References
- 김동학, 황재하, 박기화, 송교영, 1998, 한국지질도 (1:250,000), 부산도폭 및 설명서. 과학기술처, 62 p
- 김영화, 장보안, 박상욱, 1996, 양산단층 지역의 화강암체 내에 분포하는 열린 미세균열과 경상분지의 고응력장. 대한지질학회지, 32, 367-378
- 김정찬, 고희재, 이승렬, 이창범, 최성자, 박기화, 2001, 한국지질도(1:250,000), 강릉-속초도폭 및 설명서. 한국지질자원연구원, 76 p
- 박덕원, 2005, 포천화강암내 미세균열의 조직특성. 한국지질자원연구원 논문집, 9, 3-13
- 박덕원, 김형찬, 이창범, 홍세선, 장세원, 이철우, 2004, 포천지역의 쥬라기 화강암에 발달된 결의 특성 한국암석 학회지, 13, 133-141
- 박덕원, 서용석, 정교철, 김영기, 2001, 주라기 화강암내 발달하는 결의 현미경학적 분석. 대한지질공학회지, 11, 51-62
- 서용석, 정교철, 1999, 수침삼축압축하에서 관찰되는 화강암의 미세 파괴. 대한지질공학회지, 9, 243-251
- 이병대, 장보안, 윤현수, 이한영, 진명식, 1999, 문경지역에 분포하는 화강암의 미세균열 발달특성. 한국암석학회지, 8, 24-33
- 이병주, 김동학, 최현일, 기원서, 박기화, 1996, 한국지질도 (1:250,000), 대전도폭 및 설명서. 과학기술처, 59 p
- 이병주, 김유봉, 이승렬, 김정찬, 강필종, 최현일, 진명식, 1999, 한국지질도(1:250,000), 서울-남천점도폭 및 설명서. 과학기술부, 64 p
- 이병주, 김정찬, 김유봉, 조등룡, 최현일, 전희영, 김복철, 1997, 한국지질도(1:250,000), 광주도폭 및 설명서. 과학 기술부, 82 p
- 장보안, 오선환, 2001, 포천화강암내 발달한 결의 역학적 이방성과 미세균열의 상관성. 대한지질공학회지, 11, 191-203
- 황재하, 김동학, 조등룡, 송교영, 1996, 한국지질도 (1:250,000), 안동도폭 및 설명서. 과학기술부, 67 p
- Bur, T. R. and Hjelmstad, K. E., 1970, Elastic and attenuation symmetries of simulated lunar rocks. Icarus 13, 44
- Dale, T.N., 1923, The commercial granites of New England. U.S. Geological Survey Bulletin, 738, 488
- Douglass, P. M. and Voight, B., 1969, Anisotropy of granites: A reflection of microscopic fabric. Geotechnique, 19, 376-398 https://doi.org/10.1680/geot.1969.19.3.376
- Duvall, W. I., 1965, The effect of anisotropy on the determination of dynamic elastic constants of rock. Trans. Soc. Min. Eng. AIME, 232, dec., 309-316
- Herrmann, O., 1916, Steinbruch-Industrie und Steinbruch-Geologie. Borntraeger, Berlin, 2nd ed., 312 p
- Holzhausen, G. R., 1989, Origin of sheet structure, 1. Morphology and boundary conditions. Engineering Geology, 27, 225-275 https://doi.org/10.1016/0013-7952(89)90035-5
- Jahns, R. H., 1943, Sheet structure in granites: its origin and use as a measure of glacial erosion in New England. Journal of Geology, 51, 71-98 https://doi.org/10.1086/625130
- Krantz, R.L., 1983, Microcracks in rocks. Tectonophysics, 100, 449-471 https://doi.org/10.1016/0040-1951(83)90198-1
- Lespinasse, M., Pecher, A., 1986, Microfracturing and regional stress field:a study of the preferred orientations of fluid-inclusion planes in a granite from the Massif Central, France. Jounal of Structual Geology, 8, 169-180 https://doi.org/10.1016/0191-8141(86)90107-0
- Ljungner, E., 1930, Spaltentektonik und morphologie der schwedischen Skagerrak-Kueste. Bull. Geol. Inst. Univ. Uppsala, 21, 478 p
- Nishiyama, T., Chen, Y., Kusuda, Ito, T., Kaneko, K., Kita, H. and Sato, T., 2002, The examination of fracturing process subjected to triaxial compression test in Inada granite. Engineering Geology, 66, 257-269 https://doi.org/10.1016/S0013-7952(02)00046-7
- Nover, G., Buntebarth, G., Kern, H., Pohl, G., Schopper, JR., Shult, A. & Will, G., 1989, Petrophysical investigations on core samples of the KTB Scientific Drilling 1, 135-142
- Osborne, F. F., 1935, Rift, grain and hardway in some pre-Cambrian granite, Quebec. Economic Geolology, 30, 540-551 https://doi.org/10.2113/gsecongeo.30.5.540
- Peng, S., 1970, Fracture and failure of Chemsford granite. PhD. dissertation, Dept. Mineral Engineering, Standford University
- Peng, S. and Johnson, A. M., 1972, Crack growth and faulting in cylindrical specimens of chemsford granite. International Journal of Rock Mechanics and Mining Science, 9, 37-86 https://doi.org/10.1016/0148-9062(72)90050-2
- Plumb, R., Engelder, T. and Yale, D., 1984 b, Near-surface in-situ stress, 3. Correlation with microcrack fabric within the New Hampshire. Journal of Geophysical Research, 89, 9350-9364 https://doi.org/10.1029/JB089iB11p09350
- Rodrigues, F. P., 1966, A anisotrophy of granites. Proc, 1st. Soc. Rock Mech., Lisbon, 1, 721-731
- Sasada, M. and Nishoka, Y., 2004, Tsukuba and Inada areas, Field guide book. 41st CCOP Annual Session
- Seo, Y. S., Jeong, G C., Kim, J. S. and Ichikawa, Y., 2002, Microscopic observation and contact stress analysis of granite under compression. Engineering Geology, 63, 259-275 https://doi.org/10.1016/S0013-7952(01)00086-2
- Siegesmund, S., Kern, H., Vollbracht, A., 1991, The effect of oriented intragranular and boundary cracks on seismic velocities in an ultramylonite. Tectonophysics, 186, 241-251 https://doi.org/10.1016/0040-1951(91)90361-U
- Simmons, G and Richter, D., 1976, Microcrack in rock, in R. J. C. Sterns, ed., The physics and chemistry of minerals and rocks. Wieley-Interscience, Newyork, N. Y., 105137
- Solberg, P. H., 1975, The influence of microcracks on sheet jointing in four New England granites. Abstract Transamerica Geophysics Union, 56, 444
- Tapponnier, P. and Brace, W. F., 1976, Development of stress-induced microcracks in Westerly granite. International Journal of Rock Mechanics and Mining Sciences & Geomechanical Abstracts, 13, 103-111 https://doi.org/10.1016/0148-9062(76)91937-9
- Thill, T. E., Bur, T. R. and Steckley, R. C., 1973, Velocity anisotropy in dry and saturated rock spheres and its relation to rock fabric. International Journal of Rock Mechanics and Mining Sciences & Geomechanical Abstracts, 10, 535-557 https://doi.org/10.1016/0148-9062(73)90004-1
- Thill, R E., Williard, R. J. and Bur, T. R., 1969, Correlation of longitudinal velocity variation with rock fabric. Journal of Geophysical Research, 74, 4898-4909
- Tremmmel, E. and Widmann, R., 1970, Deformation properties of gneiss. Proc. 2nd Congo Int. Soc. Rock Mech., Belgrade, 1, 567-575
- Vollbrecht, A., Rust, S. and Weber, K., 1991, Development of microcracks in granites during cooling and uplift:examples from the Variscan basement in NE Bavaria, Germany. Journal of Structual Geology, 13, 787-799 https://doi.org/10.1016/0191-8141(91)90004-3
- Wise, D. U., 1964, Microjointing in basement, middle Rocky mountains of Montana and Wyoming. Geological Society of America Bulletin, 75, 287-292 https://doi.org/10.1130/0016-7606(1964)75[287:MIBMRM]2.0.CO;2
- Wise, D. U., 2005, Rift and grain in basement:thermally triggered snapshots of stress fields during erosional unroofing of the Rock mountains of Montana and Wyoming. Rock mountain geology, 40, 193-209 https://doi.org/10.2113/40.2.193