Study on improved procedure for determination of three dimensional distributions of the initial rock stresses. 3
Creators
- 1. Sojo Univ., Kumamoto (Japan). Faculty of Engineering
- 2. Hokkaido Univ., Sapporo (Japan). Graduate School of Engineering
- 3. Tohoku Univ., Sendai (Japan). Graduate School of Engineering
- 4. Kumamoto Univ., Kumamoto (Japan). Graduate School of Science and Technology
- 5. Mining and Materials Processing Inst. of Japan, Tokyo (Japan)
Description
In the fiscal year of 2003, our committee achieved the following work items during the contract period, from September 3rd, 2003 to February 13th, 2004. The more accurate numerical data with respect to the geological/geometrical conditions including the fault were provided from Tono Geoscience Center and the numerical models by Finite Element Method (FEM), Finite Difference Method (FDM) and Boundary Element Method (BEM) were built taking those strata data into account. For small region modeling by FEM, three layers models, Shoumasama model and Tono-Shoumasama model, as well as Tono Mine model, were constructed, and each strain state at the far field boundary was determined. In order to get better agreement in local stress states with the measured values, a far field strain state was determined to the modified model in which material properties of upper granite and lower granite are different. In intermediate region modeling by FDM, actual strata data was taken into account, whereas strata boundary was assumed to be horizontal in former modeling, and far field stress field was analyzed. Intermediate region modeling by BEM was also carried out and far field stress state was determined. In wide region modeling by FEM, the fault was build in the model and fault slip was taken into account, and evaluation of strain state at the far field boundary was carried out for inhomogeneous rock including fault. It was proposed to output three-dimensional distribution of the maximum shear stress coefficients in order to advance three-dimensional modeling. It will make clear effect of shape, scale and property of the fault on stress state characteristic. This report describes minutely the results of the studies mentioned above. (author)
Availability note (English)
Available from JST Library (JST: Japan Science and Technology Agency), P.O. Box 10 Hikarigaoka, Tokyo 179-9810 Japan, FAX: +81-3-3979-4781 (domestic), FAX:+81-3-3979-2210 (oversea)Additional details
Publishing Information
- Imprint Pagination
- 123 p.
- Report number
- JNC-TJ--7400-2004-011
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 36090482
- Subject category
- S58: GEOSCIENCES;
- Resource subtype / Literary indicator
- Non-conventional Literature
- Descriptors DEI
- BOUNDARY ELEMENT METHOD; FINITE ELEMENT METHOD; GEOLOGIC FAULTS; GEOLOGIC MODELS; GEOLOGIC STRUCTURES; GRANITES; JAPAN; ROCK MECHANICS; STRAINS; STRESSES; THREE-DIMENSIONAL CALCULATIONS; UNDERGROUND FACILITIES
- Descriptors DEC
- ASIA; CALCULATION METHODS; DEVELOPED COUNTRIES; FINITE ELEMENT METHOD; GEOLOGIC FRACTURES; GEOLOGIC STRUCTURES; IGNEOUS ROCKS; MATHEMATICAL SOLUTIONS; MECHANICS; NUMERICAL SOLUTION; PLUTONIC ROCKS; ROCKS