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Scientific articles

  • Förster et al. (2019) under review
  • Norden et al. (2019) under review



Conferences - Oral presentation

  • Fuchs, S.; ITHERLAB-Team (2018) "Das ITHERLAB Projekt: Zur Entwicklung einer laborativen Messapparatur für thermische Gesteinseigenschaften bei variablen Druck, Temperatur und Fluid-Bedingungen" Der Geothermiekongress 2018. Geothermische Vereinigung (Essen, 28.11.2018). Oral presentation

Conferences - Poster presentation

  • Fuchs, S.; Raab, S., Giese, R.; Poser, M.; Ziegenhagen, T.; Henkel, C. (2018) "The ITHERLAB project: Development of a laboratory device for the measurement of thermal rock properties at variable temperature and pressure" EGU General Assembly 2018 (Vienna, 09.04.2018). Poster presentation
  • Andrea Förster, Sven Fuchs, Ben Norden, Hans-Jürgen Förster (2017). "Geotherms of the continental crust: ambiguity from experimental P-T correction to thermal conductivity." IASPEI Symposia, S24. Methods and instruments of experimental geothermics - application and recent evolution. Online abstract

Courses / Workshops

  • Sven Fuchs, Ben Norden (winter term 2017/18). "Fundamentals of geothermics of the Earths crust" master module at the University of Potsdam (Germany) [video announcement | EN | DE]

Relevant publications and reports by others

Selected publications by others related to the pressure and temperature dependency of rock thermal properties.

  • Bridgman, P. W. (1924). "The thermal conductivity and compressibility of several rocks under high pressures." American Journal of Science Series 5 Vol. 7(38): 81-102.
  • Birch, A. F. and H. Clark (1940). "The thermal conductivity of rocks and its dependence upon temperature and composition." American Journal of Science 238(8): 529-558.
  • Clark, H. (1941). "The Effects of Simple Compressing and Wetting on the Thermal Conductivity of Rocks." Transactions, American Geophysical Union 3: 543.
  • Woodside, W. and J. H. Messmer (1961). "Thermal conductivity of porous media. II. Consolidated rocks." Journal of Applied Geophysics 32(9): 1699-1706.
  • Somerton, W. H., S. H. Ward and M. S. King (1963). "Physical properties of Mohole Test Site basalt." Journal of Geophysical Research 68(3): 849-856.
  • Walsh, J. B. and E. R. Decker (1966). "Effect of pressure and saturating fluid on the thermal conductivity of compact rock." Journal of Geophysical Research 71(12): 3053-3061./li>
  • Tikhomirov, V. M. (1968). "The thermal conductivity of rocks and its relationship to density, moisture content, and temperature // Conductivity of Rocks and Their Relationship with Density, Saturation and Temperature (in Russian)." Neftânoe Hozâjstvo 46(4): 36-40.
  • Hurtig, E. and H. Brugger (1970). "Wärmeleitfähigkeitsmessung unter einaxialem Druck." Tectonophysics 10(13): 67-77.
  • Anand, J., W. H. Somerton and E. Gomaa (1973). "Predicting thermal conductivities of formations from other known properties " Society of Petroleum Engineers Journal 13(5): 267-272.
  • Sibbitt, W. L. (1975). Preliminary measurements of the thermal conductivity of rocks from LASL geothermal test holes GT-1 and GT-2 L. A. S. Lab. N.Mex. (USA), US Energy Research and Development Administration: 8.
  • Cull, J. P. (1976). "The measurement of thermal parameters at high pressures." Pure and Applied Geophysics 114(2): 301-307.
  • Lubimova, E. A., A. I. Maslennikov and Y. A. Ganijev (1977). "Thermal conductivity of dry, wet and oil-saturated rocks at slightly high temperatures and pressures." Geophysical Research Bulletin 15: 59-66.
  • Balling, N., J. I. Kristiansen, N. Breiner, K. D. Poulsen, R. Rasmusen and S. Saxov (1981). "Geothermal measurements and subsurface temperature modelling in Denmark." Geologiske Skrifter 16(1): 172.
  • Seipold, U. (1988). "Simultaneous measurements of thermal diffusivity and thermal conductivity under high pressure using thermal pulses of finite length." High Temperatures-High Pressures 20(n): 609-613.
  • Horai, K.-I. and J.-i. Susaki (1989). "The effect of pressure on the thermal conductivity of silicate rocks up to 12 kbar." Physics of the Earth and Planetary Interiors 55(3-4): 292-305.
  • Buntebarth, G. (1991). "Thermal properties of KTB Oberpfalz VB core samples at elevated temperature and pressure." Scientific Drilling 2(23): 73-80.
  • Kukkonen, I. T., J. Jokinen and U. Seipold (1999). "Temperature and pressure dependencies of thermal transport properties of rocks: Implications for uncertainties in thermal lithosphere models and new laboratory measurements of high-grade rocks in the Central Fennoscandian Shield." Surveys in Geophysics 20(1): 33-59.
  • Seipold, U. and E. Huenges (1998). "Thermal properties of gneisses and amphibolites - high pressure and high temperature investigations of KTB-rock samples." Tectonophysics 291(14): 173-178.
  • Seipold, U. (2001). Der Wärmetransport in kristallinen Gesteinen unter den Bedingungen der kontinentalen Kruste. Techn. Ber. STR 01/13, . Potsdam, germany, GeoForschungsZentrum Potsdam: 142.
  • Durutürk, Y. S., A. Demirci and A. Keçeciler (2002). "Variation of thermal conductivity of rocks with pressure." CIM Bulletin 95(1061): 67-71.
  • Demirci, A., K. Gorgulu and Y. S. Durutürk (2004). "Thermal conductivity of rocks and its variation with uniaxial and triaxial stress." International Journal of Rock Mechanics and Mining Sciences 41(7): 1133-1138.
  • Emirov, S. N. and E. N. Ramazanova (2007). "Thermal conductivity of sandstone at high pressures and temperatures." High Temperature 45(3): 317-320.
  • Abdulagatova, Z. Z., I. M. Abdulagatov and S. N. Emirov (2009). "Effect of temperature and pressure on the thermal conductivity of sandstone." International Journal of Rock Mechanics and Mining Sciences 46(6): 1055-1071.
  • Abdulagatova, Z. Z., I. M. Abdulagatov and S. N. Emirov (2010). "Effect of pressure, temperature, and oil-saturation on the thermal conductivity of sandstone up to 250&xnbsp;MPa and 520 K." Journal of Petroleum Science and Engineering 73(12): 141-155.
  • Ramazanova, A. E. and S. N. Emirov (2012). "Baric and temperature dependences for the thermal conductivity of sedimentary rocks." Bulletin of the Russian Academy of Sciences: Physics 76(10): 1152-1156.