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Realtime Reservoir Fluid Characterization Using High Efficiency Gas Extraction Membrane Technology System and Advanced GC Tracer Chromatograph; A Case Study from East Kuwait Jurassic Reservoir

机译:使用高效气体提取膜技术系统和先进的GC示踪色谱仪实时储层液体特性;东科威特侏罗纪水库的案例研究

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One of the first sources for formation evaluation while drilling a well is the gas data provided by the mud logging services, that is used increasingly as preliminary real-time reservoir interpretation to identify gas- oil or oil-water contacts, reservoir entry points, lithological changes and other applications. Gas ratio analysis and interpretation is a very valuable formation evaluation tool for geologists and petrophysicists to characterize the hydrocarbon fluid types and rock properties. Gas ratios when used in combination with wireline or logging while drilling tools can help resolve uncertainties that otherwise could only be resolved by testing a well. Jurassic deeper wells (>11000 ft) with a varying pressure regimes, very often the wireline logging or Logging while drilling (LWD) logs are cancelled due to several drilling related complications especially mud gain/loss situations. In these wells, Gas while drilling becomes a very unique and important tool that can provide significant insight into the reservoir properties. The gases liberated from the formation at the surface helps us determine the composition of the reservoir fluids and also provides information about the lithological changes, water saturation, and the mobility of the hydrocarbons contained into the rock. This broad spectrum of hydrocarbons assisted by the surface gas analyzer allows the separation of producible mobile heavy hydrocarbons from water wet zones. This ability to differentiate allows operators to geosteer a horizontal well in thin units of potential reservoirs by avoiding water bearing zones and staying in producible hydrocarbon zones. The end result is the ability to intersect the maximum amount of net pay in the target zones. This paper highlights the case studies from deeper reservoirs of East Kuwait where a surface gas logging system employing a semi-permeable membrane extractor coupled with an advanced GC tracer chromatograph detector has been applied in some of wells drilled in Greater Burgan Magwa Marrat limestone reservoir. Advanced gas logging system was deployed in two vertical/deviated wells to characterize the gas ratios for the different units/zones of Marrat reservoir. The zonation from Gas ratio interpretation was validated with the available wireline logging data before using it for planning the horizontal well. The GWD and LWD were performed independently of each other to determine the effectiveness and reliability of the GWD method. GWD in conjunction with LWD was used for the first time in Kuwait to place a horizontal well in a thin (15-20 ft) layer of a deep Marrat reservoir. Use of realtime Gas ratio data and analysis, successfully helped to complete the well as planned high producer.
机译:钻井井的第一源中的一个是由泥浆测井服务提供的气体数据,这些气体数据被越来越多地用作初步实时储层解释,以识别天然气或油水接触,储层入口点,岩性更改和其他应用程序。气体比率分析和解释是地质学家和岩石物理学家的一种非常有价值的形成评估工具,以表征烃流体类型和岩石性质。钻井工具与有线或测井结合使用时,气体比可以帮助解决不确定性,否则只能通过测试井来解决。侏罗纪更深的井(> 11000英尺)具有不同的压力制度,通常是电缆测井或记录,而钻孔(LWD)日志由于几个钻井相关的并发症,尤其是泥浆增益/损失情况而被取消。在这些井中,钻井的井变成了一个非常独特而重要的工具,可以对储层性能提供显着的洞察力。从表面形成中释放的气体有助于我们确定储层流体的组成,并提供有关岩性变化,水饱和度和碳中含入岩石中的迁移率的信息。表面气体分析仪辅助的这种广谱的碳氢化合物允许从水湿地区分离生产的移动重质烃。这种区分的能力允许运营商通过避免水带区域并保持在可生产的碳氢化合物区中以潜在的储层的薄机组来与井层井进行地升井。最终结果是能够与目标区域中的净工资相交的能力。本文突出了东科威特深层水库的案例研究,其中采用与先进的GC示踪色谱仪检测器连接的半透膜提取器的表面气测井已经应用于大伯根堡马拉尔石灰石水库的一些井中已应用。高级气体测井系统部署在两个垂直/偏离的井中,以表征Marrat储层的不同单位/区域的气体比率。在使用它之前,使用可用的有线记录数据来验证来自气体比解释的区分处理,以便在使用它以规划水平井。 GWD和LWD独立于彼此进行,以确定GWD方法的有效性和可靠性。 GWD与LWD配合使用,在科威特首次使用,将水平孔放置在深马尔拉特储层的薄(15-20英尺)层中。使用实时气体比例数据和分析,成功地完成了按计划高生产商的良好。

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