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Resistivity correction for drilling fluid invasion using LWD and wire-line logging data: A case from high-porosity and low-permeability carbonate reservoirs, DLL Oilfield, Oman

机译:使用随钻测井和电缆测井数据校正钻井液入侵的电阻率:以阿曼DLL油田的高孔隙度和低渗透性碳酸盐岩储层为例

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The effect of drilling fluid invasion on the resistivity of oil-bearing zones during the period from penetrating the zone to completion well logging was studied using intergraded logging while drilling (LWD) and wire-line log data. The results indicate that resistivity change during invasion responds to some important factors such as porosity, oil saturation, pressure differential between drilling mud column and formation, mud filtrate salinity and invasion time. It increases as an exponential function of porosity, a logarithmic function of pressure differential, and a power function of invasion time and oil saturation. Based on the LWD and MDT data, the corrected resistivity equation subject to the drilling fluid invasion was acquired. With the equation, the oil saturation (So) increases by 6.3%–20.0%, averaging at 10.2%.
机译:利用随钻随钻测井(LWD)和线测井资料,研究了钻井液侵入后从渗透带到完井测井对含油层电阻率的影响。结果表明,侵入过程中的电阻率变化与孔隙度,含油饱和度,钻井泥浆柱与地层之间的压差,泥浆滤液盐度和侵入时间等重要因素有关。它以孔隙度的指数函数,压差的对数函数以及侵入时间和油饱和度的幂函数的形式增加。基于随钻测井仪和测井仪数据,得到了钻井液侵入后的修正电阻率方程。通过该方程,含油饱和度(So)增加6.3%–20.0%,平均为10.2%。

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