Bibliography
wlcable - Mon, 2010-03-01 15:18
- Alifanov, O., 1994. Inverse Heat Transfer Problems. Springer, Berlin.
- Alifanov, O., Artyukhin, E., Rumyantsev, S., 1996. Extreme Methods for Solving
Ill-Posed Problems with Application to Inverse Heat Transfer Problems. Begell
House, New York.
- Andersland, O., Anderson, D., 1978. Geotechnical Engineering for Cold Regions.
McGraw-Hill.
- Anderson, D., Morgenstern, N., 1973. Physics, chemistry and mechanics of frozen
ground: A review. In: Proceedings Second International Conference on
Permafrost. Yakutsk, USSR, pp. 257-288.
- Anderson, T., Thomson, G., 1992. The Inverse Problem of the Calculus of
Variations for Ordinary Differential Equations. American Mathematical
Society, Providence.
- Arnold, C., Dey, C., 1986. Observing systems simulation experiments: past,
present, and future. Bulletin American Meteorological Society 67, 687-695.
- Beck, A., 1988. Handbook of Terrestrial Heat Flow Density Determination.
Kluwer, Dordrecht, Ch. Methods for determining thermal conductivity and
thermal diffusivity, pp. 87-124.
- Beck, J., 1964. The optimum analytical design of transient experiments for
simultaneous determinations of thermal conductivity and specific heat. Ph.d.
thesis, Michigan State University.
- Beck, J., Arnold, K., 1977. Parameter Estimation in Engineering and Science.
Wiley, New York.
- Beck, J., Clair, C. S., Blackwell, B., 1985. Inverse Heat Conduction: Ill-Posed
Problems. Wiley, New York.
- Bengtsson, L., Ghil, M., Källén, E., 1981. Dynamic Meteorology: Data
Assimilation Methods. Springer, New York.
- Birch, F., 1950. Flow of heat in the front range, colorado. Geological Society
of American Bulletin 61, 567-630.
- Blackmon, M., Lee, Y., Wallace, J., 1984. Horizontal structure of 500-mb height
fluctuations with long, intermediate and short-time scales. Journal of the
Atmospheric Sciences 41 (6), 961-979.
- Boike, J., Roth, K., 1997. Time domain reectometry as a field method for
measuring water content and soil water electrical conductivity at a
continuous permafrost site. Permafrost and Periglacial Processes 8, 359-370.
- Carslaw, H., Jaeger, J., 1959. Conduction of heat in solids. Oxford Univ.
Press, London.
- Carson, J., 1963. Analysis of soil and air temperatures by fourier techniques.
Journal Geophysical Research 68, 2217-2232.
- Da-Xin, L., 1986. Non-linear fitting method of finding equilibrium temperature
from bht data. Geothermics 15, 657-664.
- Dalhuijsen, A., Segal, A., 1986. Comparison of finite element techniques for
solidification problems. Int.j .numer.methods eng. 23, 1807-1829.
- de Vries, D., 1963. W.R. van Wijk (editor) Physics of the plant environment.
North-Holland, Amsterdam, Ch. Thermal Properties of Soils.
- Duchateau, P., 1996. Parameter Identification and Inverse Problems in
Hydrology, Geology and Ecology. Kluwer, Dordrecht.
- Fletcher, R., 2000. Practical methods of optimization. John Wiley & Sons.
- Galushkin, Y., 1997. Numerical simulation of permafrost evolution as a part of
sedimentary basin modeling: permafrost in the pliocene-holocene climate
history of the urengoy field in the west siberian basin. Canadian Journal of
Earth Sciences 34, 935-948.
- Gardner, W., 1986. Methods of Soil Analysis, Part 1: Physical and Mineralogical
Methods, 2nd Edition. American Society of Agronomy, Soil Science Society of
America, Madison, WI, Ch. Water content, pp. 493-544.
- Ghil, M., Malanotte-Rizzoli, P., 1991. Data assimilation in meteorology and
oceanography. Advances in Geophysics 33, 141-266.
- Gladwell, G., 1993. Inverse Problems in Scattering: An Introduction. Kluwer,
Dordrecht.
- Herzen, R. V., Maxwell, A., 1959. The measurement of thermal conductivity of
deep-sea sediments by a needle-probe method. Jounral Geophysical Research 64,
1557-1563.
- Hinkel, K. M., 1997. Estimating seasonal values of thermal diffusivity in
thawed and frozen soils using temperature time series. Cold Reg. Sci.
Technol. 26, 1-15.
- Hinzman, L., Kane, D., Gleck, R., Everett, K., 1991. Hydrological and thermal
properties of the active layer in the alsakan arctic. Cold Region Science and
Technology 19, 95-110.
- Hurley, S., Wiltshire, R. J., 1993. Computing thermal diffusivity from soil
temperature measurements. Comput. Geosci. 19, 475-477.
- Jarny, Y., Özisik, M., Bardon, J., 1991. General optimization method
using adjoint equation for solving multidimensional inverse heat conduction.
International Journal Heat and Mass Transfer 34 (2911-2919).
- Kane, D., Hinkel, K., Goering, D., Hinzman, L., Outcalt, S., 2001.
Non-conductive heat transfer associated with frozen soils. Global and
Planetary Change 29, 275-292.
- Kersten, M., 1949. Thermal properties of soils. Bulletin 28, University of
Minnesota, Engineering Experiment Station.
- Kudryavtsev, V., 1978. Obshcheye merzlotovedeniya (General permafrost science).
Moscow University Editions, Moscow, in Russian.
- Lachenbruch, A., Marshall, B., 1986. Changing climate: geothermal evidence from
permafrost in the alaskan arctic. Science 234, 689-696.
- Lachenbruch, A., Sass, J., Marshall, B., Moses, T., 1982. Permafrost, heat
flow, and the geothermal regime at prudhoe bay, alaska. Journal Geophysical
Research 87 (B11), 9301-9316.
- Lide, D., 1999. Handbook of Chemistry and Physics, 79th Edition. CRC.
- Lovell, C., 1957. Temperature effects on phase composition and strength of
partially frozen soil. Highway Res. Board Bull. 168, 74-95.
- Lunardini, V., 1987. Freezing of soil with an unfrozen water content and
variable thermal properties. CRREL Report 88-2, National Technical
Information Service.
- Marchuk, G., 1995. Adjoint equations and analysis of complex systems. Kluwer
Academic Publication.
- McGaw, R. W., Outcalt, S. I., Ng, E., 1978. Thermal properties of wet tundra
soils at barrow, alaska. Proceedings of 3rd International Conference on
Permafrost 1, 47-53, nat. Res. Counc. of Can., Ottawa,Canada.
- Murio, D., 1993. The Mollification Method and the Numerical Solution of
Ill-Posed Problems. Wiley, New York.
- Muzylev, N. V., 1985. The uniqueness of a solution to an inverse nonlinear heat
conduction problem. Zhurnal Vychislitel'noi Matematiki i Matematicheskoi
Fiziki 25, 1346-1352, in Russian.
- Nagler, R., 1965. Transient techniques for determining the thermal conductivity
of homogeneous polymeric materials at elevated temperatures. Journal of
Applied Polymer Sciences 9, 801-819.
- Nicolsky, D., Romanovsky, V., Tipenko, G., 2007. Estimation of thermal
properties of saturated soils using in-situ temperature measurements. The
Cryosphere 1, 41-58.
- Osterkamp, T., Romanovsky, V., 1996. Characteristics of changing permafrost
termperatures in the alaskan arctic, usa. Arctic and Alpine research 28,
267-273.
- Osterkamp, T., Romanovsky, V., 1997. Freezing of the active layer on the
coastal plain of the alaskan arctic. Permafrost and Periglacial Processes
8 (1), 23-44.
- Ouyang, T., 1992. Analysis of parameter estimation heat conduction problems
with phase change using the finite element method. International Journal for
Numerical Methods in Engineering 33 (10), 2015-2037.
- Panteleev, G., deYoung, B., Reiss, C., Taggart, C., 2004. Passive tracer
reconstruction as a least squares problem with a semi-lagrangian constraint:
an application to fish eggs and larvae. Journal of Marine Research 62,
787-814.
- Pavlov, A., Permyakov, P., Stepanov, A., 1980. Determination of the
thermophysical characteristics of alternatively freezing and thawing
dispersed media by the method of solving inverse problems of heat conduction.
Journal of Engineering Physics and Thermophysics 39, 885-889.
- Permyakov, P., 2004. Methods of determining the characteristics of dispersed
media at a phase transition. Russian Physics Journal.
- Romanovsky, V., Osterkamp, T., 1995. Interannual variations of the thermal
regime of the active layer and near-surface permafrost in northern alaska.
Permafrost and Periglacial Processes 6, 313-335.
- Romanovsky, V., Osterkamp, T., 1997. Thawing of the active layer on the coastal
plain of the alaskan arctic. Permafrost and Periglacial processes 8, 1-22.
- Romanovsky, V., Osterkamp, T., 2000. Effects of unfrozen water on heat and mass
transport processes in the active layer and permafrost. Permafrost and
Periglacial Processes 11, 219-239.
- Romanovsky, V., Osterkamp, T., 2001. Permafrost: Changes and Impacts, in:
R. Paepe and V. Melnikov (eds.). Kluwer Academic Publishers, Ch.
Permafrost Response on Economic Development, Environmental Security and
Natural Resources, pp. 297-315.
- Sass, J., Lachenbruch, A., Munroe, R., 1971. Thermal conductivity of rocks from
measurements on fragments and its application to heat-flow determinations.
Journal of Geophysical Research 76 (14), 3391-3401.
- Schröter, J., 1989. In D.L. Anderson and J. Willebrand, Oceanic Circulation
Models: Combining Data and Dynamics. Kluwer Academic, Ch. Driving of
nonlinear time dependent ocean models by observation of transient tracers - A
problem of constrained optimization., pp. 257-285.
- Silliman, S., Neuzil, C., 1990. Borehole determination of formation thermal
conductivity using a thermal pulse from injected fluid. Journal of
Geophysical Research 95 (B6), 8697-8704.
- Somerton, W., 1992. Thermal properties and temperature-related behavior of
rock/fluid systems. No. 37 in Developments in Petroleum Science. Elsevier,
Amsterdam.
- Thacker, W., 1989. The role of the hessian matrix in fitting models to
measurements. Journal of Geophysical Research 94, 6177-6196.
- Thacker, W., Long, R., 1988. Fitting dynamics to data. Journal of Geophysical
Research 93 (2), 1227-1240.
- Tikhonov, L., Leonov, A., 1996. Nonlinear Ill-Posed Problems. Vol. 14 of
Applied Mathematics and Mathematical Computation Series. Chapman and Hall,
London.
- Topp, G., Ferre, P., 2002. Methods of Soil Analysis Part 4, Physical Methods.
SSSA Book Series No. 5. Soil Science Society of America, Madison, WI, Ch.
Water content, pp. 417-545.
- Topp, G. C., Davis, J. L., Annan, A. P., 1980. Electromagnetic determination of
soil water content: measurements in coaxial transmission lines. Water
Resources Research 16, 574-582.
- Watanabe, K., Mizoguchi, M., 2002. Amount of unfrozen water in frozen porous
media saturated with solution. Cold Regions Science and Technology 34,
103-110.
- Wilhelm, H., 1990. A new approach to the borehole temperature relaxation
method. Geophysical Journal International 103 (2), 469-481.
- Williams, P., 1967. Properties and behaviour of freezing soils. Tech. Rep. 72,
Norwegian Geotechnical Institute.
- Wunsch, C., 1996. The Ocean Circulation Inverse Problem. Cambridge University
Press, Cambridge.
- Yershov, E., 1998. General Geocryology. Cambridge University Press, New York.
- Yoshikawa, K., Overduin1, P., Harden, J., 2004. Moisture content measurements
of moss (sphagnum spp.) using commercial sensors. Permafrost and Periglacial
Processes 15, 309-318.
- Zhang, T., 1993. Climate, seasonal snow cover and permafrost temperatures in
alaska north of the brooks range. Ph.d. dissertation, University of Alaska.
- Zhang, T., Osterkamp, T. E., 1995. Considerations in determining the thermal
diffusivity from temperature time series using finite difference methods.
Cold Reg. Sci. Technol. 23, 333-341.
- Zienkiewicz, O., Taylor, R., 1991. The finite element method, 4th Edition. Vol.
1,2. McGraw-Hill, London.