Changes in microstructure and physical properties of rocks caused by artificial freeze–thaw action

Springer Science and Business Media LLC - Tập 74 Số 2 - Trang 555-565 - 2015
Jihwan Park1, Chang‐Uk Hyun2, Hyeong-Dong Park1
1Seoul National Univ.
2Korea Polar Research Institute

Tóm tắt

Từ khóa


Tài liệu tham khảo

ASTM (2004) Standard test method for evaluation of durability of rock for erosion control under freezing and thawing conditions, D 5312-04

Bayram F (2012) Predicting mechanical strength loss of natural stones after freeze-thaw in cold regions. Cold Reg Sci Technol 83:98–102

Bland W, Rolls D (1998) Weathering: an introduction to the scientific principles. Arnold, London

Brown ET (1981) Rock characterization testing & monitoring: ISRM suggested methods. Pergamon Press, Oxford

Carlson WD (2006) Three-dimensional imaging of earth and planetary materials. Earth Planet Sci Sett 249:133–147

Chen TC, Yeung MR, Mori N (2004) Effect of water saturation on deterioration of welded tuff due to freeze-thaw action. Cold Reg Sci Technol 38:127–136

Cnudde V, Masschaele B, Dierick M, Vlassenbroeck J, Van Hoorebeke L, Jacobs P (2006) Recent progress in X-ray CT as a geosciences tool. Appl Geochem 21:826–832

Davidson GP, Nye JF (1985) A photoelastic study of ice pressure in rock cracks. Cold Reg Sci Technol 11:141–153

Davis N (2001) Permafrost: a guide to frozen ground in transition. University of Alaska Press, Fairbanks

Dewanckele J, Van Loo D, Vlassenbroeck J, Boone MN, Cnudde V, Boone MA, De Kock T, Van Hoorebeke L, Jacobs P (2010) Contributions of X-ray CT to the characterization of natural building stones and their disintegration. In: Proceeding of the international workshop on X-ray CT for geomaterials (GeoX 2010) vol 1, pp 164–171

Fujun N, Guodong C, Huimin X, Lifeng M (2006) Field experiment study on effects of duct-ventilated railway embarkment on protecting the underlying permafrost. Cold Reg Sci Technol 45:178–192

Grossi CM, Brimblecombe P, Harris I (2007) Predicting long term freeze-thaw risks on Europe built heritage and archaeological sites in a changing climate. Sci Total Environ 29:273–281

Hall K (1999) The role of thermal stress fatigue in the breakdown of rock in cold regions. Geomorphology 31:47–63

Hall K, André M (2001) New insights into rock weathering from high-frequency rock temperature data: an Antarctic study of weathering by thermal stress. Geomorphology 41:23–35

Hall K, Cullis A, Morewood C (1989) Antarctic rock weathering simulations: simulator design, application and use. Antarct Sci 1:45–50

ISO (2007) Thermal-insulating materials—determination of freeze-thaw resistance, ISO 20394-2007

Lautridou JP, Ozouf JC (1982) Experimental frost shattering: 15 years of research at the Centre de Geomorphologie du CNRS. Prog Phys Geogr 6:215–232

Marco Castaño LD, Martínez-Martínez J, Benavente D, García-del-Cura MA (2010) Failures in the standard characterization of carbonate dimension stone durability during freeze-thaw testing. In: Proceedings of Global Stone Congress 2010

Matsuoka N (1990) Mechanisms of rock breakdown by frost action: an experimental approach. Cold Reg Sci Technol 17:253–270

Matsuoka N, Murton J (2008) Frost weathering: recent advances and future directions. Permafr Periglac Process 19:195–210

Murton JB, Peterson R, Ozouf J (2006) Bedrock fracture by ice segregation in cold regions. Science 314:1127–1129

Nicholson DT, Nicholson FH (2000) Physical deterioration of sedimentary rocks subjected to experimental freeze-thaw weathering. Earth Surf Process Landf 25:1295–1307

Park J, Hyun CU, Park HD (2010) Freeze-thaw cycle test on rocks for the simulated environment of the King Sejong Station, Antarctica. J Korean Soc Geosys Eng 47:731–742 (in Korean)

Potts AS (1970) Frost action in rocks: some experimental data. Trans Inst Br Geogr 49:109–124

Rodríguez-Rey A, Ruiz de Argandoña VG, Calleja L, Suárez del Río LM, Celorio C (2004) X-ray tomography characterization of microfissuration on rocks generated by freeze-thaw cycles. In: Proceeding of the international workshop on X-ray CT for geomaterials (GeoX 2003) vol 1, pp 293–298

Ruedrich J, Kirchner D, Siegesmund S (2011) Physical weathering of building stones induced by freeze-thaw action: a laboratory long-term study. Environ Earth Sci 63:1573–1586

Ruiz de Argandoña VG, Rodríguez Rey A, Celorio C, Suárez del Río LM, Calleja L, Llavona J (1999) Characterization by computed X-ray tomography of the evolution of the pore structure of a dolomite rock during freeze-thaw cyclic tests. Phys Chem Earth 24:633–637

Simonsen E, Isacsson U (1999) Thaw weakening of pavement structures in cold regions. Cold Reg Sci Technol 20:135–151

Tsytovich NA (1975) The mechanics of frozen ground. McGraw-Hill, New York

Walder JS, Hallet B (1986) The physical basis of frost weathering: toward a more fundamental and unified perspective. Arctic Alpine Res 18:27–32

Wiman S (1963) A preliminary study of experimental frost weathering. Geogr Ann 45:113–121

Wright JS (2000) The spalling of overgrowths during experimental freeze-thaw of a quartz sandstone as a mechanism of quartz silt production. Micron 31:631–638

Yavuz H (2010) Effect of freeze-thaw and thermal shock weathering on the physical and mechanical properties of an andesite stone. Bull Eng Geol Environ 70:187–192

Zhang L (2005) Engineering properties of rocks. Elsevier, London

Zhang S, Lai Y, Zhang X, Pu Y, Yu W (2004) Study on the damage propagation of surrounding rock from a cold-region tunnel under freeze-thaw cycle condition. Tunn Undergr Sp Technol 19:295–302

Zhou W, Wang ZL (2007) Scanning microscopy for nanotechnology. Springer, New York