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首页> 外文期刊>Journal of the Geological Society of India >Assessment of Reservoir Rock Properties from Rock Physics Modeling and Petrophysical Analysis of Borehole Logging Data to Lessen Uncertainty in Formation Characterization in Ratana Gas Field, Northern Potwar, Pakistan
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Assessment of Reservoir Rock Properties from Rock Physics Modeling and Petrophysical Analysis of Borehole Logging Data to Lessen Uncertainty in Formation Characterization in Ratana Gas Field, Northern Potwar, Pakistan

机译:岩土测井数据岩土物理建模及岩石物理分析评价岩土测井数据的岩石物理分析,减少格兰纳北部北部煤气场形成特征的不确定性

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摘要

Petrophysical evaluation and rock physics analysis are the important tools to relate the reservoir properties like porosity, permeability, pore fluids with seismic parameters. Nevertheless, the uncertainties always exist in the quantification of elastic and seismic parameters estimated through wireline logs and rock physics analysis. A workflow based on statistical relationships of rock physics and logs derived elastic and seismic parameters with porosity and the percentage error exist between them is given. The statistical linear regressions are developed for early Eocene Chorgali Formation between various petrophysically factors determined from borehole logging of well Ratana-03 drilled in tectonically disturbed zone and the seismic and elastic parameters estimated through rock physics modeling. The rock physics constraints such as seismic velocities, effective density and elastic moduli calculated from Gassmann fluid substation analysis are in harmony and close agreement to those estimated from borehole logs. The percentage errors between well logs and rock physics computed saturated bulk modulus (K (sat) ), effective density (rho (eff) ), compressional and shear wave velocities (V (P) and (V) S) are 1.31%, 4.23 %, 5.25% and 4.01% respectively. The permeability of reservoir intervals show fairly strong linear relationship with the porosity, indicating that the reservoir interval of the Chorgali Formation is permeable and porous thus having large potential of hydrocarbon accumulation and production.
机译:岩石物理评估和岩石物理分析是将储层性质如孔隙,渗透性,具有地震参数的孔隙流体相似的重要工具。然而,不确定性始终存在通过有线日志和岩石物理分析估计的弹性和地震参数的量化。给出了基于岩石物理学统计关系的工作流程,并给出了它们之间存在孔隙率的源自弹性和地震参数的工作流程和它们之间存在百分比误差。统计线性回归是为早期的eocene翠急在各种岩石测井中确定的井ratana-03中钻孔的钻孔测井和通过岩石物理建模估计的地震和弹性参数确定。从Gassmann流体变电站分析计算的地震速度,有效密度和弹性模量的岩石物理限制是和谐的,并与钻孔原木估计的那些相一致。良好的日志和岩石物理学之间的百分比误差计算饱和的堆积模量(k(饱和)),有效密度(rho(rho(rho(rho(rho(rho(rho(rho(r)),压缩和剪切波速度(v(p)和(v)s)为1.31%,4.23 %,5.25%和4.01%。储层间隔的渗透性显示出与孔隙率相当强的线性关系,表明毛细胞形成的储层间隔是可渗透的,因此多孔多孔含有碳氢化合物积累和生产的潜力。

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