Inclusion of seismic refraction techniques in the characterization of the geological context for geothermal exploitation purposes

IF 0.2 Q4 GEOLOGY
Cristina Sáez Blázquez, Ignacio Martín Nieto, Pedro Carrasco García, Arturo Farfán Martín, Diego González-Aguilera
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引用次数: 0

Abstract

Given the growing importance of geothermal energy in the decarbonization of the energy sector, the application of appropriate methodologies that contribute to a greater knowledge of the resource is considered convenient. In this sense, refraction seismic techniques have proven to be a potential tool to predict the thermal behavior of the subsoil in locations where it is intended to implement a shallow geothermal system. From thermal conductivity measurements on samples with different degrees of compaction and consolidation, and from the propagation speeds of the P waves, a correlation pattern is developed that in turn allows obtaining 2D sections of the average thermal conductivity distribution in depth. The methodology developed shows that it is possible to estimate the evolution of the thermal conductivity parameter of the ground and thus guarantee an adequate design of the well field and the future correct operation of the geothermal system (providing the correct drilling length which would be underestimated by 30% with the standard thermal conductivity values).
将地震折射技术纳入地热开发的地质环境特征
鉴于地热能在能源部门脱碳方面的重要性日益增加,采用有助于增进对该资源的了解的适当方法被认为是方便的。从这个意义上说,折射地震技术已被证明是一种潜在的工具,可以在打算实施浅层地热系统的地方预测底土的热行为。从不同程度的压实和固结样品的热导率测量,以及从P波的传播速度,开发了一个相关模式,从而可以获得深度平均热导率分布的二维剖面。所开发的方法表明,可以估计地面导热系数参数的演变,从而保证井田的适当设计和地热系统的未来正确运行(提供正确的钻井长度,这将被低估30%的标准导热系数值)。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
25
期刊介绍: The journal publishes papers on a wide range of research topics in the field of Earth Sciences. - Stratigraphy, sedimentology and palaeogeography - Historical and regional geology - Tectonics, structural geology and geophysics - Earthquate Geology and Paleosismology - Marine geology and oceanography - Geomorphology and physical geography - Hydrology, hydrogeology and water resources management - Pedology and soil sciences - Mineralogy, crystallography, metallography and mineral deposits - Petrology and geochemistry - Palaeontology - Geoscientific mapping and information systems - Environmental geology, Palaeoclimatoloy and Global Change - Planetary geology - Applied geology, geotechnics, geological and ground engineering - Mining prospecting and research, mineral resources management and underground works - Metallurgy, metallurgical engineering, materials science and technology - History and epistemology of earth sciences - Popular science, geological and mining heritage - Geological hazards - Economic aspects of earth sciences - Other related topics…
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