Thermal model of the Pantelleria Island (Sicily Channel, Southern Italy): new insights for promoting the sustainable exploitation of geothermal resources on the island

IF 2.9 2区 地球科学 Q3 ENERGY & FUELS
Marisa Giuffrida, Giovanni Floridia, Mauro Cacace, Marco Viccaro
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Abstract

A three-dimensional hydraulic-thermal model has been developed for the island of Pantelleria in order to investigate the driving heat transfer mechanisms and the role of rocks and fluids thermal and hydraulic properties in controlling the temperature distribution. The model simulates transient conditions accounting for changes with time of the background steady-state thermal field over a period of 50,000 years, which coincides with a period of major morphological/structural stability on the island. The comparison between observed and computed temperatures was used to validate the model. Model outcomes confirm temperature up to 490 °C at 2 km depth in the central part of the Cinque Denti caldera. The proposed thermal modeling agrees with the trend of the thermal anomaly on the island, clearly evidencing how the center of the thermal anomaly is located within the young caldera, while the north-eastern part of the island is characterized by much lower temperatures than its central-southern part. It is shown that a coupled thermal–hydraulic 3D model can provide a clear perspective on surface and subsurface conditions that drive heat transfer, thus helping to understand the characteristics of geothermal systems in the area.

Pantelleria岛(西西里海峡,意大利南部)的热模型:促进岛上地热资源可持续开发的新见解
为了研究Pantelleria岛的驱动传热机制以及岩石和流体的热工性质对温度分布的控制作用,建立了一个三维水热模型。该模型模拟了5万年背景稳态热场随时间变化的瞬态条件,这与该岛主要形态/结构稳定的时期相吻合。用实测温度和计算温度的对比来验证模型的正确性。模型结果证实,在Cinque Denti火山口中部2公里深处的温度高达490°C。所提出的热模拟与岛上热异常的趋势一致,清楚地证明了热异常的中心位于年轻的破火山口内,而该岛东北部的温度远低于其中南部。研究结果表明,热-液耦合三维模型可以清晰地反映地表和地下驱动传热的条件,从而有助于了解该地区地热系统的特征。
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来源期刊
Geothermal Energy
Geothermal Energy Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
5.90
自引率
7.10%
发文量
25
审稿时长
8 weeks
期刊介绍: Geothermal Energy is a peer-reviewed fully open access journal published under the SpringerOpen brand. It focuses on fundamental and applied research needed to deploy technologies for developing and integrating geothermal energy as one key element in the future energy portfolio. Contributions include geological, geophysical, and geochemical studies; exploration of geothermal fields; reservoir characterization and modeling; development of productivity-enhancing methods; and approaches to achieve robust and economic plant operation. Geothermal Energy serves to examine the interaction of individual system components while taking the whole process into account, from the development of the reservoir to the economic provision of geothermal energy.
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