Overview of the thermal properties of rocks and sediments in Slovenia

Q3 Earth and Planetary Sciences
D. Rajver, Simona Adrinek
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Abstract

The use of geothermal energy, which comes from both deep geothermal systems and the shallow underground, has been developing rapidly in the last few decades. The purpose of the paper is to present the results of measurements of the thermal properties of all rock samples and sediments that were available from boreholes, two tunnels and numerous surface locations in Slovenia in the period from 1982 to the end of 2022. In relation to the shallow geothermal potential, a special effort is needed to characterize the thermal properties of the rocks and sediments and to implement thermal energy transfer technology. In this sense, knowledge of the thermal conductivity of rocks and sediments is required to assess the possibility of low-enthalpy heat exchange in a given local area. The largest number of measurements was taken to determine thermal conductivity. Determinations of thermal diffusivity were carried out on a much smaller number of rock and sediment samples, as well as determinations of radiogenic heat production in rocks. The results of thermal conductivity measurements on 430 samples from 119 wells, 20 samples from two tunnels and 156 samples from surface locations are shown. The highest thermal conductivities are shown by samples of dolomite, quartz conglomerate and conglomerate, phyllonite, quartz phyllite and gneiss, while the lowest are measured in sediments such as clay, lignite with clay, peat and dry sand. The determined radioactive heat generation is the lowest for milonitized dolomite and highest for dark grey sandstone with shale clasts. Our results are comparable to those already published worldwide, and they could be the basis for the possible future Slovenian standard for the thermal properties of measured rocks and sediments.
斯洛文尼亚岩石和沉积物的热性质概述
地热能的利用在过去的几十年里得到了迅速的发展,其中包括深层地热系统和浅层地下地热系统。本文的目的是介绍1982年至2022年底期间,从斯洛文尼亚的钻孔、两条隧道和许多地表位置获得的所有岩石样本和沉积物的热特性测量结果。关于浅层地热潜力,需要作出特别努力来确定岩石和沉积物的热特性,并实施热能转移技术。从这个意义上说,需要了解岩石和沉积物的导热性,以评估在给定的局部区域进行低焓热交换的可能性。测量热导率的次数最多。热扩散率的测定是在数量少得多的岩石和沉积物样品上进行的,以及岩石中放射性产热的测定。给出了119口井的430个样品、2个隧道的20个样品和156个地表样品的导热系数测量结果。白云岩、石英砾岩和砾岩、千粒岩、石英千粒岩和片麻岩样品的导热系数最高,而粘土、褐煤和粘土、泥炭和干砂等沉积物的导热系数最低。测定的放射性产热量以百万年化白云岩最低,含页岩碎屑的深灰色砂岩最高。我们的结果与世界范围内已经发表的结果相当,它们可能成为未来斯洛文尼亚测量岩石和沉积物热特性标准的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geologija
Geologija Earth and Planetary Sciences-Geophysics
CiteScore
1.00
自引率
0.00%
发文量
10
审稿时长
10 weeks
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