1 |
Acaroglu, O. (2011), "Prediction of thrust and torque requirements of TBMs with fuzzy logic models", Tunn. Undergr. Sp. Technol., 26(2), 267-275.
DOI
|
2 |
Acaroglu, O., Ozdemir, L. and Asbury, B. (2008), "A fuzzy logic model to predict specific energy requirement for TBM performance prediction", Tunn. Undergr. Sp. Technol., 23(5), 600-608.
DOI
|
3 |
Astm D2938-95 (1995), Standard Test Method for Unconfined Compressive Strength of Intact Rock Core Specimens, West Conshohocken, Pennsylvania, U.S.A.
|
4 |
ASTM D4543-08 (2008), Standard Practices for Preparing Rock Core as Cylindrical Test Specimens and Verifying Conformance to Dimensional and Shape Tolerances, West Conshohocken, Pennsylvania, U.S.A.
|
5 |
ASTM D5731-08 (2008), Standard Test Method for Determination of the Point Load Strength Index of Rock and Application to Rock Strength Classifications, West Conshohocken, Pennsylvania, U.S.A.
|
6 |
ASTM D7012-14 (2014), Standard Test Methods for Compressive Strength and Elastic Moduli of Intact Rock Core Specimens under Varying States of Stress and Temperatures, ASTM International
|
7 |
Chen, J., Du, C., Jiang, D., Fan, J. and He, Y. (2016), "The mechanical properties of rock salt under cyclic loadingunloading experiments", Geomech. Eng., 10(3), 325-334.
DOI
|
8 |
Cigla, M. (2006), "Prediction and modeling of disc cutting forces for hard rock excavation based on assessment of punch penetration index for quantifying rock toughness and resistance to chipping", Ph.D. Dissertation, Colorado School of Mines, Golden, Colorado, U.S.A.
|
9 |
Deere, D.U. and Miller, R.P. (1966), Engineering Classification and Index Properties for Intact Rocks, Kirtland Air Force Base, New Mexico, U.S.A.
|
10 |
Ghassemi, A. (2012), "A review of some rock mechanics issues in geothermal reservoir development", Geotech. Geol. Eng., 30(3), 647-664.
DOI
|
11 |
Goetze, C. and Evans, B. (1979), "Stress and temperature in the bending lithosphere as constrained by experimental rock mechanics", Geophys. J., 59(3), 463-478.
DOI
|
12 |
Horsrud, P. (2001), "Estimating mechanical properties of shale from empirical correlations", SPE Drill. Complet., 16(2), 68-73.
DOI
|
13 |
Jing, L. (2003), "A review of techniques, advances and outstanding issues in numerical modelling for rock mechanics and rock engineering", J. Rock Mech. Min. Sci., 40(3), 283-353.
DOI
|
14 |
Kahraman, S. (2001), "Evaluation of simple methods for assessing the uniaxial compressive strength of rock", J. Rock Mech. Min. Sci., 38(7), 981-994.
DOI
|
15 |
Kim, E. (2015), "Effect of skew angle on main precursor of frictional ignition in bench-scale simulation of excavation processes", J. Rock Mech. Min. Sci., 80, 101-106.
|
16 |
Kim, E. and Changani, H. (2016), "Effect of water saturation and loading rate on the mechanical properties of Red and Buff Sandstones", J. Rock Mech. Min. Sci., 88, 23-28.
|
17 |
Kim, E. and Hunt, R. (2017), "A public website of rock mechanics database from Earth mechanics institute (EMI) at Colorado School of Mines (CSM)", Rock Mech. Rock Eng., 50(12), 3245-3252.
DOI
|
18 |
Kim, E. and Colvin, S. (2012), "A preliminary full scale cutting test to find pre-cursor parameters of frictional ignition", Proceedings of the 14th US Mine Ventilation Symposium, Salt Lake City, Utah, U.S.A., June.
|
19 |
Kim, E., Rostami, J. and Swope, C. (2012a), "Full scale linear cutting experiment to examine conical bit rotation", J. Min. Sci., 48(5), 882-895.
DOI
|
20 |
Kim, E., Rostami, J., Swope, C. and Colvin, S. (2012b), "Study of conical bit rotation using full-scale rotary cutting experiments", J. Min. Sci., 48(4), 717-731.
DOI
|
21 |
Marinos, V., Prountzopoulos, G., Fortsakis, P., Koumoutsakos, D., Korkaris, K. and Papouli, D. (2012), "Tunnel information and analysis system: A geotechnical database for tunnels", Geotech. Geol. Eng., 31(3), 891-910.
DOI
|
22 |
Perras, M. and Diederichs, M. (2014), "A review of the tensile strength of rock: Concepts and testing", Geotech. Geol. Eng., 32(2), 525-546.
DOI
|
23 |
Schieber, J., Krinsley, D. and Riciputi, L. (2000), "Diagenetic origin of quartz silt in mudstones and implications for silica cycling", Nature, 406(6799), 981-985.
DOI
|
24 |
Schumacher, F.P. and Kim, E. (2013), "Modeling the pipe umbrella roof support system in a western US underground coal mine", J. Rock Mech. Min. Sci., 60, 114-124.
|
25 |
Schumacher, F.P. and Kim, E. (2014), "Evaluation of directional drilling implication of double layered pipe umbrella system for the coal mine roof support with composite material and beam element methods using FLAC3D", J. Min. Sci., 50(2), 336-349.
|
26 |
Yagiz, S. (2009), "Assessment of brittleness using rock strength and density with punch penetration test", Tunn. Undergr. Sp. Technol., 24(1), 66-74.
|
27 |
Sperl, J. and Trckova, J. (2008), "Permeability and porosity of rocks and their relationship based on laboratory testing", Acta Geodyn. Geomater., 5(1), 41-47.
|
28 |
Steinhauser, G., Sterba, J.H., Bichler, M. and Huber, H. (2006), "Neutron activation analysis of Mediterranean volcanic rocks-An analytical database for archaeological stratigraphy", Appl. Geochem., 21(8), 1362-1375.
DOI
|
29 |
Vutukuri, V.S., Lama, R.D. and Saluja, S.S. (1974), Handbook on Mechanical Properties of Rocks: Testing Techniques and Results, Trans Tech Publications, Clausthal, Germany.
|
30 |
Yagiz, S. (2008), "Utilizing rock mass properties for predicting TBM performance in hard rock condition", Tunn. Undergr. Sp. Technol., 23(3), 326-339.
DOI
|
31 |
Yagiz, S. and Gokceoglu, C. (2010), "Application of fuzzy inference system and nonlinear regression models for predicting rock brittleness", Expert Syst. Appl., 37(3), 2265-2272.
|
32 |
Yagiz, S., Gokceoglu, C., Sezer, E. and Iplikci, S. (2009), "Application of two non-linear prediction tools to the estimation of tunnel boring machine performance", Eng. Appl. Artif. Intel., 22(4-5), 808-814.
DOI
|
33 |
Zang, A., Stephansson, O., Heidbach, O. and Janouschkowetz, S. (2012), "World stress map database as a resource for rock mechanics and rock engineering", Geotech. Geol. Eng., 30(3), 625-646.
DOI
|