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首页> 外文期刊>Journal of natural gas science and engineering >Coalbed methane reservoir stimulation using guar-based fracturing fluid: A review
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Coalbed methane reservoir stimulation using guar-based fracturing fluid: A review

机译:基于瓜尔的压裂液刺激煤层储层刺激:综述

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As a greener and efficient energy source, the development and utilization of coalbed methane (CBM) can not only increase the energy supply for the State, but also reduce the greenhouse gas (GHG) emission by replacing other carbon-intense energy sources, such as oil and coal. CBM reservoirs are known as low to ultra-low permeability reservoir and thus the fracturing stimulation is commonly required for commercial gas production from coal seams. This article reviews the main components, rheology, friction pressure, and proppant transport characteristics of the guar-based fracturing fluid, and its field applications. Meanwhile, both advantage and disadvantage for CBM fracturing treatment were comprehensively analyzed. Guar-based fracturing fluid is composed of guar gel, and various additives, mainly crosslinker and breaker. As a complex mixture, the effectiveness of guar-based fracturing fluid is not only closely related to the concentration of various chemical additives but also influenced by fluid-coal interactions at the in situ reservoir conditions. The gel residual due to low flowback rate can potentially damage the formation and hinder the effectiveness of gas production. The formation damages include impacts on gas adsorption, diffusion, and transport in CBM reservoirs. Coal matrix has a strong adsorption capacity for guar-based fluids and is likely to have a sorption induced matrix swelling and reduce the effective permeability. Hence, it is necessary to develop more efficient breakers to increase flowback of guar-based fracturing fluid. The long-term engineering practice shows that the fracturing effect of guar-based fracturing fluid is quite different in field applications at different operation sites. Therefore, the mechanisms of the impact of guar gel on the methane flow in coal should be further studied, and it is important to determine the applicability and improving performance of the guar-based fracturing fluid for site specified application based on the reservoir pressure, temperature, hydrological environment, structural geology and other unique reservoir properties.
机译:作为更环保和高效的能源,煤层气(CBM)的开发和利用不仅可以增加国家的能源供应,而且还通过更换其他碳强能源来减少温室气体(GHG)排放,例如石油和煤炭。 CBM储存器被称为低至超低渗透储存器,因此通常需要煤层的商品天然气生产的压裂刺激。本文审查了瓜尔基压裂液及其现场应用的主要成分,流变学,摩擦压力和支撑剂运输特性。同时,全面分析了CBM压裂处理的优势和缺点。基于瓜尔的压裂液由瓜尔凝胶和各种添加剂组成,主要是交联剂和断路器。作为一种复杂的混合物,瓜尔基压裂液的有效性不仅与各种化学添加剂的浓度密切相关,而且对原位储层条件的流体 - 煤相互作用的影响密切相关。由于低回收速率,凝胶残余可能会损害地层并阻碍气体生产的有效性。地层损害包括对CBM储层中的气体吸附,扩散和运输的影响。煤基质对瓜尔型流体具有强烈的吸附能力,并且可能具有吸附诱导的基质溶胀并降低有效渗透性。因此,有必要开发更有效的断路器以增加瓜尔基压裂液的流量。长期工程实践表明,瓜尔基压裂液的压裂效果在不同操作位点的现场应用中的野外应用得出不同。因此,应进一步研究瓜尔凝胶对煤中甲烷流动的影响,基于储层压力,温度,确定瓜尔基压裂液的适用性和提高性能是重要的,水文环境,结构地质和其他独特的储层性质。

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