1. Levin M., "Determination of rock mass properties by in situ tests in the Gilboa pumped storage project", Vietrock2015, 12-13 March 2015, Hanoi, Vietnam )2015( S041. ## 2. Palmström A., Singh R., "The deformation modulus of rock masses- comparisons between in situ tests and indirect estimates", Tunnelling and Underground Space Technology, vol. 16 (3) (2001) 115-131. ## 3. Cundall P. A., Pierce M. E., Mas Ivars D., "Quantifying the size effect of rock mass strength", SHIRMS 2008, Australian Centre for Geomechanics Perth, Western Australia, vol. 2 (2008) 3-15. ## 4. Mas Ivars D., Pierce M. E., Darcel C., Reyes-Montes J., Potyondy D. O., Young R. P., Cundall P. A., "The synthetic rock mass approach for jointed rock mass modeling", International Journal of Rock Mechanics & Mining Sciences, vol. 48(2) (2011) 219-244. ## 5. Esmaieli K., Hadjigeorgiou J., Grenon, M., "Estimating geometrical and mechanical REV based on synthetic rock mass models at Brunswick Mine", International Journal of Rock Mechanics and Mining Sciences, vol. 47 (6) (2010) 915-926. ## 6. Wang P., Yang T., Xu T., Cai M., Li C., "Numerical analysis on scale effect of elasticity, strength and failure patterns of jointed rock masses", Geosciences Journal, vol. 20(4) (2016) 539-549. ## 7. Yoshinaka R., Osada M., Park H., Sasaki T., Sasaki K., "Practical determination of mechanical design parameters of intact rock considering scale effect", Engineering Geology, vol. 96 (2008) 173-186## 8. Bahaaddini M., Hagan P. C., Mitra R., Hebblewhite B. K., "Scale effect on the shear behaviour of rock joints based on a numerical study", Engineering Geology, vol. 181 (2014) 212-23. ## 9. Darlington W. J., Ranjith P. G., "The effect of specimen size on strength and other properties in laboratory testing of rock and rock-like cementitious brittle materials", Rock Mechanics and Rock Engineering, vol. 44 (2011) 513-529. ## 10. Masoumi M., "Investigation into the mechanical behaviour of intact rock at different sizes", PhD thesis, UNSW Australia (2013). ## 11. Roshan H., Masoumi H., Hagan P.C., "On size-dependent uniaxial compressive strength of sedimentary rocks in reservoir geomechanics", ARMA 2016, Houston, Texas (2016). ## 12. Carneiro F.L.L.B., "A new method to determine the tensile strength of concrete", Proceedings of the 5th meeting of the Brazilian Association for Technical Rules (Associac¸a˜o Brasileire de Normas Te´cnicas ABNT), 3d. Section (1943). ## 13. Akazawa T., "New test method for evaluating internal stress due to compression of concrete: the splitting tension test", Journal of Japan Society if Civil Engineers, vol. 29 (1943) 777-787. ## 14. Li D., Wong L.N.Y., "The brazilian disc test for rock mechanics applications: review and new insights", Rock Mechanics and Rock Engineering, vol. 46 (2013) 269-287. ## 15. Briševac Z., Kujundžić T., Čajić S., "Current cognition of rock tensile strength testing by brazilian test", The Mining-Geology-Petroleum Engineering Bulletin (2015) 101-114. ## 16. ASTM, "Standard test method for splitting tensile strength of intact rock core specimens: ASTM D 3967", ASTM International, United States (2008). ## 17. Ulusay R., Hudson J. A., "The complete ISRM suggested methods for rock characterization, testing and monitoring: 1974-2006", International Society of Rock Mechanics. Compilation arranged by the ISRM Turkish National Group (2007). ## 18. Weibull W., "A statistical theory of the strength of materials", Proceeding of Royal Swedish Academy of Engineering Science, Stockholm, Sweden, (1939) 1-45. ## 19. Bazant Z. P., "Scaling of quasibrittle fracture: asymptotic analysis", International Journal of Fracture, vol. 83 (1997) 19-40. ## 20. Bazant Z.P., Xi Y., "Statistical size effect in quasi-brittle structures: II. Nonlocal theory", Journal of Engineering Mechanics, vol. 117 (11) (1991) Paper No. 26347. ## 21. Van Vliet M. R. A., Van Mier J. G.M., "Experimental investigation of size effect in concrete and sandstone under uniaxial tension", Engineering Fracture Mechanics, vol. 65 (2000) 165-188. ## 22. Wong T. F., Wong R. H. C., Chau K. T., Tang C. A., "Microcrack statistics, Weibull distribution and micromechanical modeling of compressive failure in rock", Mechanics of Materials, vpl. 28 (2006) 664-681. ## 23. Zhang Q., Zhu H., Zhang L., Ding X., "Study of scale effect on intact rock strength using particle flow modeling", International Journal of Rock Mechanics and Mining Sciences, vol. 48 (2011) 1320-1328. ## 24. Griffith A. A., "The Theory of Rupture", In proceeding of 1st International Congress of Applied Mechanics, Delf, Netherlands (1924). ## 25. Hudson J. A., Crouch S. L., Fairhurst C., "Soft, stiff and servo-controlled testing machines: A review with reference to rock failure", Engineering Geology, vol. 6 (1972) 155-189. ## 26. Abou-Sayed A. S., Brechtel C. E., Terra T. I., "Experimental investigation of the effects of size on the uniaxial compressive strength of cedar city quartz diorite", In proceeding of The 17th U.S. Symposium on Rock Mechanics, Utah, USA (1976) ARMA-76-0527. ## 27. Bazant Z. P., Kazemi M. T., Hasegawa T., "Size effect in brazilian splitcylinder tests: measurements and fracture analysis", ACI Material Journal, vol. 88 (1991) 325-332. ## 28. Carpinteri A., "Fractal nature of material microstructure and size effects on apparent mechanical properties", Mechanics of Materials, vol. 18, (1994) 89-101. ## 29. Borodich F. M., "Fractals and fractal scaling in fracture mechanics", International Journal of Fracture, vol. 95 (1999) 239-259. ## 30. Carpinteri A., Chiaia B., Ferro G., "Size effects on nominal tensile strength of concrete structures: multifractality of material ligaments and dimensional transition from order to disorder", Materials and Structures, vol. 28 (1995) 311-317. ## 31. Carpinteri A., Ferro G., "Size effects on tensile fracture properties: a unified explanation based on disorder and fractality of concrete microstructure", Materials and Structures, vol. 27(10), (1994) 563-571. ## 32. Hondros G., "The evaluation of Poisson’s ratio and the modulus of materials of a low tensile resistance by the Brazilian (indirect tensile) test with particular reference to concrete", Australian Journal of Applied Science, vol. 10(3) (1959) 243-268. ## 33. Lundborg N., "The strength-size relation of granite", International Journal of Rock Mechanics and Mining Sciences, vol. 4 (1967) 269-272. ## 34. Wijk G., Rehbinder G., Logdstrom G., "Relation between the uniaxial tensile strength and the sample size for Bohus granite", Rock Mechanics vol. 10 (1978) 201-219. ## 35. Sabnis G. M., Mirza S. M., "Size effects in model concretes?", Journal of Structural Division, ASCE 105 (ST6) (1979) 1007-1020. ## 36. Chen W. F., Yuan R. L., "Tensile strength of concrete: the double punch tests", Journal of the Structural Division, ASCE 106 (ST8) (1980) 1673-1693. ## 37. Hasegawa T., Shioya T., Okada T., "Size effect on splitting tensile strength of concrete", Proceedings Japan Concrete Institute 7th Conference, June 1985 (1985) 309-312. ## 38. Newman D. A., Bennett D. G., "The effect of specimen size and stress rate for the Brazilian test-a statistical analysis", Rock Mechanics and Rock Engineering, vol. 23 (2) (1990) 123-134. ## 39. Guinea G. V., Elices M., Planas J., "Assessment of the tensile strength through size effect curves", Journal of Engineering Fracture Mechanics, vol. 65 (2000) 189-207. ## 40. Rocco C., Guinea G. V., Planas J., Elices M., "Size effect and boundary conditions in the Brazilian test: experimental verification", Materials and Structures, vol. 32 (1999) 210-217. ## 41. Rocco C., Guinea G. V., Planas J., Elices M., "Review of the splitting-test standards from a fracture mechanics point of view", Cement and Concrete Research, vol. 31 (2001) 73-82. ## 42. Thuro K., Plinninger R. J., Zah S., Schutz S., "Scale effects in rock strength properties. Part 1: Unconfined compressive test and Brazilian test", ISRM regional symposium, EUROCK 2001, Finland, (2001) 169-174. ## 43. Kadlecek V., Modry S., "Size effect of test specimens on tensile splitting strength of concrete: general relation", Journal of Materials and structures, vol. 35, (2002) 28-34. ## 44. YuY., Yin J., Zhong Z., "Shape effects in the Brazilian tensile strength test and a 3D FEM correction", International Journal of Rock Mechanics and Mining Sciences, vol.43(4) (2006) 623-627. ## 45. Es-Saheb M. H., Albedah A., Benyahia F., "Diametral compression test: validation using finite element analysis", The International Journal of Advanced Manufacturing Technology, vol. 57 (5-8) (2011) 501-509. ## 46. Tavallali A., Vervoort A., "Behaviour of layered sandstone under Brazilian test conditions: Layer orientation and shape effects", Journal of Rock Mechanics and Geotechnical Engineering vol.5, (2013) 366-377. ## 47. Allena R. Cluzel C., "Identification of anisotropic tensile strength of cortical bone using Brazilian test", Journal of the Mechanical Behavior of Biomedical Materials vol.38 (2014) 134-142. ## 48. Kaklis K. N., Maurigiannakis S. P., Agioutantis Z. G., Stathogianni F. K., Steiakakis E. K., "Experimental investigation of the size effect on the mechanical properties on two natural building stones", 8th GRACM International Congress on Computational Mechanics, 12-15 July 2015, Volos, Greece (2015). ## 49. Lin H., Xiong W., Yan Q., "Three-dimensional effect of tensile strength in the standard Brazilian test considering contact length", Geotechnical Testing Journal, vol. 39(1) (2016) 137-143. ## 50. Sabih G., Paneru L. P., Tarefder R. A., "Simulation of the Brazilian test on concrete discs to verify the size effect law", Geo-China 2016 (2016) 18-25. ## 51. Khosravi A., Simon R., Rivard P., "The shape effect on the morphology of the fracture surface induced by the Brazilian test", International Journal of Rock Mechanics and Mining Sciences vol. 93 (2017) 201-209. ## 52. Li, Y., "A review of shear and tensile strengths of the Malan Loess in China", Engineering Geology, (2017) doi: 10.1016/j., enggeo (2017) 02.023. ## 53. Sharrock G. B., Akram M. S., Mitra R., "Application of synthetic rock mass modeling to estimate the strength of jointed sandstone", 43rd U.S. Rock Mechanics Symposium & 4th U.S. - Canada Rock Mechanics Symposium, Asheville, North Carolina (2009). ## 54. Hobbs D. W., "The tensile strength of rocks, International Journal of Rock Mechanics", Mining Sciences and Geomechanical Abstracts, vol. 1(3) (1964) 385-396. ## 55. Hoek E., Brown E., "Underground excavations in rock", Hertford, London (1980). ##