首页> 外国专利> METHOD FIELD DEVELOPMENT and most complete extraction of high viscosity and shale oil, bitumen, condensate, shale gas and gases from oil, gas and coal seam

METHOD FIELD DEVELOPMENT and most complete extraction of high viscosity and shale oil, bitumen, condensate, shale gas and gases from oil, gas and coal seam

机译:方法现场开发和最完整地从油,气和煤层中提取高粘度和页岩油,沥青,冷凝水,页岩气和瓦斯

摘要

Method mining and most complete recovery of these highly viscous and shale oil, bitumen, gas condensates, shale gases and gases from oil, gas and coal seams, whereby through holes drilled in the fields, is performed injecting various working fluids at different pressures reinjection , disposed therein solid electrodes supplied thereto alternating current electric arc is lit between the solid electrodes of two adjacent wells in the presence of oil and gas reservoirs is natural x conductive layers or between the pairs of solid electrodes in one well at their breeding or melting fusible link therebetween, moved electric arcs in the natural conductive layers in situ space between several adjacent wells fields in the order and sequence, characterized in that as the working fluid pumped under high maximum pressures under specific conditions conductive liquid of low viscosity, high electrical conductivity, and density artificially created after its injection into single oil, coal and shale formations layers, zones and regions with high electrical conductivity, and in the presence of Formation of the many layers to improve electrical conductivity of the layers or increase conductivity related layers and located in their soles aquifers or aquifer in the immediate vicinity of the reservoir in the suite, and injected them into an electrically conductive fluid from the adjacent heater wells towards each other when the maxim
机译:方法开采和最完全回收这些高粘性页岩油,沥青,凝析气,页岩气以及来自石油,天然气和煤层的气体,从而通过在田间钻探的孔以不同的压力注入各种工作流体,设置在其中的提供有交流电的固态电极在存在油气储层的情况下在两个相邻井的固态电极之间点燃天然的x导电层,或者在一个井中的一对固态电极之间通过它们的繁殖或熔化熔断点点亮在它们之间,在自然导电层中移动的电弧按顺序和顺序在几个相邻的井场之间的原位空间中移动,其特征在于,在特定条件下,在高的最大压力下泵送工作流体时,低粘度,高电导率的导电液体和注入单一油,煤和页岩中后人工产生的密度加热具有高电导率的层,区域和区域,并在形成许多层的情况下提高层的电导率或增加与电导率相关的层,并位于其底部的含水层或紧邻储层的含水层中套件,然后将它们从相邻的加热器井向彼此注入的导电流体中注入

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