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국회도서관 홈으로 정보검색 소장정보 검색

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목차 1

경험적 동상 예측 모델 간의 상관관계 분석 = Correlation analysis of empirical frost heave prediction models / 이장근 ; 진현우 ; 공정 1

ABSTRACT 1

요지 1

1. 서론 1

2. 경험적 동상 예측 모델 2

2.1. Energy Conservation 2

2.2. Porous Rate Function(PRF) 모델 2

2.3. Segregation Potential(SP) 모델 3

3. 모델 검증 4

4. 결론 5

References 6

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
Predicting single-hole blast-induced fracture zone using finite element analysis Jawad Ur Rehman, Duhee Park p. 5-19

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일본 동상민감성 판정 기준에 관한 고찰 = Experimental evaluation on JGS frost susceptibility testing method 이장근, 진현우, 공정 p. 21-27

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경험적 동상 예측 모델 간의 상관관계 분석 = Correlation analysis of empirical frost heave prediction models 이장근, 진현우, 공정 p. 29-34

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참고문헌 (19건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 Akagawa, S. (1988), Experimental study of frozen fringe characteristics, Cold Regions Science and Technology, Vol. 15, pp. 209~223. 미소장
2 Azmatch, T. F., Sego, D. C., Arenson, L. U. and Biggar, K. W. (2011), Tensile strength and stress-strain behaviour of Devon silt under frozen fringe conditions, Cold Regions Science and Technology, Vol. 68, pp. 85~90. 미소장
3 Bronfenbrener, L. and Bronfenbrener, R. (2010), Modeling frost heave in freezing soil, Cold Regions Science and Technology, Vol. 61, No. 1, pp. 43~64. 미소장
4 Casagrande, A. (1931), Discussion of frost heaving, Highway Research Board, Proceedings, Vol. 11, pp. 163~172. 미소장
5 Chamberlain, E. J. (1981), Frost susceptibility of soil, review of index tests, Cold Regions Research and Engineering Lab Hanover NH, Hanover 미소장
6 Chen, S. X. (2008), Thermal conductivity of sands, Heat Mass Transfer, Vol. 44, pp. 1241~1246. 미소장
7 Jin, H., Ryu, B.H., Kang, J. and Lee, J. (2021), Engineering approach to determination of the segregation potential by the upward-step-freezing testing method, Cold Regions Science and Technology, 191, 103361-1-15. 미소장
8 Konrad, J.M. (1994), Sixteenth canadian geotechincal colloquium:Frost heave in soils: Concepts and engineering, Canadian Geotechnical Journal, 31, 223~245. 미소장
9 Michalowski, R. L. (1993), A constitutive model of saturated soils for frost heave simulations, Cold Regions Science and Technology, Vol. 22, No. 1., pp. 47~63. 미소장
10 Michalowski, R. L. and Zhu, M. (2006), Frost heave modelling using porosity rate function, International Journal for Numerical and Analytical Methods in Geomechanics, Vol. 30, pp. 703~722. 미소장
11 Lee, J., Gong, Z., Jin, H. and Ryu, B. H. (2023), Numerical model with segregation potential on frost heave and reliability assessment for silty soils, Journal of the Korean Geo-Environmental Society, Vol. 24, No. 9, pp. 41~46. 미소장
12 O’Nelli, K. (1983), The physics of mathematical frost heave models: a review, Cold Regions Science and Technology, Vol. 6, No. 3, pp. 275~291. 미소장
13 Park, D. -S., Shin, M. -B. and Seo, Y. -K (2021), Development of numerical analysis model for the calculation of thermal conductivity of thermo-syphon, Journal of the Korean Geotechnical Society, Vol. 37, No. 1, pp. 5~15 (In Korean). 미소장
14 Thomas, H. R., Cleall P., Li, Y.-C., Harris, C. and Kern-luetschg, M. (2009), Modelling of cryogenic processes in permafrost and seasonally frozen soils, Geotechnique, Vol. 59, No. 3, pp. 173~184. 미소장
15 Tice, A. R., Black, P. B. and Berg, R. L. (1989), Unfrozen water contents of undisturbed and remolded alaskan silt, Cold Regions Science and Technology, Vol. 17, No. 2, pp. 103~111. 미소장
16 Williams, P. J. and Smith, M. W. (1989), The frozen earth:fundamentals of geocryology, Cambridge University Press, Cambridge, pp. 1~306. 미소장
17 Zhang, Y. (2014), Thermal-hydro-mechanical model for freezing and thawing of soils, the University of Michigan, Michigan, pp. 1~217. 미소장
18 Zhou, J. and Li, D. (2012), Numerical analysis of coupled water, heat and stress in saturated freezing soil, Cold Regions Science and Technology, Vol. 72, pp. 43~49. 미소장
19 Zhu, M. (2006), Modeling and simulation of frost heave in frost-susceptible soils, the University of Michigan, Michigan, pp. 1~232. 미소장