大地电磁在加那利群岛深层地热勘探中的应用

IF 0.2 Q4 GEOLOGY
Perla Piña-Varas, Juanjo Ledo, Pilar Queralt, Alex Marcuello, Gemma Mitjanas, David Martínez Van Dorth
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引用次数: 0

摘要

目前人们对地热能的兴趣日益浓厚。用于发电的地热能通常对应于深度超过一公里的深层水库。这将限制在地热系统勘探过程中使用的地球物理方法,因为大地电磁(MT)是唯一能够达到这种深度的电磁方法。通常用于地热勘探,这种方法将提供地下电阻率分布的信息,因此将允许表征系统的主要组成部分。这就是储层封印的情况,这将很容易用MT检测到,因为通常由热液蚀变产生的粘土层(所谓的粘土盖层)组成。在加那利群岛可以找到将这种方法应用于地热勘探的参考资料,在过去十年中在区域范围内进行了研究。到目前为止,在七个岛屿中的三个岛屿(特内里费岛、大加那利岛和拉帕尔马岛)建立三维地电模型所取得的结果表明,这类研究的巨大价值将被用作(并且已经被用作)将在群岛上进行的新的地热勘探项目的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetotelluric applied to deep geothermal exploration: Canary Islands
There is currently a growing interest in geothermal energy. Geothermal energy for electricity generation usually corresponds to deep reservoirs, located deeper than one kilometer. This will condition the geophysical methods to be used during the exploration of the geothermal system, being magnetotelluric (MT) the only electromagnetic method capable of reaching such depths. Commonly used in geothermal exploration, this method will provide information on the electrical resistivity distribution of the subsurface, and therefore will allow characterizing the main components of the system. This is the case of the seal of the reservoir, which will be easily detectable with MT since usually consists of a layer of clays resulting from hydrothermal alteration (the so-called clay cap). A reference for the application of this method to geothermal exploration can be found in the Canary Islands, where studies have been carried out on a regional scale for the last decade. The results obtained so far, with the generation of three-dimensional geoelectrical models in three of the seven islands (Tenerife, Gran Canaria and La Palma), show the great value of this type of studies that will be used (and are already being used) as a basis for new geothermal exploration projects to be carried out in the archipelago.
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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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