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METHOD FOR DEFINING WELL CHARACTERISTICS, FORMATION BOTTOM-HOLE ZONE

机译:定义井特征,底部地层的方法

摘要

FIELD: oil and gas production.;SUBSTANCE: method for defining well characteristics, formation bottom-hole zone includes reagent pumping via tubing with closed tubular annulus, measurement of reagent flow rate at the well mouth and pumping pressure in bottom-hole zone. Measurement data is calculated for bottom-hole conditions. Accumulated flow rate and labour input per reagent flow unit in well bottom-hole zone is determined. These indices are used for definition of current formation conductivity change. Before reagent pumping fresh water is pumped into formation via tubing till well-head pressure reaches Phead=10 MPa with measurement of this pressure change in time and volume of pumped water. Their analysis is used to define initial conductivity of formation bottom-hole zone. After that there performed is an operation of bottom-hole treatment by reagent that is gassy fluid with water solution surfactant ML-81B or water solution of hydrochloric acid HCl. After that fresh water is pumped into formation similarly to the initial operation and final conductivity of formation bottom-hole zone is determined. After comparison of initial and final conductivity of bottom-hole zone there defined is a change of formation bottom-hole zone conductivities. If bottom-hole zone conductivity decreased or its increase is less than 10%, then additional treatment of bottom-hole zone is carried out by this or other reagent.;EFFECT: increase of efficiency of selection of the most effective process operation on improving formation bottom-hole zone conductivity depending upon the type of collector comprising it and simplification of defining well characteristics, formation bottom-hole zone process.;1 dwg, 3 tbl
机译:领域:定义井特征的方法,地层井底区域包括通过带有封闭管状环的管道泵送试剂,测量井口试剂流速和井底区域的泵送压力。针对井底条件计算测量数据。确定井底孔区域中每个试剂流动单元的累计流速和人工输入。这些指标用于定义电流形成电导率变化。在泵送试剂之前,通过管道将淡水泵入地层,直到井口压力达到P = 10 MPa,并测量该压力随时间和泵送水量的变化。他们的分析被用来定义地层底孔区的初始电导率。此后,进行用具有气态流体的试剂与水溶液表面活性剂ML-81B或盐酸HCl水溶液进行的底孔处理操作。之后,与初始操作类似,将淡水泵入地层,并确定地层底孔区的最终电导率。在比较井底区域的初始和最终电导率之后,确定了地层井底区域电导率的变化。如果井底区电导率降低或增加幅度小于10%,则使用该试剂或其他试剂对井底区进行额外处理。;效果:提高对改善地层的最有效工艺操作的选择效率底孔区电导率取决于包含它的集热器的类型以及定义井特征的简化方法,地层底孔区工艺; 1 dwg,3 tbl

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