Effect of temperature on the thermal conductivity of a granite with high heat production from Central Portugal

被引:0
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作者
M. M. Miranda
C. R. Matos
N. V. Rodrigues
A. J. S. C. Pereira
J. J. Costa
机构
[1] INRS—Institut National de la Recherche Scientifique and CEN—Centre D’études Nordiques,MIT Portugal Program, University of Coimbra and ICT
[2] University of Évora, Institute of Earth Sciences
[3] Rua Luís Reis Santos,CGeo—Geosciences Centre of the University of Coimbra
[4] Polo II University of Coimbra,CITEUC—Centre for Earth and Space Research of the University of Coimbra
[5] Rua Sílvio Lima,ADAI
[6] Polo II University of Coimbra,LAETA—Association for the Development of Industrial Aerodynamics
[7] Rua Sílvio Lima,undefined
[8] Polo II University of Coimbra,undefined
[9] Rua Luís Reis Santos,undefined
[10] Polo II University of Coimbra,undefined
来源
关键词
Thermal properties; Temperature; Geothermal energy; Granites; Portugal; Propiedades térmicas ; Temperatura ; Energía geotérmica ; Granitos; Portugal;
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学科分类号
摘要
We present new measurements on the thermal properties of granitic rocks collected from a nearly 1000-m deep well in Central Portugal, using a transient plane source technique with a hot disk sensor. At room-temperature, the granite has, on average, a thermal conductivity of 3.1 W m−1 K−1, a thermal diffusivity of 1.6 × 10−6 m2 s−1, a heat capacity of 1.9 × 106 J m−3 K−1 and a specific heat of 720.7 J kg−1 K−1. A nearly uniform distribution of thermal conductivity values was obtained across the well. We found that as temperature increases from 20 to 120 °C, the thermal conductivity decreases from 9 to 16%. Linear, exponential, power and logarithmic functions were used to fit the dataset and their validity studied by error analyses. This made it possible to obtain empirical relationships to extrapolate thermal conductivity from room temperature to higher temperatures. The application of these relationships to our dataset leads to a decrease in thermal conductivity of 17 to 19% within the temperature range of 20 to 200 °C. These temperature corrections for thermal conductivity will be used in future studies to calculate geotherms and to assess the deep geothermal potential in central Portugal.
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页码:147 / 161
页数:14
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