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Application of Oil and Gas Methodology to Geothermal Formation Evaluation: The Value of Data

机译:石油和天然气方法在地热形成评价中的应用:数据价值

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The energy landscape is transitioning to a low carbon future through energy efficiency and green energy sources. Within the European Union, a target of 20% has been set of energy needs to be met by renewable sources in 2020, increasing to 27% by 2030. Several countries have already set targets much in excess of these. Therefore the race is on to meet these targets whilst still meeting the countries energy needs. As part of this transition, renewable sources of energy are becoming more prominent in the energy needs of each country. Geothermal energy is an important part of the energy mix as it can supply a wide range of energy needs, ranging from low temperature heating, through mid-temperature industrial uses, to high temperature power generation. Additionally, compared to sources such as wind and solar which are dependent on the wind blowing or sun shining, it has essentially no variability so can be relied on to provide a dependable source of energy. To make geothermal profitable detailed knowledge of the subsurface is crucial. Many of the key formation properties for prospect evaluation are the same as those desired in hydrocarbon exploration. However, the geothermal industry in Europe is in its infancy and many projects still disappoint in their energy production. The oil and gas industry has considerable expertise and knowledge in evaluation of the subsurface. However, traditionally geothermal and oil and gas operators work in very different spheres, hence there has been very little knowledge sharing between the two industries. As the importance of geothermal energy grows there is considerable opportunity for expertise sharing and transfer of best practices and experience between oil and gas and geothermal. In this paper, we discuss the key similarities and differences between oil and gas and geothermal prospects. And we describe how oil and gas formation evaluation techniques can be applied to geothermal prospects to optimally utilize geothermal resources.
机译:能量景观通过能效和绿色能源来转变为低碳未来。在欧洲联盟内,2020年可再生能源需要满足20%的目标,预计将在2030年增加到27%。若干国家已经将目标占多余的目标。因此,比赛仍在满足这些目标,同时仍在满足国家的能源需求。作为这种过渡的一部分,可再生能源在每个国家的能量需求中变得更加突出。地热能量是能源混合的重要组成部分,因为它可以提供广泛的能量需求,从低温加热,通过中温工业用途,高温发电。另外,与诸如风和太阳能的源相比,依赖于风吹或阳光,它基本上没有可变性,因此可以依赖于提供可靠的能量来源。为了使地热盈利的详细知识是至关重要的。展望评估的许多关键地层属性与碳氢化合物勘探中所需的关键形成性质相同。然而,欧洲地热行业在其初期,许多项目仍然在能源生产中令人失望。石油和天然气行业在评估地下具有相当大的专业知识和知识。然而,传统的地热和石油和天然气运营商在非常不同的领域工作,因此两行业之间存在很少的知识共享。随着地热能量的重要性增长,有相当多的机会,专业知识分享和转让石油和天然气和地热之间的最佳实践和经验。在本文中,我们讨论了石油和天然气与地热前景之间的关键相似之处和差异。我们描述了石油和天然气地层评估技术如何应用​​于地热前景,以最佳地利用地热资源。

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