Berman, R. (1976). Thermal Conductivity in Solids. Clareton University Press, Oxford.
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1 Literaturverzeichnis Anderson, O. L. and Goto, T. (1989). Measurement of elastic constants of mantlerelated minerals at temperaturs up to 1800 K. Physics of the Earth and Planetary Interiors, 55(3-4): April Bass, J. (1995). Elasticity of minerals, glasses, and melts. Beck, A. E. (1988). Methods for determining thermal conductivity. In Hänel, R., L.Stegen, and Rybach, L., editors, Handbook of Terrestrial Heat Flow Density Determination, pages Kluwer, Dordrecht. Berman, R. (1976). Thermal Conductivity in Solids. Clareton University Press, Oxford. Birch, A. and Clark, H. (1940). The thermal conductivity of rocks and its dependence upon temperature and composition. American Journal of Science, 238(8, Part 1): Boehler, R. (1992). Melting of the fe feo and the fe fes systems at high pressure: Constraints on core temperatures. Earth and Planetary Science Letters, 111(2-4): Boehler, R. (1993). Temperatures in the earth s core from melting-point measurements of iron at high static pressures. Nature, 363(6429): Boltzmann, L. (1884). Ableitung des Stefanschen Gesetzes, betreffend die Abhängigkeit der Wärmestrahlung von der Temperatur aus der elektromagnetischen Lichttheorie. Annalen der Physik und Chemie, 22: Buntebarth, G. and Gliko, A. (1994). Heat Flow in the Earth s Crust and Mantle, volume 1 of Advanced Mineralogy. Springer- Verlag. Cahill, D. G., Watson, S. K., and Pohl, R. O. (1992). Lower limit to the thermal conductivity of disordered crystals. Physical Review B, 46(10): XI
2 XII Literaturverzeichnis Clark, S. (1957). Radiative transfer in the Earth s mantle. Transactions - American Geophysical Union, 38(6): Clauser, C. and Huenges, E. (1995). Thermal Conductivity of Rocks and Minerals. pages Dandekar, D. P. (1968). Variation in the Elastic Constants of Calcite with Temperature. Journal of Applied Physics, 39(8): Debey, P. (1914). Vorträge über die kinetische Theorie der Materie. Leipzig- Berlin. Deer, Howie, and Zussmann (1992). Carbonates. Diment, W. and Pratt, H. (1988). Thermal conductivity of some rock-forming minerals; a tabulation. Technical report, United States Department of the interior geological survey. Eucken, A. (1911). Über die Temperaturabhängigkeit der Wärmeleitfähigkeit fester Nichtmetalle. Annalen der Physik, 4. Folge, 34: November Exel, R. (1993). Die Mineralien und Erzlagerstätten Österreichs. Eigenverlag, Vienna. Fick, A. (1855). Über Diffusion. Annalen der Physik, 94: Fourier, J. B. J. (1822). Théorie analytiqué de la chaleur. Didot, Paris. Gerthsen, C. (1997). Gerthsen Physik, volume 19. Springer Berlin Heidelberg. Gibert, B., Schilling, F., Gratz, K., and Tommasi, A. (2005). Thermal diffusivity of olivine single crystals and a dunite at high temperature: Evidence for heat transfer by radiation in the upper mantle. Physics of The Earth and Planetary Interiors, 151(1-2): Gringull, U. and Sandner, H. (1979). Wärmeleitung. Springer Verlag Berlin. Gueguen, V. and Palciauskas, Y. (1994). Introduction to the Physics of Rocks. Princton University Press. Haussühl, S. (1983). Kristallphysik. Physik Verlag, Verlag Chemie, Weinheim. Hill, R. (1952). Proc. Phys. Soc. London, 65:350. Höfer, M. and Schilling, F. (2002). Heat transfer in quartz, orthoclase, and sanidin at elevated temperatures. Physics and Chemistry of Minerals, 29:
3 Literaturverzeichnis XIII Hofmeister, A. H. (1999). Mantle values of thermal conductivity and the geotherm from phonon lifetimes. Science, 283(5408): Holt, J. (1975). Thermal diffusivity of olivine. Earth and Planetary Science Letters, 27(3): Horai, K. (1971). The Thermal Conductivity of Rock- Forming Minerals. Journal of Geophysical Research, 76(5): Horai, K. (1991). Thermal conductivity of Hawaiian basalte; a new interpretation of Robertson and Peak s data. Journal of Geophysical Research, 96(B3): Horai, K. and Simmons, G. (1969). Thermal conductivity of rock- forming minerals. Earth and Planetary Science Letters, 6: Humbert, P. and Pliquet, F. (1972). Propriétés élastiques de carbonates rhombohédriques monocristallins: calcite, magnésite, dolomie. C. R. Acad. Sc. Paris, 275(series B): Kittel, C. (1986). Introduction to solid state physics. John Wiley & Sons, Inc., New York, Chichester, Brisbane, Torornto, Singapore. Kleber, W. (1983). Einführung in die Kristallographie. Verlag Technik Berlin. Klemens, P. (1969). Theory of the thermal conductivity of solids, volume 1 of Thermal Conductivity. Academic Press, Cambridge. Knacke, O., Kubaschewski, O., and Hesselmann, K. (1991). Thermochemical Properties of inorganic substances. Springer- Verlag, Berlin, Heidelberg, New York, London, Paris, Tokyo, Hong Kong, Barcelona, Budapest erlag Stahleisen m.b.h. Düsseldorf. Kristjansson, L. (2002). Iceland spar: The helgustadir calcite locality and its influence on the development of science. Journal of Geoscience Education, 50(4): Labhart, T. (1983). Geologie der Schweiz. Hallwag Taschenbuch. Maj, S. (1974). A note on the relationship among phonon conductivity, density, and mean atomic weight for carbonate minerals. Acta Geophysica Polonica, 22(3): Matthes, S. (1993). Mineralogie, volume 4. Aufl. Springer- Verlag. Nagihara, S., Brooks, J. M., Bernhard, B. B., Cole, G., Summer, N., and Lewis, T. (2002). Applications of marine heat flow data important in oil and gas exploration. Oil and Gas Journal, 100(27).
4 XIV Literaturverzeichnis Ney, P. (1956). Zum gegenwärtigen Stand des Magnesitproblems. Zeitschrift der Deutschen Geologischen Gesellschaft, 108: Nye, J. (1964). Physical properties of crystals. Clarendon press, Oxford. Ohno, I. (1995). Temperature variation of elastic properties of alpha -quartz up to the alpha -beta transition. Journal of Physics of the Earth, 43(2): Parker, W. J., Jenkins, R. J., Butler, C. P., and Abbott, G. L. (1961). Flash method of determining thermal diffusivity, heat capacity, and thermal conductivity. Journal of Applied Physics, 32(9): Pauly, H. and Bailey, J. C. (1999). Genesis and evolution of the ivigtut cryolite deposit, southwest greenland. Meddr Grønland, Geosci., 37. Peierls, R. (1929). Zur kinetischen Theorie der Wärmeleitung in Kristallen. Annalen der Physik, 395, Folge 5(3): Powell, R. and Childs, G. (1972). American Institute of Physics Handbook. McGraw- Hill, New York, 3 edition. Press, F. and Siever, R. (1995). Allgemeine Geologie. Spekturm Akademischer Verlag. Rayleigh, L. (1885). Theory of Sound. Rayleigh, L. (1896). The Theory of Sound. The Macmilan Company. Reuss, A. (1929). Berechnung der Fliesgrenzen von Mischkristallen. Zeitschrift für Angewandte Mathematik und Mechanik, 9: Robertson, E. C. (1988). Thermal Properties of rocks. Open-File Report, :106. Rösler, H. J. (1990). Lehrbuch der Mineralogie, volume 5. Deutscher Verlag für Grundstoffindustrie, Leipzig. Roufosse, M. and Klemens, P. (1973). Thermal Conductivity of Complex Dielectric Crystals. Phys. Rev. B, 7(12): Roufosse, M. C. and Klemens, P. G. (1974). Lattice Thermal Conductivity of Minerals at High Temperatures. Journal of Geophysical Research, 79(5): Schilling, F. (1998). Mineralphysik- Ein mineralogischer Ansatz. FU Berlin. S.:
5 Literaturverzeichnis XV Schilling, F. R. (1997). The effect of fluids on thermal diffusivity of some magmatic rocks. Physics and Chemistry of the Earth, 22(1-2): Schilling, F. R. (1999). A transient technique to measure thermal diffusivity at elevated temperatures. European-Journal-of-Mineralogy, 11: Seipold, U. (1995). The variation of thermal transport properties in the Earth s crust. Journal of Geodynamics, 20(2): Seipold, U. (1998). Temperature dependence of thermal transport properties of crystalline rocksa general law. Tectonophysics, 291: Srivastaval, K. and Singh, R. (1998). A model for temperature variations in sedimentary basins due to random radiogenic heat sources. Geophysical Journal International, 135: Stanley, S. M. (1994). Historische Geologie. Spektrum Akademischer Verlag. Stefan, J. (1879). Über die Beziehung zwischen der Wärmestrahlung und der Temperatur. Sitzungsberichte der Mathematisch- Naturwissenschaftlischen Classe, 79(1-4): Stein, J. and Shankland, T. J. (1981). Radiative thermal conductivity in obsidian and estimates of heat transfer in magma bodies. Journal of Geophysical Research, 86(B5): , 5 figs, 2 tables, 15 refs. Suzuki, I., Anderson, O., and Sumino, Y. (1983). Elastic properties of a single-crystal forsterite Mg 2 SiO 4, up to 1,200 K. Physics and Chemistry of Minerals, 10(1): Čermák, V. and Rybach, L. (1982). Thermal Properties, volume 1 a of Landoldt- Börnstein. Springer Verlag, Berlin- Heidelberg- New York. Voigt, W. (1928). Lehrbuch der Kristallphysik. Teubner, Leipzig. von Herzen, R. and Maxwell, A. E. (1959). The measurement of thermal conductivity of deepsea sediments by a needle-probe method. Journal of Geophysical Research, 64(10): Ziman, J. M. (1967). Electrons and Phonons. Oxford. corrected sheets of the first Edition. Zoth, G. and Hänel, R. (1988). Appendix. In R. a. R. Hänel, L. and Stegena, L., editors, Handbook of Terrestrial Heat Flow Density Determination, pages Kluwer, Dordrecht. Zubov, V. and Firsova, M. (1962). Elastic constants of quartz near the α- β transition. Sov. Phys. Crystallogr., 7:
6 XVI
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