Efectos de la estimulación hidráulica (fracking) en el recurso hí- drico: Implicaciones en el contexto colombiano

Sharel Alexa Charry-Ocampo, A. J. Perez
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引用次数: 2

Abstract

The contribution of shale gas extraction to energy sustainability has been evaluated independently regardless of its relation with water security and its impacts on water sources. For this reason, in the present investigation, we carried out an analysis of these impacts through a bibliographical review of national and international references. Although the analysis made suggests two fundamental aspects: 1) impacts on the water resource associated to the quantity and quality of this and 2) seismic effects or induced seismicity, this research focuses mainly on the first. The results of this review demonstrate a growing increase in research on the impact of fracking; however, it was found that there are deficiencies in the use of numerical models to quantify the environmental effects. Also, the results show that the consumption associated with hydraulic stimulation does not seem to be significant compared to typical uses in other economic practices such as agriculture (irrigation). In this context, in the Colombian context, the challenges are based on consolidating a better network of piezometric information and, in general, a more robust monitoring system to improve decision making regarding fracking, since this type of information represents the first step towards the construction of hydrogeological models that support the risk evaluation and contribute to the reduction of the vulnerability of the water resource in the development of projects of exploitation of shale gas.
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水力刺激(压裂)对水资源的影响:哥伦比亚背景下的影响
页岩气开采对能源可持续性的贡献已得到独立评估,无论其与水安全的关系及其对水源的影响如何。因此,在本次调查中,我们通过对国家和国际参考文献的文献综述对这些影响进行了分析。尽管所做的分析表明了两个基本方面:1)与水资源的数量和质量相关的对水资源的影响;2)地震效应或诱发地震活动,但本研究主要集中在第一个方面。这项审查的结果表明,对水力压裂影响的研究越来越多;然而,人们发现,在使用数值模型来量化环境影响方面存在不足。此外,研究结果表明,与农业(灌溉)等其他经济实践中的典型用途相比,与水力刺激相关的消耗似乎并不显著。在这种情况下,在哥伦比亚,挑战的基础是巩固一个更好的测压信息网络,以及一个更强大的监测系统,以改进有关水力压裂的决策,因为这类信息代表了建立水文地质模型的第一步,该模型支持风险评估,并有助于降低页岩气开采项目开发中水资源的脆弱性。
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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9
审稿时长
20 weeks
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