty range.However,care should be taken not to reduce the range prematurely as fracture porosity estimation is a source of wide uncertainty.Additionally,the case study highlights that horizontal anisotropy can have a significant impact on the field GIIP during the history matching process and consequently impact the reserves in a fractured field.In the case study,the introduction of horizontal anisotropy not only improved the history match but also increased the field GIIP post-history match by around 30%.The value in studying anisotropy within a fractured field and its inclusion into modeling is clearly demonstrated.This paper brings together various innovative data interpretation approaches and modeling techniques and presents them in an applied workflow.The workflow shows the practicing engineer how they can best interpret and utilize the available data-sets through the application of PTA.The result is not only a better history match,but also a more efficient process which provides a statistical representation of the likely possibilities of the naturally fractured system.
机译:本文提出了一种建模工作流程,有效地使用压力瞬态分析(PTA)与应用于复杂的自然碎砂岩储层的自然断裂储存器的建模工作流程。在建模工作流程中,在建模工作流程中是使用解卷积来简化历史匹配过程。确保这一点工作流是灵活的,在井间干扰的成熟字段是灵活的,介绍了实现类似输出到多井去卷积的工作。建模工作流程被成功应用于案例研究,从而减少计算机处理时间约为60%。该该工作流的产品不仅仅是一个最佳匹配历史数据集的单孔隙度模型,而且是一套模型,这些模型采样了可能性范围。从多历史匹配模型,低(P50),中期(P50) )和高案例(P10)模型是统计选择的。显示孔隙度被显示为输入参数,对具有最大影响的IMU的输入参数在案例研究中的情况下,如水突破,压力匹配和回收的时间。如此,时间应该花费收集和处理数据来缩小不确定度范围。无论,都应该注意不要过早降低范围作为裂缝孔隙率估计是广泛的不确定性的源泉.Aditionally,案例研究突出显示水平各向异性在历史匹配过程中对场GIIP产生重大影响,从而影响了裂缝领域的储备。在案例研究中,水平的引入引入各向异性不仅改进了历史匹配,还增加了历史历史历史历史赛赛中的历史记录赛中率约为约30%。清楚地证明了在碎片场内研究各向异性的价值及其纳入模拟。本文汇集了各种创新的数据解释方法和建模技术并在应用的工作流程中呈现它们。工作流程显示练习工程师如何通过PTA的应用,最佳解释和利用可用的数据集。结果不仅是更好的历史匹配,而且还具有更有效的过程,该过程提供了自然裂缝系统的可能性可能性的统计表示。

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