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Application of multirate flowing fluid electric conductivity logging method to well DH-2, Tono Site, Japan

机译:多速率流动流体电导率测井方法在日本Tono Site DH-2井中的应用

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In the flowing fluid electric conductivity (FEC) logging method, well bore fluid is replaced with deionized water, following which FEC profiles in the well bore are measured at a series of times while the well is pumped at a constant rate. Locations where fluid enters the well bore show peaks in the FEC logs, which are analyzed to infer inflow strengths and salinities of permeable features intersected by the borehole. In multirate flowing FEC logging, the flowing FEC logging method is repeated using two or more pumping rates. The results, coupled with those of a conventional well test over the entire borehole, enable the transmissivities and inherent pressure heads of permeable features to be determined. Multirate FEC logging is carried out on a deep borehole in fractured granitic rock using three different pumping rates. Results identify 19 hydraulically conducting fractures and indicate that transmissivity, pressure head, and salinity vary significantly among them. Using three pumping rates rather than the minimum number of two permits an internal consistency check on the analysis that provides a measure of the uncertainty of the results. Good comparisons against static FEC profiles and against independent chemical, geological, and hydrogeological data have further enhanced confidence in the results of the multirate flowing FEC logging method.
机译:在流动流体电导率(FEC)测井方法中,用去离子水代替井眼流体,然后在以恒定速率泵送井眼的同时,连续多次测量井眼中的FEC曲线。流体进入井筒的位置在FEC测井曲线中显示出峰值,对其进行分析以推断与井眼相交的可渗透特征的流入强度和盐度。在多速率流动FEC测井中,使用两个或多个泵速重复流动FEC测井方法。该结果与整个井眼的常规试井结果相结合,能够确定渗透率的透射率和固有压头。多速率FEC测井是使用三种不同的抽水速率在裂缝性花岗岩中的深孔中进行的。结果确定了19条导水裂缝,并表明它们之间的透射率,压头和盐度差异很大。使用三个抽气速率而不是最小的两个抽气速率可以对分析进行内部一致性检查,从而可以测量结果的不确定性。与静态FEC剖面以及独立的化学,地质和水文地质数据的良好比较,进一步增强了人们对多速率流动FEC测井方法结果的信心。

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