Effects of Porous Sediments on Seismic Response of Concrete Gravity Dams
A boundary-element approach for the dynamic analysis of continuous systems that may consist of water, viscoelastic, and fluid-filled poroelastic zones of arbitrary shape is applied to the study of a concrete gravity dam, which is subject to ground motion and interacts with the water, foundation, and...
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Published in | Journal of engineering mechanics Vol. 123; no. 4; pp. 302 - 311 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Reston, VA
American Society of Civil Engineers
01.04.1997
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Abstract | A boundary-element approach for the dynamic analysis of continuous systems that may consist of water, viscoelastic, and fluid-filled poroelastic zones of arbitrary shape is applied to the study of a concrete gravity dam, which is subject to ground motion and interacts with the water, foundation, and bottom sediment. The present approach is very versatile and can be applied without difficulty to the analysis of problems in regions with very general geometries. Existing finite-element techniques are restricted to more particular geometries. The effects of sediment on the seismic response of gravity dams are evaluated for rigid and half-space viscoelastic foundation. The influence of the degree of saturation and the thickness of bottom sediment are analyzed. Some of the more remarkable conclusions obtained from the results of the present paper are: sediment compressibility has a very important effect on the dam response; the effects of fully saturated sediment are rather limited and results present very little changes with the sediment thickness when the foundation flexibility is taken into account; and partially saturated sediments produce significant changes in the system response, the influence of the thickness of the sediment layer being important in this case. |
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AbstractList | A boundary-element approach for the dynamic analysis of continuous systems that may consist of water, viscoelastic and fluid-filled poroelastic zones of arbitrary shape is applied to the study of a concrete gravity dam, which is subject to ground motion and interacts with the water, foundation and bottom sediment. The present approach is very versatile and can be applied without difficulty to the analysis of problems in regions with very general geometries. Existing finite-element techniques are restricted to more particular geometries. The effects of sediment on the seismic response of gravity dams are evaluated for rigid and half-space viscoelastic foundation. The influence of the degree of saturation and the thickness of bottom sediment are analyzed. Some of the more remarkable conclusions obtained from the results of the present paper are: sediment compressibility has a very important effect on the dam response; the effects of fully saturated sediment are rather limited and results present very little changes with the sediment thickness when the foundation flexibility is taken into account; and partially saturated sediments produce significant changes in the system response, the influence of the thickness of the sediment layer being important in this case. |
Author | Domínguez, José Japón, Bernardo R Gallego, Rafael |
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Cites_doi | 10.1002/eqe.4290130104 10.1061/(ASCE)0733-9399(1991)117:8(1839) 10.1061/(ASCE)0733-9399(1992)118:10(1987) 10.1121/1.389422 10.1115/1.2897229 10.1016/0955-7997(89)90030-1 10.1121/1.386692 10.1061/(ASCE)0733-9399(1986)112:7(654) 10.1002/eqe.4290150405 10.1121/1.1908239 10.1061/(ASCE)0733-9445(1990)116:11(3108) 10.1061/(ASCE)0733-9399(1991)117:8(1826) 10.1002/nme.1620350206 10.1007/978-94-015-8698-6_7 10.1061/(ASCE)0733-9399(1991)117:5(1136) |
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Keywords | Dynamic response Gravity dams Rigid foundations Porous materials Poroelasticity Concrete construction Flexible foundations Soil structure interactions Sediments Modeling Earthquake effects |
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References | Bougacha, S.; Tassoulas, J. L. 1991b; 117 Biot, M. A. 1956; 28 Cheng, A. H.-D.; Badmus, T.; Beskos, D. E. 1991; 117 Stoll, R. D.; Kan, T. K. 1981; 70 Bougacha, S.; Tassoulas, J. L. 1991a; 117 Yamamoto, T. 1983; 73 Huang, L. H. 1992; 118 Lofti, V.; Roesset, J. M.; Tassoulas, J. L. 1987; 15 Domínguez, J. 1992; 35 Fenves, G.; Chopra, A. K. 1985; 13 Medina, F.; Domínguez, J.; Tassoulas, J. L. 1990; 116 e_1_2_1_6_2 e_1_2_1_7_2 e_1_2_1_4_2 e_1_2_1_5_2 e_1_2_1_2_2 e_1_2_1_11_2 e_1_2_1_3_2 e_1_2_1_12_2 e_1_2_1_1_2 e_1_2_1_10_2 e_1_2_1_15_2 e_1_2_1_16_2 e_1_2_1_13_2 e_1_2_1_14_2 e_1_2_1_8_2 e_1_2_1_17_2 e_1_2_1_9_2 e_1_2_1_18_2 |
References_xml | – volume: 28 start-page: 168 year: 1956 article-title: Theory of propagation of elastic waves in fluid-saturated porous solid. I. Low-frequency range. publication-title: J. Acoustical Soc. Am. – volume: 117 start-page: 1826 year: 1991a article-title: Seismic analysis of gravity dams. I: Modeling of sediments. publication-title: J. Engrg. Mech., ASCE – volume: 118 start-page: 1987 year: 1992 article-title: Influence of seefloor on acoustic plane wave. publication-title: J. Engrg. Mech., ASCE – volume: 15 start-page: 463 year: 1987 article-title: A technique for the analysis of the response of dams to earthquakes. publication-title: Earthquake Engrg. Struct. Dyn. – volume: 117 start-page: 1839 year: 1991b article-title: Seismic response of gravity dams. II: Effects of sediments. publication-title: J. Engrg. Mech., ASCE – volume: 13 start-page: 13 year: 1985 article-title: Effects of reservoir bottom absorption and dam-water-foundation rock interaction on frequency response functions for concrete gravity dams. publication-title: Earthquake Engrg. Struct. Dyn. – volume: 70 start-page: 149 year: 1981 article-title: Reflection of acoustic waves at a water-sediment interface. publication-title: J. Acoustical Soc. Am. – volume: 117 start-page: 1136 year: 1991 article-title: Integral equation for dynamic poroelasticity in frequency domain with boundary element solution. publication-title: J. Engrg. Mech., ASCE – volume: 73 start-page: 1587 year: 1983 article-title: Acoustic propagation in the ocean with a poroelastic bottom. publication-title: J. Acoustical Soc. Am. – volume: 35 start-page: 307 year: 1992 article-title: Boundary element approach for dynamic poroelastic problems. publication-title: Int. J. Numer. Methods in Engrg. – volume: 116 start-page: 3108 year: 1990 article-title: Response of dams to earthquakes including effects of sediments. publication-title: J. Struct. Engrg., ASCE – ident: e_1_2_1_10_2 doi: 10.1002/eqe.4290130104 – ident: e_1_2_1_3_2 doi: 10.1061/(ASCE)0733-9399(1991)117:8(1839) – ident: e_1_2_1_11_2 doi: 10.1061/(ASCE)0733-9399(1992)118:10(1987) – ident: e_1_2_1_18_2 doi: 10.1121/1.389422 – ident: e_1_2_1_17_2 – ident: e_1_2_1_6_2 doi: 10.1115/1.2897229 – ident: e_1_2_1_14_2 doi: 10.1016/0955-7997(89)90030-1 – ident: e_1_2_1_16_2 doi: 10.1121/1.386692 – ident: e_1_2_1_4_2 doi: 10.1061/(ASCE)0733-9399(1986)112:7(654) – ident: e_1_2_1_8_2 – ident: e_1_2_1_13_2 doi: 10.1002/eqe.4290150405 – ident: e_1_2_1_1_2 doi: 10.1121/1.1908239 – ident: e_1_2_1_15_2 doi: 10.1061/(ASCE)0733-9445(1990)116:11(3108) – ident: e_1_2_1_2_2 doi: 10.1061/(ASCE)0733-9399(1991)117:8(1826) – ident: e_1_2_1_7_2 doi: 10.1002/nme.1620350206 – ident: e_1_2_1_9_2 doi: 10.1007/978-94-015-8698-6_7 – ident: e_1_2_1_12_2 – ident: e_1_2_1_5_2 doi: 10.1061/(ASCE)0733-9399(1991)117:5(1136) |
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Snippet | A boundary-element approach for the dynamic analysis of continuous systems that may consist of water, viscoelastic, and fluid-filled poroelastic zones of... A boundary-element approach for the dynamic analysis of continuous systems that may consist of water, viscoelastic and fluid-filled poroelastic zones of... |
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SubjectTerms | Applied sciences Buildings. Public works Dams and subsidiary installations Exact sciences and technology Geotechnics Hydraulic constructions Structure-soil interaction TECHNICAL PAPERS |
Title | Effects of Porous Sediments on Seismic Response of Concrete Gravity Dams |
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