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The Quantitative Seismic Analysis of a Precast Reinforced Concrete Frame Hall and the Establishment of Retrofitting Solutions. Part I – The Dynamic Analysis of the Existing Structural System

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19 févr. 2025
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*** Cod de proiectare seismică”, Partea I, Prevederi de proiectare pentru clădiri, Indicativ P100-1, Ministerul Dezvoltării Regionale și Administrației Publice, Mai 2013. Search in Google Scholar

*** Prevederi de completare și modificare a reglementării tehnice P100-1/2013, Ministerul Dezvoltării Regionale și Administrației Publice, 2019. Search in Google Scholar

*** Cod de proiectare seismică”, Partea a III-a - Prevederi pentru evaluarea seismică a clădirilor existente, Indicativ P100-3/2019, Monitorul Oficial al României nr. 1003 bis, 13 decembrie 2019. Search in Google Scholar

*** Eurocod 2: Proiectarea structurilor de beton, Partea 1-1: Reguli generale și reguli pentru clădiri, Indicativ SR EN 1992-1-1, ASRO, București, 2006. Search in Google Scholar

*** Eurocod 8: Proiectarea structurilor pentru rezistența la cutremur, Partea 1: Reguli generale, acțiuni seismice și reguli pentru clădiri, Indicativ SR EN 1998-1, ASRO, București, 2004. Search in Google Scholar

*** Eurocod 8: Proiectarea structurilor pentru rezistența la cutremur, Partea 1: Reguli generale, acțiuni seismice și reguli pentru clădiri, Anexa Națională, Indicativ SR EN 1998-1/NA, ASRO, București, 2008. Search in Google Scholar

*** FIB 43: Structural connections for precast concrete building, International Federation for Structural Concrete, Switzerland, February 2008. Search in Google Scholar

*** FIB 27: Seismic design of precast concrete building structures, International Federation for Structural Concrete, Switzerland, October 2003. Search in Google Scholar

*** EERI 1989, “Armenia Earthquake Reconnaissance Report”, Earthquake Spectra, Earthquake Engineering Research Institute, Special Supplement, August 1989. Search in Google Scholar

*** EERI 2000, “Kocaeli, Turkey, Earthquake of August 17, 1999 Reconnaissance Report”, Earthquake Spectra, Earthquake Engineering Research Institute, Supplement to Volume 16, December 2000. Search in Google Scholar

Agha W., Almorad W.A., Umamaheswari N., Alhelwani A., Study the seismic response of reinforced concrete high-rise building with dual framed-shear wall system considering the effect of soil structure interaction, Materials Today: Proceedings 43 (2021) 2182-2188, doi: https://doi.org/10.1016/j.matpr.2020.12.111. Search in Google Scholar

Ali I.H., Almamoori A.H., Rasoul Z.M.R.A., Performance of simply supported spliced reinforced concrete one-way slab with different types of concrete in splice region, Materials Today: Proceedings XXX (2022) xxx, doi: https://doi.org/10.1016/j.matpr.2021.08.112. Search in Google Scholar

Budescu M., Ciongradi I., Inginerie Seismică, Ed. Politehnium, Iași, 2014. Search in Google Scholar

Caldentey A.P., Diego Y.G., Fernandez F.A., Santos A.P., Testing robustness: A full-scale experimental test on a two-storey reinforced concrete frame with solid slabs, Engineering Structures 240 (2021) 112411, doi: https://doi.org/10.1016/j.engstruct.2021.112411. Search in Google Scholar

ETABS software, http://www.csiamerica.com. Search in Google Scholar

Ghayoumian G., Emami A.R., A multi-direction pushover procedure for seismic response assessment of low-to-medium-rise modern reinforced concrete buildings with special dual system having torsional irregularity, Structures 28 (2020) 1077-1107, doi: https://doi.org/10.1016/j.istruc.2020.09.031. Search in Google Scholar

Gkournelos P.D., Triantafillou T.C., Bournas D.A., Seismic upgrading of existing reinforced concrete buildings: A state-of-the-art review, Engineering Structures 240 (2021) 112273, doi: https://doi.org/10.1016/j.engstruct.2021.112273. Search in Google Scholar

Gulec A., Kose M.M., Gogus M.T., Experimental investigation of flexural performance of T-section prefabricated cage reinforced beams with self-compacting concrete, Structures 33 (2021) 2190-2197, doi: https://doi.org/10.1016/j.istruc.2021.05.074. Search in Google Scholar

Hassan W.M., Farag M., Seismic performance of steel-reinforced concrete composite columns in existing and modern construction, Soil Dynamics and Earthquake Engineering 151 (2021) 106945, doi: https://doi.org/10.1016/j.soildyn.2021.106945. Search in Google Scholar

Hu B., Lv H.L., Kundu T., Experimental study on seismic behavior of reinforced concrete frame in primary and middle schools with different strengthening methods, Construction and Building Materials 217 (2019) 473-486, doi: https://doi.org/10.1016/j.conbuildmat.2019.05.040. Search in Google Scholar

Huang W., Hu G., Zhang J., Experimental study on the seismic performance of new precast concrete beam-column joints with replaceable connection, Structures 35 (2022) 856-872, doi: https://doi.org/10.1016/j.istruc.2021.11.050. Search in Google Scholar

Imanpour A., Tremblay R., Leclerc M., Siguier R., Toutant G., Minouei Y.B., You S., Development and application of multi-axis hybrid simulation for seismic stability of steel braced frames, Engineering Structures 252 (2022) 113646, doi: https://doi.org/10.1016/j.engstruct.2021.113646. Search in Google Scholar

Kant R., Agha W., Thakur M.S., Umamaheswari N., Comparative study on seismic performance of steel-concrete composite structure without and with buckling – restrained braces, Materials Today: Proceedings XXX (2022) xxx, doi: https://doi.org/10.1016/j.matpr.2021.11.461. Search in Google Scholar

Kassem M.M., Nazri F.M., Farsangi E.N., Ozturk B., Development of a uniform seismic vulnerability index framework for reinforced concrete building typology, Journal of Building Engineering 47 (2022) 103838, doi: https://doi.org/10.1016/j.jobe.2021.103838. Search in Google Scholar

Li S., Zuo Z., Zhai C., Xu S., Xie L., Shaking table test on the collapse process of a three-story reinforced concrete frame structure, Engineering Structures 118 (2016) 156-166, doi: http://dx.doi.org/10.1016/j.engstruct.2016.03.032. Search in Google Scholar

Li Z., Gan D., Cyclic behavior and strength evaluation of RC columns with dune sand, Journal of Building Engineering 47 (2022) 103801, doi: https://doi.org/10.1016/j.jobe.2021.103801. Search in Google Scholar

Lin K., Lu X., Li Y., Guan H., Experimental study of a novel multi-hazard resistant prefabricated concrete frame structure, Soil Dynamics and Earthquake Engineering 119 (2019) 390-407, doi: https://doi.org/10.1016/j.soildyn.2018.04.011. Search in Google Scholar

Liu J., Hu H., Li J., Chen Y.F., Zhang L., Flexural behavior of assembled monolithic long-span composite beams with CIP reinforced concrete layer atop precast hollow core slabs, Journal of Building Engineering 46 (2022) 103791, doi: https://doi.org/10.1016/j.jobe.2021.103791. Search in Google Scholar

Lu Y.T., Guo Z.X., Liu Y., Basha S.H., Performance of prefabricated RC column with replaceable Column-Base connection under cyclic lateral loads, Engineering Structures 240 (2021) 112343, doi: https://doi.org/10.1016/j.engstruct.2021.112343. Search in Google Scholar

Lu Z., Wu B., Yang S., Hou J., Ji Z., Li Y., Huang J., Zhang M., Experimental study on flexural behaviour of prefabricated concrete beams with double-grouted sleeves, Engineering Structures 248 (2021) 113237, doi: https://doi.org/10.1016/j.engstruct.2021.113237. Search in Google Scholar

Lv X., Yu Z., Shan Z., Seismic behaviour of frame structures with assembly of prefabricated concrete beam, Journal of Building Engineering 40 (2021) 102765, doi: https://doi.org/10.1016/j.jobe.2021.102765. Search in Google Scholar

Markou G., A new method of seismic retrofitting cost analysis and effectiveness for reinforced concrete structures, Engineering Structures 246 (2021) 113083, doi: https://doi.org/10.1016/j.engstruct.2021.113083. Search in Google Scholar

Mitchell D., Adams J., DeVall R.H., Lo R.C., Weichert D., Lessons from the 1985 Mexican Earthquake, Canadian Journal of Civil Engineering 19 (5) (1986) 535-557, doi: 10.1139/l86-081. Search in Google Scholar

Mkrtychev O.V., Busalova M.S., Calculation of reinforced concrete structures with a set seismic stability level on an earthquake, Procedia Engineering 153 (2016) 475-482, doi: 10.1016/j.proeng.2016.08.161. Search in Google Scholar

Pang B., Wang F., Yang J., Nyunn S., Azim I., Performance of slabs in reinforced concrete structures to resist progressive collapse, Structures 33 (2021) 4843-4856, doi: https://doi.org/10.1016/j.istruc.2021.04.092. Search in Google Scholar

Park R., Paulay T., Reinforced Concrete Structures, John Wiley & Sons, New York, 1975. Search in Google Scholar

Postelnicu T., Proiectarea structurilor de beton armat în zone seismice, MarLink, București, 2012. Search in Google Scholar

Saatcioglu M., Mitchell D., Tinawi R., Gardner N.J., Gillies A.G., Ghobarah A., Anderson D.L., Lau D., The August 17, 1999 Kocaeli (Turkey) Earthquake – Damage to Structures, Canadian Journal of Civil Engineering 28 (4) (2001) 715-737, doi: 10.1139/cjce-28-4-715. Search in Google Scholar

Sococol I., Mihai P., Petrescu T.C., Nedeff F., Nedeff V., Agop M., Luca B.I., Numerical Study Regarding the Seismic Response of a Moment-Resisting (MR) Reinforced Concrete (RC) Frame Structure with Reduced Cross-Sections of the RC Slabs, Buildings 12 (10) (2022) 1525, doi: 10.3390/buildings12101525. Search in Google Scholar

Spina D., Acunzo G., Fiorini N., Mori F., Dolce M., A probabilistic simplified Seismic Model from Ambient Vibrations (SMAV) of existing reinforced concrete buildings, Engineering Structures 238 (2021) 112255, doi: https://doi.org/10.1016/j.engstruct.2021.112255, Search in Google Scholar

Stratan A., Dinamica structurilor și inginerie seismică. Note de curs, Timișoara, 2014. Search in Google Scholar

Taheri A., Tasnimi A.A., Moghadam A.S., Experimental investigation on the seismic behavior and damage states of reinforced high strength concrete columns, Structures 27 (2020) 163-173, doi: https://doi.org/10.1016/j.istruc.2020.05.037. Search in Google Scholar

Tian L., Bai C., Wang Y., Zhong W., Li L., Shi X., Yu J., Chang Y., Seismic performance of concrete beams with ends mbedded with perforated H-shaped steel and reinforced by engineered cementitious composite, Journal of Building Engineering 45 (2022) 103562, doi: https://doi.org/10.1016/j.jobe.2021.103562. Search in Google Scholar

c V., Dan D., Florut S.C., Stoian V., Experimental investigations on the seismic behavior of composite steel concrete coupled shear walls with central openings, Structures 33 (2021) 878-896, doi: https://doi.org/10.1016/j.istruc.2021.04.074. Search in Google Scholar

Wang F., Shi Q.X., Wang P., Seismic behaviour of reinforced concrete frame structures with all steel assembled Q195 low yield buckling restrained braces, Structures 30 (2021) 756-773, doi: https://doi.org/10.1016/j.istruc.2021.01.051. Search in Google Scholar

Xu C., Deng J., Peng S., Li C., Seismic fragility analysis of steel reinforced concrete frame structures based on different engineering demand parameters, Journal of Building Engineering 20 (2018) 736-749, doi: https://doi.org/10.1016/j.jobe.2018.09.019. Search in Google Scholar

Zhang A., Ma X., Yu Y., Test on structural behavior of prefabricated RC flat slab to square steel tube column, Journal of Building Engineering 47 (2022) 103789, doi: https://doi.org/10.1016/j.jobe.2021.103789. Search in Google Scholar