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FACILITATING OILFIELD DEVELOPMENT WITH DOWNHOLE FLUID ANALYSIS.

机译:利用井下流体分析促进油田开发。

摘要

Formation fluid data based on measurements taken downhole under natural conditions is utilized to help identify reservoir compartments. A geological model of the reservoir including expected pressure and temperature conditions is integrated with a predicted fluid model fitted to measured composition and PVT data on reservoir fluid samples or representative analog. Synthetic downhole fluid analysis (DFA) logs created from the predictive fluid model can be displayed along the proposed borehole trajectory by geological modeling software prior to data acquisition. During a downhole fluid sampling operation, actual measurements can be displayed next to the predicted logs. If agreement exists between the predicted and measured fluid samples, the geologic and fluid models are validated. However, if there is a discrepancy between the predicted and measured fluid samples, the geological model and the fluid model need to be re-analyzed, e.g., to identify reservoir fluid compartments. A quantitative comparative analysis of the sampled fluids can be performed against other samples in the same borehole or in different boreholes in the field or region to calculate the statistical similarity of the fluids, and thus the possible connectivity between two or more reservoir regions.
机译:利用基于自然条件下井下测量的地层流体数据来帮助识别储层。包括预期压力和温度条件在内的储层地质模型与预测流体模型集成在一起,该预测流体模型适合于储层流体样本或代表性类似物上测得的成分和PVT数据。由预测性流体模型创建的合成井下流体分析(DFA)日志可以在数据采集之前通过地质建模软件沿着建议的井眼轨迹显示。在井下流体采样操作中,实际测量值可以显示在预测测井旁边。如果预测和测量的流体样本之间存在一致性,则将验证地质模型和流体模型。然而,如果预测的和测量的流体样本之间存在差异,则需要重新分析地质模型和流体模型,例如,以识别储层流体隔室。可以对野外或区域中相同钻孔或不同钻孔中的其他样品进行采样流体的定量比较分析,以计算流体的统计相似度,从而计算两个或多个储层区域之间的可能连通性。

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