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      KCI등재 SCIE SCOPUS

      Seismic analysis of Roller Compacted Concrete (RCC) dams considering effect of viscous boundary conditions

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      https://www.riss.kr/link?id=A106643847

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      다국어 초록 (Multilingual Abstract)

      This study presents comparation of fixed and viscos boundary condition effects on three-dimensional earthquake response and performance of a RCC dam considering linear and non-linear response. For this purpose, Cine RCC dam constructed in Aydın, Turk...

      This study presents comparation of fixed and viscos boundary condition effects on three-dimensional earthquake response and performance of a RCC dam considering linear and non-linear response. For this purpose, Cine RCC dam constructed in Aydın, Turkey, is selected in applications. The Drucker-Prager material model is considered for concrete and foundation rock in the nonlinear time-history analyses. Besides, hydrodynamic effect was considered in linear and non-linear dynamic analyses for both conditions. The hydrodynamic pressure of the reservoir water is modeled with the fluid finite elements based on the Lagrangian approach. The contact-target element pairs were used to model the dam-foundation-reservoir interaction system. The interface between dam and foundation is modeled with welded contact for both fixed and viscos boundary conditions. The displacements and principle stress components obtained from the linear and non-linear analyses are compared each other for empty and full reservoir cases. Seismic performance analyses considering demand-capacity ratio criteria were also performed for each case. According to numerical analyses, the total displacements and besides seismic performance of the dam increase by the effect of the viscous boundary conditions. Besides, hydrodynamic pressure obviously decreases the performance of the dam.

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      참고문헌 (Reference)

      1 Temel Türker, "Vibration based damage identification of concrete arch dams by finite element model updating" 사단법인 한국계산역학회 13 (13): 209-220, 2014

      2 M. E. Kartal, "Three-dimensional earthquake analysis of roller-compacted concrete dams" Copernicus GmbH 12 (12): 2369-2388, 2012

      3 Parveen Khanzaei, "Thermal and Structural Response of RCC Dams During Their Service Life" Informa UK Limited 38 (38): 591-609, 2015

      4 Xiao-fei Zhang, "The development and verification of relocating mesh method for the computation of temperature field of RCC dam" Elsevier BV 40 (40): 1119-1123, 2009

      5 Raphael, J.M., "Tensile strength of concrete" 81 : 158-165, 1984

      6 Yuxi Liu, "Study on real-time construction quality monitoring of storehouse surfaces for RCC dams" Elsevier BV 49 : 100-112, 2015

      7 Ahmet Can Altunışık, "Structural behavior of arch dams considering experimentally validated prototype model using similitude and scaling laws" 사단법인 한국계산역학회 22 (22): 101-116, 2018

      8 Sema Melek Yilmazturk, "Seismic assessment of a monolithic RCC gravity dam including three dimensional dam–foundation–reservoir interaction" Elsevier BV 100 : 137-148, 2015

      9 Monteiro, G., "Seismic analysis of a roller compacted concrete gravity dam in Portugal" 2008

      10 Ghanaat, Y., "Seismic Performance and Damage Criteria for Concrete Dams"

      1 Temel Türker, "Vibration based damage identification of concrete arch dams by finite element model updating" 사단법인 한국계산역학회 13 (13): 209-220, 2014

      2 M. E. Kartal, "Three-dimensional earthquake analysis of roller-compacted concrete dams" Copernicus GmbH 12 (12): 2369-2388, 2012

      3 Parveen Khanzaei, "Thermal and Structural Response of RCC Dams During Their Service Life" Informa UK Limited 38 (38): 591-609, 2015

      4 Xiao-fei Zhang, "The development and verification of relocating mesh method for the computation of temperature field of RCC dam" Elsevier BV 40 (40): 1119-1123, 2009

      5 Raphael, J.M., "Tensile strength of concrete" 81 : 158-165, 1984

      6 Yuxi Liu, "Study on real-time construction quality monitoring of storehouse surfaces for RCC dams" Elsevier BV 49 : 100-112, 2015

      7 Ahmet Can Altunışık, "Structural behavior of arch dams considering experimentally validated prototype model using similitude and scaling laws" 사단법인 한국계산역학회 22 (22): 101-116, 2018

      8 Sema Melek Yilmazturk, "Seismic assessment of a monolithic RCC gravity dam including three dimensional dam–foundation–reservoir interaction" Elsevier BV 100 : 137-148, 2015

      9 Monteiro, G., "Seismic analysis of a roller compacted concrete gravity dam in Portugal" 2008

      10 Ghanaat, Y., "Seismic Performance and Damage Criteria for Concrete Dams"

      11 Khaled Ghaedi, "Seismic Analysis of Roller Compacted Concrete (RCC) Dams Considering Effect of Sizes and Shapes of Galleries" 대한토목학회 20 (20): 261-272, 2016

      12 Drucker, C., "Rock foundation mechanics and plastic analysis of limit design" 10 : 157-165, 1952

      13 Y. Yazdani, "Nonlinear seismic response of a gravity dam under near-fault ground motions and equivalent pulses" Elsevier BV 92 : 621-632, 2017

      14 Chen, W.F., "Nonlinear Analysis in Rock foundation Mechanics-Theory and Implementation" 1990

      15 Gaohui Wang, "Integrated duration effects on seismic performance of concrete gravity dams using linear and nonlinear evaluation methods" Elsevier BV 79 : 223-236, 2015

      16 Peng Lin, "Hazard and seismic reinforcement analysis for typical large dams following the Wenchuan earthquake" Elsevier BV 194 : 86-97, 2015

      17 U. S. Army Corps of Engineers, "Gravity Dam Design" USACE Eng Man. 88-, 1995

      18 DSI, "General Directorate of State Hydraulic Works, The XXI, Regional Directorate" 2012

      19 DSI, "General Directorate of State Hydraulic Works"

      20 Khaled Ghaedi, "Flexible Foundation Effect on Seismic Analysis of Roller Compacted Concrete (RCC) Dams Using Finite Element Method" 대한토목학회 22 (22): 1275-1287, 2018

      21 Edward L. Wilson, "Finite elements for the dynamic analysis of fluid-solid systems" Wiley 19 (19): 1657-1668, 1983

      22 Bathe K. J., "Finite Element Procedures" 1037-, 1996

      23 Luhr, D. R., "Engineering and design roller-compacted concrete" USACE 2000

      24 Zhang, S., "Effects of near-fault and far-fault ground motions on nonlinear" 53 : 217-229, 2013

      25 Muhammet Karabulut, "Earthquake response of roller compacted concrete dams including galleries" 국제구조공학회 72 (72): 141-153, 2019

      26 Kartal, E. M., "Earthquake performance evaluation of three-dimensional roller compacted concrete dams" 14 (14): 167-178, 2018

      27 U.S. Army Corps of Engineers, "Earthquake design and evaluation for civil works projects" USACE 1110-1806, 2016

      28 Clough, R., "Dynamics of Structures" 1993

      29 A.C. Altunisik, "Dynamic response of concrete gravity dams using different water modelling approaches: westergaard, lagrange and euler" 사단법인 한국계산역학회 16 (16): 429-448, 2015

      30 Vahid Lotfi, "Direct frequency domain analysis of concrete arch dams based on FE-(FE-HE)-BE technique" 사단법인 한국계산역학회 1 (1): 285-302, 2004

      31 Mohammad Alembagheri, "Damage assessment of a concrete arch dam through nonlinear incremental dynamic analysis" Elsevier BV 44 : 127-137, 2013

      32 Barış Sevim, "Construction stages analyses using time dependent material properties of concrete arch dams" 사단법인 한국계산역학회 14 (14): 599-612, 2014

      33 Mehmet Akkose, "Arrival direction effects of travelling waves on nonlinear seismic response of arch dams" 사단법인 한국계산역학회 18 (18): 179-199, 2016

      34 N. Akkas, "Applicability of general-purpose finite element programs in solid-fluid interaction problems" Elsevier BV 10 (10): 773-783, 1979

      35 D. Santillán, "An improved 1D-model for computing the thermal behaviour of concrete dams during operation. Comparison with other approaches" 사단법인 한국계산역학회 15 (15): 103-126, 2015

      36 Nakata, J.K, ""U.S. Geological Survey", Charles G. Groat, Director"

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