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Logging Fluid Identification Method of Low Resistivity Contrast Reservoir Invaded by Fresh Water Mud - A Case Study of Well Block YD in Erdos Basin

机译:淡水泥浆侵入低电阻率对比储层的测井流体识别方法——以鄂尔多斯盆地YD井区为例

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The freshwater mud invasion caused low resistivity contrast of oil and water zones in well block YD, then the reservoir fluid is very difficult to identify. By simulation study, the authors find freshwater mud invasion made the oil reservoir resistivity increase rate R/Ro from 3.8~6.8 to 1.5~2.5, and made a 65% reduction in the reservoir resistivity. But the water layer resistivity rise by 50%. That further reducing the contrast of the reservoir resistivity. Logging fluid identification rate of the reservoir is less than 74%. So the authors partition the well block YD, calculate a mixture resistivity of formation water after freshwater mud invasion, calculate true formation resistivity, then use resistivity increases rate and reservoir quality factor to establish reservoir recognition charts. This method rise the coincidence rate of 17%. We use the method to deal with 49 wells in well block YD. The results raise the rate of approximately 10% than the original interpretation. It is a powerful direction for low resistivity well log interpretation.
机译:淡水泥浆侵入导致YD井区油水层电阻率对比度低,储层流体很难识别。通过模拟研究发现,淡水泥浆侵入使油层电阻率R/Ro由3.8~6.8提高到1.5~2.5,使油层电阻率降低65%。但水层电阻率上升了50%。这进一步降低了储层电阻率的对比度。储层测井流体识别率低于74%。因此,作者对YD井区进行划分,计算淡水泥浆侵入后地层水的混合电阻率,计算真实地层电阻率,然后利用电阻率增长率和储层质量因子建立储层识别图。该方法提高了17%的符合率。利用该方法对YD井区49口井进行了处理,结果比原始解释提高了约10%。这是低电阻率测井解释的一个有力方向。

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