根据对磁力、重力和电阻率数据的解释,地热表面表现与墨西哥东北部地质的关系

IF 3.5 2区 工程技术 Q3 ENERGY & FUELS
José Alberto Batista-Rodríguez, Ramón Yosvanis Batista-Cruz, Yuri Almaguer-Carmenates, Felipe de Jesús López-Saucedo, Janet Tolentino-Álvarez
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引用次数: 0

摘要

我们介绍了墨西哥东北部有浅层地热现象地区的地球物理数据分析。我们解释了向极点缩小的磁异常、重力异常和二维电阻率层析模型。结果表明,表层地热现象与西北-东南和东北-西南方向的深层或浅层断层有关。这些断层可能是热流体流向地表的主要出口通道,其动态活动可能构成流体的巨大热源。这种热量还可能与火成岩的冷却和地质材料的放射性衰变有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relationship of geothermal surface manifestations with the geology of northeastern Mexico, according to the interpretation of magnetic, gravimetric, and electrical resistivity data

We present geophysics data analysis from northeastern Mexico in areas with superficial geothermal manifestations. We interpreted magnetic anomalies reduced to the pole, gravimetric anomalies, and 2D electrical resistivity tomography models. The results show that the superficial geothermal manifestations are associated with deep or shallow faults in NW-SE and NE-SW directions. These faults may be the main outlet conduits for thermal fluids to the surface and their dynamic activity may constitute a great heat source for the fluids. This heat can also be associated with the cooling of igneous rocks and the radioactive decay of geological materials.

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来源期刊
Geothermics
Geothermics 工程技术-地球科学综合
CiteScore
7.70
自引率
15.40%
发文量
237
审稿时长
4.5 months
期刊介绍: Geothermics is an international journal devoted to the research and development of geothermal energy. The International Board of Editors of Geothermics, which comprises specialists in the various aspects of geothermal resources, exploration and development, guarantees the balanced, comprehensive view of scientific and technological developments in this promising energy field. It promulgates the state of the art and science of geothermal energy, its exploration and exploitation through a regular exchange of information from all parts of the world. The journal publishes articles dealing with the theory, exploration techniques and all aspects of the utilization of geothermal resources. Geothermics serves as the scientific house, or exchange medium, through which the growing community of geothermal specialists can provide and receive information.
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