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Articles 4501 - 4530 of 4581
Full-Text Articles in Engineering
Design Concept Of Pile Foundation To Lateral Load Considering Soil-Pile-Structure Interaction, Soichi Kawamura, Akio Ikeda
Design Concept Of Pile Foundation To Lateral Load Considering Soil-Pile-Structure Interaction, Soichi Kawamura, Akio Ikeda
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
To rationalize the aseismic design of pile foundations it is essential to make clear the load conditions applied to piles. This paper describes 1) the results of earthquake motion measurement carried out in and around a pile-supported building, 2) the simulation using soil-pile structure lumped mass interaction model and 3) case study of typical combination models of structure and soil. Fundamentally both the seismic loads of super-structure and the forced deformation by surrounding soil should be applied to piles as external loads. In the coupling and evaluation of these loads the dynamic interaction among soil, pile and structure plays a …
Probabilistic Response Of Multi-Support Structures On Non-Uniform Soil Conditions, S. E. Ruiz, L. Esteva
Probabilistic Response Of Multi-Support Structures On Non-Uniform Soil Conditions, S. E. Ruiz, L. Esteva
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Conventional seismic design criteria take values of internal forced and other response variables as those provided by an envelope to the values of those variables produced by in-phase motion of all supports. In structures extended in plan, such as long bridges, or founded on heterogeneous formations or irregular topography, such as dams, differences in ground motion among different supports may give to differences as compared with those produced by conventional analysis. In this paper ground motion is represented as stochastic process with evolutionary intensity and frequency content. A criterion for determining design responses, based on the variance of the response …
Free Field And Design Motions During Earthquakes, T. Iwasaki
Free Field And Design Motions During Earthquakes, T. Iwasaki
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Recent development of free field ground motions and structural design motions are described with emphasis on investigations done in Japan. The results of analyses of peak free field accelerations and frequency characteristics of response spectra are discussed. Also the recent topics of studies on ground motions including strong-motion earthquake instrument arrays and soil-structure interaction problems are described with use of the results of measurements of strong -motion earthquakes.
Effect Of Soil Parameters On High Velocity Projectile Penetration, D. Z. Yankelevsky
Effect Of Soil Parameters On High Velocity Projectile Penetration, D. Z. Yankelevsky
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
A parameter analysis is performed on an analytical penetration model which has been recently developed. Figures are plotted to show how the disturbed zone size, parameters of displacement and stress fields and dynamic section pressure are dependent on soil compressibility, shear strength and mass density. Main results are presented and discussed.
Dynamical Behavior Of A Pile Under Earthquake Type Loading, T. Kobori, R. Minai, K. Baba
Dynamical Behavior Of A Pile Under Earthquake Type Loading, T. Kobori, R. Minai, K. Baba
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
In order to obtain a theoretical prediction on the seismic response of the soil-pile structure systems, the frequency response of the soil-pile system excited by ground incident waves may be necessary in addition to the response due to the excitation at the pile head. This paper is concerned with a theoretical analysis based on the three-dimensional wave propagation theory to find dynamical interaction characteristics of an elastic pile embedded in the viscoelastic soil stratum on a rigid bed rock, subjected to a concentrated external force or forced displacement at the pile head and to uniformly distributed bed rock motion. In …
Dynamic Response Of An Embedded Structure Generated By A Sh-Wave, G. S. Yeh, T. W. Lin
Dynamic Response Of An Embedded Structure Generated By A Sh-Wave, G. S. Yeh, T. W. Lin
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
In this investigation, a mathematical hybrid model developed previously is employed to study soil-structure interaction of embedded structure. In the analysis, the near field including the embedded structure and its surrounding foundation soil is modelled with a conventional finite element mesh, and the far field is modelled as a semi-infinite medium with a hemi-spherical pit. The impedance functions at the nodes around the special element, which have been determined analytically, can represent the behavior of outgoing propagation of waves. A concept of superposition is proposed to analyze the response of an embedded structure excited by an incoming SH-wave. The governing …
Behavior Of Clays Subjected To Slow Cyclic Loading And Large Strains, Adel Sada, Louise Shook
Behavior Of Clays Subjected To Slow Cyclic Loading And Large Strains, Adel Sada, Louise Shook
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
One of the major considerations in the design of offshore structures is the effect of wave action on the foundation. This requires a study of the effects of cyclic loading on the soil properties. The anisotropic nature of clay soils, which results from sedimentation followed by K0 consolidation, plays an important role in its dynamic as well as its static behavior. An experimental program was undertaken to determine the trends in behavior of clays subjected to large strain cyclic loading. Thin long hollow cylinders of isotropic, and normally K0 consolidated and over consolidated clays, with varying degrees of anisotropy and …
Long-Term Measurements Of Ground Motions Offshore, Eric W. Reece, David E. Ryerson, Robert L. Mcneill
Long-Term Measurements Of Ground Motions Offshore, Eric W. Reece, David E. Ryerson, Robert L. Mcneill
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Long-Term measurements of earthquake ground motions offshore, using the Sandia National Laboratories' SEMS device which records only the strongest motions and transmits them upon command to a boat at the surface, have shown that offshore ground motions may in certain cases be substantially different from empirically predicted ground motions based on onshore data. In particular, the attenuation effects of soft and/or gassy soils, the wedging of offshore deposits as a function of direction to and distance from the source, and sharp velocity-depth profiles, are shown to be possible actors contributing to such differences. For the well constrained recording to date, …
Offshore Earthquake Geotechnology — Second Part, P. B. Selnes
Offshore Earthquake Geotechnology — Second Part, P. B. Selnes
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
This second part of the paper discusses submarine slides and acoustic waves from earthquakes, and gives a general overview of aseismic design procedures. Problems which are specific or especially important for the offshore environment are pointed out and discussed in more detail.
Seismic Pressure Distribution On Retaining Wall With Reinforced Earth Backfill, Swami Saran, D. V. Talwar
Seismic Pressure Distribution On Retaining Wall With Reinforced Earth Backfill, Swami Saran, D. V. Talwar
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
An analysis for determination of lateral thrust on a rigid retaining wall with reinforced earth backfill under seismic condition is described in this paper. The backfill is reinforced with horizontally laid unattached strips and an equivalent horizontal static force replaces the dynamic force. A Coulomb wedge is assumed to develop at limiting equilibrium. Analysis indicates substantial reduction in pressures on the wall due to reinforcement. An optimum length of reinforcing strips of 60 percent of height of wall is indicated.
A Simple Method Of Estimating Seismic Pressures From Cohesive Soils Against Basement Walls, P. W. Taylor, Z. Lndrawan
A Simple Method Of Estimating Seismic Pressures From Cohesive Soils Against Basement Walls, P. W. Taylor, Z. Lndrawan
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Although this problem arises frequently in design practice, there is little guidance for the designer in current literature. The proposed method entails estimating the free-field soil deformation caused by a horizontal acceleration. Dynamic increase in earth pressure against an (effectively rigid) wall is assumed to be proportional to the free-field deformation, relative to the base of the wall, with an upper limit equal to full passive pressure. Dynamic pressures calculated using this method are compared with field evidence from published records of observations made on a building in Yokohama during an earthquake.
A Simplified Elastic Model For Seismic Analysis Of Earth-Retaining Structures With Limited Displacements, A. Arias, F. J. Sanchez-Sesma, E. Ovando-Shelley
A Simplified Elastic Model For Seismic Analysis Of Earth-Retaining Structures With Limited Displacements, A. Arias, F. J. Sanchez-Sesma, E. Ovando-Shelley
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
A simplified elastic model for analyzing static and dynamic interaction between earth-retaining structures and backfill within the range of small displacements is presented. The postulated model covers some of the available models as special cases. The model lends itself readily to the treatment of non-homogeneous backfills with elastic properties varying with depth. Internal (linear) damping in the backfill can be included without impairing the simplicity of the model. Radiation losses due to waves propagating horizontally in fills of semi-infinite extent are inherent to the postulated model. The solutions for some statical and dynamical problems of practical importance show satisfactory agreement …
Seismic Response Of Retaining Structures, P. M. Byrne, F. Salgado
Seismic Response Of Retaining Structures, P. M. Byrne, F. Salgado
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
A simple method of analysis which allows both the earthquake induced forces and displacements of retaining structures to be computed are presented. The method considers both the weight of the wall and the flexibility and strength of both the backfill and foundation soil. A single degree of freedom elastic-plastic model is used and the equation of motion is integrated to yield the time histories of wall force and displacement. The method is applied to a gravity retaining wall structure subjected to three different acceleration time histories. The results indicate that: (1) the dynamic displacements will be small for walls having …
Session 3: Discussion And Replies, Multiple Authors
Session 3: Discussion And Replies, Multiple Authors
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
No abstract provided.
Soil-Pile Interaction Parameters In Vertical And Torsional Vibrations, N. R. Krishnaswamy, B. K. Sharas Chandra, Aftab A. Salam, R. Daniel
Soil-Pile Interaction Parameters In Vertical And Torsional Vibrations, N. R. Krishnaswamy, B. K. Sharas Chandra, Aftab A. Salam, R. Daniel
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
In this paper, two lumped parameter analogues with the inclusion of constant friction damping are suggested to explain the dynamic behavior of pile supported footings during vertical as well as torsional modes of vibrations. Simple theoretical procedures have been described by which the constant frictional force and the constant frictional moment of the friction damping can be evaluated during vertical and torsional vibrations respectively. The suggested procedures into consideration the relevant physical characteristics of the interface between the pile and the soil, as also the length to diameter (L/d) ratio of the pile. Field vibratory teats have been carried out …
Pavement Soil Interaction Under Dynamic Loads, Bhagirath Lall, Rajendra Puri, J. K. Juneja
Pavement Soil Interaction Under Dynamic Loads, Bhagirath Lall, Rajendra Puri, J. K. Juneja
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Different types of model pavements were subjected to forced vertical vibration with a view to studying the attenuation properties of Rayleigh Waves. The effect of the road base materials is studied along with the effect of the change in the thickness of the wearing course. The effect of different corner angles at the edge of the road is also investigated. The characteristics of geometric and material damping are discussed in relation to transmission and attenuation of vibration.
Isolation Of Machine Foundations By Barriers, A. Sridharan, M. V. Nagendra, T. Parthasarathy
Isolation Of Machine Foundations By Barriers, A. Sridharan, M. V. Nagendra, T. Parthasarathy
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Experimental investigation has been carried out to study the effects due to isolation of foundations subjected to vertical vibration on the displacement amplitude. Tests were conducted on an embedded footing of contact area 45 x 45cm. with different embedments and some on the surface of natural ground. Three isolation barriers viz. air gap, saw dust and sand of various depths were used. From the results of the investigation it was found that an open trench (air gap) around the foundation reduces the displacement amplitude around the footing considerably to an extent of about 75%. Saw dust as a barrier, although …
Load Settlement Characteristics And Bearing Capacity Of Clays Under Transient Load, B. M. Basavanna, Shamsher Prakash, A. S. Araya
Load Settlement Characteristics And Bearing Capacity Of Clays Under Transient Load, B. M. Basavanna, Shamsher Prakash, A. S. Araya
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The investigation presented here utilizes finite element technique coupled with Galerikins weighted residual process to predict the settlement of footing resting on the surface of clays and subjected to transient load. The predicted quantities have been compared with the experimental observations of model footing tests. The influence of fundamental natural period of soil and foundation system on the settlement and bearing capacity of footing has been brought out.
Dynamic Analysis Of Buried Structures, G. D. Manolis, D. E. Beskos
Dynamic Analysis Of Buried Structures, G. D. Manolis, D. E. Beskos
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The transient response of a circular cylindrical cavity in a linear elastic or viscoelastic infinite or semi-infinite medium under conditions of plane strain is examined. The method employed is the dynamic Boundary Integral Equation Method in conjunction with the Laplace Transform. The results obtained are compared with results stemming from analytical solutions, where available, and numerical solutions to assess the accuracy, efficiency and applicability of the method.
Dynamic Plasticity In Pile-Soil Interaction Problems, Somnath Bandyopadhyay, Yudhbir Madhav, Madhira R. Madhav
Dynamic Plasticity In Pile-Soil Interaction Problems, Somnath Bandyopadhyay, Yudhbir Madhav, Madhira R. Madhav
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The dynamic soil-pile interaction problem is solved by the method of characteristics. The nonlinear, non-homogeneous problem was idealized as a piecewise linear problem. The numerical instability of semi-infinite soil column model has been reported, and a stable model, wherein the soil column below, the pile tip is replaced by a single spring and dashpot, has also been presented. The results obtained from the method of characteristics have been compared with those obtained by explicit finite difference scheme. The convergence and stability were studied numerically.
Seismic Response Of Structures On Soft Foundations, P. M. Byrne
Seismic Response Of Structures On Soft Foundations, P. M. Byrne
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
A method of analysis for predicting the earthquake induced response a structure on a flexible foundation soil is presented. The foundation soil is represented by a bed of elasticplastic springs allowing both the strength of the soil and its stiffness to be incorporated in the analysis. Application of the method indicates: (1) the vertical component of the earthquake has a negligible effect on the response of the structure (2) the maximum induced overturning moment depends primarily on the strength of the soil and whether the foundation is free to lift from the soil (3) overturning of tall buildings is unlikely …
Ribbed Mat Foundation For Aseismic Building, Agustin A. Mazzeo
Ribbed Mat Foundation For Aseismic Building, Agustin A. Mazzeo
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
This paper describes the design of a two-way ribbed mat used as the foundation of a tall aseismic building located in a very heavy seismic area of northern Venezuela. The soil description, the structural analysis and some construction provisions are also described.
Damping In Torsional Vibrations Of Embedded Footings, K. S. Sankaran, N. R. Krishnaswamy, P. G. B. Nair
Damping In Torsional Vibrations Of Embedded Footings, K. S. Sankaran, N. R. Krishnaswamy, P. G. B. Nair
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The existing theoretical models to explain the dynamic behavior of embedded footings, overestimate the real response by neglecting damping forces which are inevitable as a result of slip at the interface of the embedded footing and soil. Many researchers in the field of Soil Dynamics have suggested that the inclusion of friction damping and internal damping in the mathematical model is necessary to improve the reliability of theoretical predictions. In this paper, results of the experimental investigations on full scale model embedded footings subjected to torsional mode of vibration have been presented. The results have been analyzed making use of …
Soil-Pile Interaction In Liquefiable Cohesionless Soils During Earthquake Loading, Hudson Matlock, Geoffrey R. Martin, Ignatius P. Lam, Chan-Feng Tsai
Soil-Pile Interaction In Liquefiable Cohesionless Soils During Earthquake Loading, Hudson Matlock, Geoffrey R. Martin, Ignatius P. Lam, Chan-Feng Tsai
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
A procedure for soil-pile-structure interaction analyses under earthquake loading is presented, using two computer programs: DESRA and SPASM. DESRA solves for free-field site response, including liquefaction, using a two-phase pore-pressure and effective stress soil model. Resulting displacement and pore pressure time histories are then transferred to SPASM for soil-pile-structure interaction solutions. The procedure is compared with a conventional approach consisting of a linear dynamic structural model and a separate nonlinear pseudo static pile model. The SPASM method was found to be useful in practical design of platforms to withstand earthquake loading. When significant superstructure-foundation interaction is expected, uncertainty in the …
Embedment Effect On Foundations Under Vertical Vibrations, Swami Saran, Gopal Ranjan, R. C. Vijayvargiya
Embedment Effect On Foundations Under Vertical Vibrations, Swami Saran, Gopal Ranjan, R. C. Vijayvargiya
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The dynamic response of the embedded foundation subjected to vertical dynamic loads has been studied through carefully conducted field tests. The block was excited in vertical and coupled modes of vibrations. Four excitation levels were used. Tests, with different embedment depths were carried out. The foundation block was instrumented to monitor dynamic contact pressure at various embedments with specially designed contact pressure cells. Side shear resistances were measured through dynamic shear resistance cells specially designed for the purpose. Also, frequency amplitude characteristics were observed during each test .The analysis of data indicates that as the depth of embedment increases, damping …
Axisymmetric Soil-Structure Interaction By Substructure Approach, P. K. Basu, B. J. Lee
Axisymmetric Soil-Structure Interaction By Substructure Approach, P. K. Basu, B. J. Lee
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
The effect of soil-structure interaction is incorporated into an existing finite element computer program for axisymmetric shells and plates using substructure approach and energy transmitting boundaries. The results of numerical experimentation for a tall chimney and a typical hyperboloidal cooling tower are presented.
Session 4: Opening Remarks, K. Rainer Massarsch
Session 4: Opening Remarks, K. Rainer Massarsch
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
No abstract provided.
Seismic Response Of Pile Supported Structures, William E. Saul, Tuncer B. Edil, Yong-Wu Chang
Seismic Response Of Pile Supported Structures, William E. Saul, Tuncer B. Edil, Yong-Wu Chang
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Earthquake loads are applied to the foundation mainly through shear waves in the underlying soil. A method is presented for analyzing the alteration in the response of a structure by adding piling to the foundation. The method of computation consists of a series of transfer matrices which are used to form a stiffness matrix of the foundation system. Central to the computation is the modelling mode for the soil-pile interaction; several alternatives are presented. Observations regarding the effect of several design parameters, based on a numerical example, are discussed.
Studies Of Apparent Seismic Wave Velocity, A. H. Hadjian, D. M. Hadley
Studies Of Apparent Seismic Wave Velocity, A. H. Hadjian, D. M. Hadley
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
Apparent seismic wave velocities are studied by comparing the stress results obtained by a computer simulation with those obtained by a commonly used simplified engineering model. Two earth models with significantly different surface layers and two focal depths of energy release are used. The results from all four cases studied show that the apparent wave velocity at the free surface is determined by the properties of the material at depth where energy is released. A secondary, yet significant conclusion is the fact that the simplified plane wave propagation solution is a good predictor of the strains/stresses due to seismic waves, …
Dynamic Response Of Rigid Circular Footings, Shenbaga R. Kaniraj
Dynamic Response Of Rigid Circular Footings, Shenbaga R. Kaniraj
International Conferences on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics
In a simplified approach to the rigorous elastic half-space approach for the behavior of a rigid circular surface footing acted upon by a dynamic excitation force, the elastic half-space model is replaced by an equivalent lumped parameter system. The equivalent spring constant (K) and the equivalent damping factor (D) are expressed in terms of dimensionless mass ratio (B). A chance in the value of B thus affects the dynamic response of the footing. The paper explains a procedure to quantify this variation £or vertical mode of vibration.