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IDENTIFICATION OF RESERVOIR GEOMETRY FROM MICROSEISMIC EVENT CLOUDS

机译:从微地震事件群中识别储层几何

摘要

A method for characterizing fracture planes generated during a hydraulic fracturing process, comprises receiving microseismic data from the hydraulic fracturing process and processing a microseismic event cloud from the received microseismic data. This is followed by determining at least one reservoir geometry from the microseismic event cloud. The determination of geometry may consist of determining multiple candidate geometries and probability of each. In some forms of the invention the method may comprise postulating a set of candidate geometries with differing numbers of fracture planes, determining the most probable locations of the postulated fracture planes in each member of the set of candidate geometries and also determining relative probabilities of the candidate geometries in the postulated set. Determining a location of a fracture plane may comprise calculating a number density for each microseismic event, dependent on distance from some possible location of a fracture plane or fracture network. Finding the location of a plane may then be finding the location for which the number density is greatest. The determination of reservoir geometry may be followed by determination of the area of the fracture planes and/or by a prediction of production.
机译:一种用于表征在水力压裂过程中产生的裂缝平面的方法,该方法包括:从水力压裂过程中接收微地震数据;以及从接收到的微地震数据中处理微地震事件云。随后,从微地震事件云确定至少一种储层几何形状。几何形状的确定可以包括确定多个候选几何形状以及每个的可能性。在本发明的某些形式中,该方法可以包括:假定一组具有不同数目的断裂面的候选几何形状;确定该假定断裂面在该组候选几何形状的每个成员中的最可能的位置;以及确定该候选几何形状的相对概率。假定集中的几何形状。确定骨折面的位置可包括取决于距骨折面或裂缝网络的某些可能位置的距离来计算每个微地震事件的数密度。然后找到平面的位置可能就是找到数字密度最大的位置。确定储层几何形状之后,可以确定裂缝平面的面积和/或预测产量。

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