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Wavelet analysis in determination of reservoir fluid contacts

机译:小波分析确定储层流体接触

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摘要

One of the significant issues in each petrophysical evaluation is the determination of reservoir fluid contacts. Since each fluid with an exclusive disturbance contributes to the intensity of the recorded well-log signals, it is expectant to conceive disturbance imparted by each fluid would be endowed with a specific span of energy. Therefore, disturbance variations in recorded signals can be considered as a significant criterion in determining the boundary between reservoir fluids. In this context, the wavelet transform (WT) has been employed on new well logs generated by principle component analysis (PCA) method to decompose them into a series of components revealing reservoir features by which the intensity and variable characteristics of reservoir fluid energy can be closely scrutinized. In this study, the principle component analysis has been used to tackle unraveling the correlation of selected well logs. The results obtained in this investigation are indicative of using the combination of wavelet analysis and principle component analysis as an efficient method in the determination of reservoir fluid contacts.
机译:每次岩石物理评价中的重要问题之一是储层流体接触的确定。由于具有排他性扰动的每种流体都有助于记录的测井信号的强度,因此可以预期,由每种流体施加的扰动将被赋予特定的能量范围。因此,在确定储层流体之间的边界时,可以将记录信号中的扰动变化视为重要标准。在这种情况下,小波变换(WT)已用于通过主成分分析(PCA)方法生成的新井测井中,将其分解为一系列揭示了储层特征的分量,通过这些分量可以确定储层流体能量的强度和可变特征。仔细检查。在这项研究中,主成分分析已被用来解决选择的测井曲线的相关性。在这项研究中获得的结果表明,将小波分析和主成分分析相结合可作为确定储层流体接触的有效方法。

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