Improving the efficiency of methane extraction from coal seams

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
M. Rabatuly, R. Musin, V. Demin, S. Usupaev, A. Kenetaeva
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引用次数: 1

Abstract

This article presents possible reasons for the low productivity of wells for coal methane extraction and ways to resolve them using hydrochloric acid treatment of wells. A common reason for the low productivity of wells is a decrease in the permeability of the bottom-hole formation zone. Starch, calcium carbonate, and drilling rocks, which are part of the drilling mud, change the filtration properties of the layer during the formation of a filtration crust and lead to a decrease in the initial permeability. Hydrochloric acid treatment, during which clay rocks are dissolved, is an effective method of increasing the productivity of wells. It is used to increase pick-up and prevent contamination of the bottom-hole zone of the carbonate formation. The parameters affecting the effectiveness of hydrochloric acid treatments were considered. The results of the experience of the interaction of hydrochloric acid with a clay crust are presented and analyzed using approaches to the mechanics of multiphase media. Dependences of the rate of dissolution of clay rock on the concentration of acid solution are obtained. It is established that the treatment of the productive intermediate layer of the well with hydrochloric acid in a certain concentration, its use increases the technological and economic efficiency of wells. As a result of experimental work, it was found that hydrochloric acid with an HCL concentration above 18% has a negative effect on the internal equipment of the well when processing clay shells.
提高煤层瓦斯抽采效率
本文介绍了煤层气采出井产能低的可能原因,以及采用盐酸处理的方法。井底地层渗透率降低是导致油井产能低下的一个常见原因。淀粉、碳酸钙和钻井岩石是钻井泥浆的一部分,它们在形成过滤壳的过程中改变了层的过滤特性,导致初始渗透率降低。盐酸处理是一种有效的提高油井产能的方法,在此过程中会溶解粘土岩。它用于增加吸油量并防止碳酸盐地层底部区域的污染。考虑了影响盐酸处理效果的参数。本文介绍了盐酸与粘土结壳相互作用的实验结果,并用多相介质力学的方法进行了分析。得到了粘土岩溶解速率与酸溶液浓度的关系。采用一定浓度的盐酸对油井生产中间层进行处理,提高了油井的技术经济效益。通过实验工作发现,在处理粘土壳时,HCL浓度大于18%的盐酸对井内设备有负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
42.90%
发文量
55
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