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Geothermal energy: Power plant technology and direct heat applications

机译:地热能:发电厂技术和直接供热应用

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The transition from current fossil-fuel energy system towards a sustainable one-based requires renewable energy technology. Although geothermal energy presents its own particular challenges in comparison with other renewable energy technologies, geothermal energy has showed significant potential to reduce environmental impact and greenhouse gas emissions from electricity production. Advantages of geothermal energy are not only the generation of electricity in different plant configurations but also the direct application of heat in industry and household uses regardless of meteorological conditions. In this study, a research review is carried out on the aspect of geothermal energy development, assessing power plant technology and direct heat applications. Five power plant configurations are studied: single-flash, double-flash, dry-steam, binary and advanced. The thermodynamic aspects are addressed in order to consider them for future geothermal power plant analysis. Furthermore, the most common direct uses of geothermal heat are discussed. Results illustrate that Binary Organic Ranking Cycle Power Plants might play a vital role in the exploitation of low temperature geothermal resources. Furthermore, it is identified a need for research in hybrid geothermal-solar-biomass configurations for poly-generation purposes. These configurations increase the energy output, increasing the thermal efficiency and increasing the life of the geothermal reservoir. Similarly, direct applications of geothermal heat present good opportunities for increasing the revenue of a geothermal project. Depending of the geographic zone, cascade configurations contributes to maximise the use of geothermal resources. Future research reviews should consider the financial, economic and policy aspects of geothermal developments along with the geology, geophysics, geochemistry, drilling, reservoir engineering and environmental aspects. The main goal of addressing these topics is to provide the state-of-the-art of geothermal development for developers, policy makers, researchers and communities interested in geothermal energy.
机译:从当前的化石燃料能源系统向可持续的单一能源系统过渡需要可再生能源技术。尽管与其他可再生能源技术相比,地热能面临特殊挑战,但地热能在减少环境影响和减少电力生产中的温室气体排放方面显示出巨大潜力。地热能的优势不仅在于以不同的工厂结构发电,而且还可以将热量直接应用于工业和家庭用途,而不受气象条件的影响。在这项研究中,对地热能源开发,评估电厂技术和直接供热的方面进行了研究综述。研究了五种电厂配置:单闪,双闪,干蒸汽,二元和高级。讨论了热力学方面,以便考虑将其用于将来的地热发电厂分析。此外,还讨论了地热的最常见直接用途。结果表明,二元有机分级循环发电厂可能在低温地热资源的开发中发挥至关重要的作用。此外,已经确定需要研究用于多代目的的混合地热-太阳能-生物质构造。这些配置增加了能量输出,提高了热效率并延长了地热储层的寿命。同样,直接利用地热能为增加地热项目的收益提供了良好的机会。根据地理区域,级联配置有助于最大程度地利用地热资源。未来的研究评论应考虑地热开发的财务,经济和政策方面,以及地质,地球物理,地球化学,钻井,油藏工程和环境方面。解决这些问题的主要目的是为对地热能感兴趣的开发商,政策制定者,研究人员和社区提供最新的地热开发技术。

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