首页> 外国专利> PERMEABILITY ENHANCEMENT METHOD FOR COALBED METHANE WELLS BY USING ELECTRIC PULSE DETONATION FRACTURING TECHNOLOGY

PERMEABILITY ENHANCEMENT METHOD FOR COALBED METHANE WELLS BY USING ELECTRIC PULSE DETONATION FRACTURING TECHNOLOGY

机译:电脉冲爆裂压裂技术提高煤层气井渗透率的方法

摘要

A permeability enhancement method for coalbed methane wells by using electric pulse detonation fracturing technology is applicable to exploitation of coalbed methane wells in coal beds with low permeability. Firstly, a positive electrode coalbed methane wellbore and a negative electrode coalbed methane wellbore are constructed from the ground surface to a coal bed. A fixed platform installed with a positive electrode and a high-voltage pulse device are placed, by using a derrick, downwards to a predetermined permeability enhancement portion of the coal bed in the positive electrode coalbed methane wellbore, and another fixed platform installed with a negative electrode is placed, by using a derrick, downwards to a predetermined permeability enhancement portion of the coal bed in the negative electrode coalbed methane wellbore. The coal bed between the positive electrode and the negative electrode is broken down by using a high voltage, and coalbed methane extraction is carried out in the positive electrode coalbed methane wellbore and the negative electrode coalbed methane wellbore. A large amount of energy produced by high-voltage electric pulse directly acts on the coal reservoir to form a plasma channel in the coal bed between the positive electrode and the negative electrode. The large amount of energy instantly passes through the plasma channel, and the produced high-temperature thermal expansion force and shock waves act on the coal bed, such that the number of cracks in the coal bed is effectively increased and a favorable condition is created for flowing of coalbed methane.
机译:采用电脉冲爆震压裂技术提高煤层气井渗透率的方法,适用于低渗透率煤层气井的开采。首先,从地面到煤层构造正极煤层甲烷井眼和负极煤层甲烷井眼。通过使用井架,将安装有正极的固定平台和高压脉冲装置向下放置到正极煤层气井眼中的煤层的预定渗透率增强部分,并且将安装有负极的固定平台向下放置通过使用井架将电极向下放置到负极煤层甲烷井眼中煤层的预定渗透率增强部分。利用高压将正极与负极之间的煤层破坏,在正极煤层甲烷井眼和负极煤层甲烷井眼中进行煤层气的提取。高压电脉冲产生的大量能量直接作用于煤层,在煤层中在正极和负极之间形成等离子通道。大量能量立即通过等离子通道,产生的高温热膨胀力和冲击波作用在煤层上,从而有效地增加了煤层中的裂缝数量,并为煤层创造了良好的条件。煤层气的流动。

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