首页> 外文会议>SPWLA annual logging symposium >The impact of direct measurements of water saturation and water resistivity from core on the hydrocarbon in place calculations of the Azeri-Chirag-Guneshli (ACG) oil field and the Shah-Deniz gas field offshore Azerbaijan.
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The impact of direct measurements of water saturation and water resistivity from core on the hydrocarbon in place calculations of the Azeri-Chirag-Guneshli (ACG) oil field and the Shah-Deniz gas field offshore Azerbaijan.

机译:核心核心核心水饱和度和水电阻率直接测量的影响,核心富集核心,沙油场和Shah-deniz气田近海阿塞拜疆。

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Uncertainties in water saturations (Sw) calculated from logs have a substantial impact on the hydrocarbons in place calculations for both the Azeri-Chirag-Guneshli (ACG) oil field and the Shah-Deniz gas field in the Azeri South Caspian Sea. For the Shah-Deniz field this is because of the lack of formation water resistivity (Rw) information and the limited textural parameter (SCAL) data during early appraisal. In the ACG field this is because the classical resistivity based water saturation methods significantly underestimate hydrocarbons-in-place. The uncertainties can be reduced by reconciliation of Sw measured directly on core plugs with: 1. High pressure mercury injection; 2. Porous plate capillary pressure measurements; 3. Log analysis based on electrical parameters SCAL and Rw measured on core plug extracts. The process for cutting a low invasion core in synthetic oil based mud is described, as well as the plugging and preservation of core plugs at the wellsite. The derivation of Rw and Sw by direct extraction techniques is also described. Some uncertainties still exist in the direct Sw and Rw measurements on core. Osmotic effects created by the interaction of the mud and the core may impact the accuracy of the direct measured Sw and Rw from core taken in clean sand intervals. Synthetic oil based muds are designed to prevent the borehole from washing out in intervals with a high clay content. This is achieved through dehydration of clays. An experiment to quantify the osmotic effect of synthetic mud on clean sand intervals will be discussed.
机译:从原木计算的水饱和度(SW)的不确定因素对碳氢化合物的碳氢化合物产生了显着的影响,该烃地区的Azeri-Chirag-Guneshli(ACG)油田和阿塞蒂南部里海的Shah-Deniz气田的计算。对于Shah-Deniz领域,这是因为在早期评估期间缺乏地层水电阻率(RW)信息和有限的纹理参数(SCAS)数据。在ACG领域,这是因为基于古典电阻率的水饱和方法,显着低估了烃。通过直接在核心插头上测量的SW测量,可以减少不确定性,具有:1。高压汞注入; 2.多孔板毛细管压力测量; 3.基于电气参数scal和RW在核心插头提取物上测量的日志分析。描述了用于切割合成油基泥浆中的低侵入芯的方法,以及井网的芯塞的堵塞和保存。还描述了通过直接提取技术的RW和SW的推导。在核心的直接SW和RW测量中仍存在一些不确定性。通过泥浆和芯的相互作用产生的渗透效应可能会影响直接测量的SW和RW从清洁沙子间隔采取的核心的准确性。用于合成油的泥浆设计用于防止钻孔以高粘土含量的间隔洗涤。这是通过粘土的脱水来实现的。讨论了量化合成泥浆对清洁砂间隔的渗透效应的实验。

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