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Method for automatically calibrating resistivity well logs for effects of change in wellbore diameter and circuit drift

机译:自动校准电阻率测井曲线以适应井眼直径变化和电路漂移的方法

摘要

A method for determining the resistivity of earth formations penetrated by a wellbore. Electrical current is imparted to the wellbore and the earth formations from a first electrode located on a mandrel disposed in the wellbore. The electrical current is returned at a second electrode on the mandrel at a spaced apart location from the first electrode. Voltage differences are measured between a first pair and a second pair of electrodes located on the mandrel between the first and the second electrodes. Circuits used to measure the voltage differences are adjusted until the measured voltage difference between the second pair is substantially the same as the measured voltage difference between the first pair. Then the electrical current is returned to an electrode at the earth's surface or other location distal from the first electrode, and measuring the voltage differences is repeated. A difference of the voltage differences is then calculated. The difference of voltage difference represents current leakage into the earth formation substantially unaffected by irregularities in the wall of the wellbore or drift in the circuits. The current leakage is inversely related to the resistivity of the earth formations.
机译:一种确定井眼穿透的地层电阻率的方法。电流从位于设置在井眼中的心轴上的第一电极施加到井眼和地层。电流在心轴上的第二电极处与第一电极间隔开的位置处返回。在位于第一和第二电极之间的心轴上的第一对电极和第二对电极之间测量电压差。调节用于测量电压差的电路,直到第二对之间的测量电压差与第一对之间的测量电压差基本相同为止。然后,电流返回到地球表面或远离第一电极的其他位置处的电极,并重复测量电压差。然后计算电压差的差。电压差的差表示电流泄漏到地层中,基本上不受井眼壁不规则或电路漂移的影响。电流泄漏与地层的电阻率成反比。

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