Procedures for Estimating Earthquake Ground Motions

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ISBN 13 :
Total Pages : 96 pages
Book Rating : 4.:/5 (359 download)

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Book Synopsis Procedures for Estimating Earthquake Ground Motions by : Walter W. Hays

Download or read book Procedures for Estimating Earthquake Ground Motions written by Walter W. Hays and published by . This book was released on 1980 with total page 96 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Procedure for Estimating Earthquake Ground Motions

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ISBN 13 :
Total Pages : 77 pages
Book Rating : 4.:/5 (641 download)

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Book Synopsis Procedure for Estimating Earthquake Ground Motions by : Walter W. Hays

Download or read book Procedure for Estimating Earthquake Ground Motions written by Walter W. Hays and published by . This book was released on 1980 with total page 77 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Procedures for estimating earthquake ground motions

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (251 download)

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Book Synopsis Procedures for estimating earthquake ground motions by : Walter Wesley Hays

Download or read book Procedures for estimating earthquake ground motions written by Walter Wesley Hays and published by . This book was released on 1980 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Procedures For Estimating Earthquake Ground Motions

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ISBN 13 :
Total Pages : 75 pages
Book Rating : 4.:/5 (796 download)

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Book Synopsis Procedures For Estimating Earthquake Ground Motions by : Geological Survey (U.S.)

Download or read book Procedures For Estimating Earthquake Ground Motions written by Geological Survey (U.S.) and published by . This book was released on 1975 with total page 75 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Simplified Procedures for Estimating Earthquake-Induced Displacements

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ISBN 13 :
Total Pages : 159 pages
Book Rating : 4.:/5 (12 download)

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Book Synopsis Simplified Procedures for Estimating Earthquake-Induced Displacements by : Jorge Luis Macedo Escudero

Download or read book Simplified Procedures for Estimating Earthquake-Induced Displacements written by Jorge Luis Macedo Escudero and published by . This book was released on 2017 with total page 159 pages. Available in PDF, EPUB and Kindle. Book excerpt: Engineers find value in using simplified procedures to estimate seismically induced permanent displacements in their preliminary assessments of the seismic performance of earth structures and buildings. This research develops new, robust simplified procedures to estimate shear-induced displacements of earth and waste structures and natural slopes and to estimate shear-induced settlement of structures founded atop liquefiable soils. Most simplified procedures for estimating seismic slope displacements are based on variations of the Newmark (1965) sliding block analyses. These procedures were developed largely using earthquake ground motions from shallow crustal earthquakes along active plate margins (e.g., California earthquakes). These semi-empirical procedures should not be applied directly to other seismo-tectonic settings, such as subduction earthquake zones, without evaluating their applicability for tectonic settings for which they were not originally developed. In this study, a simplified procedure for estimating seismic shear-induced permanent displacements in slopes located in subduction earthquake zones is developed. The primary source of uncertainty in assessing the likely performance of an earth slope or system during an earthquake is the input ground motion. Hence, a comprehensive database containing 810 recorded ground motions from subduction zone interface earthquakes was developed and used to compute seismic slope displacements. The proposed seismic slope displacement model captures the primary influence of the system's yield coefficient ky, its initial fundamental period Ts, and the ground motion's spectral acceleration at a degraded period of the slope taken as 1.5 Ts. The new procedure uses the framework of the widely used Bray and Travasarou (2007) method developed for shallow crustal settings. The model separates the probability of "zero" displacement (i.e.,

Guidelines for Determining Design Basis Ground Motions: Method and guidelines for estimating earthquake ground motion in Eastern North America

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (37 download)

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Book Synopsis Guidelines for Determining Design Basis Ground Motions: Method and guidelines for estimating earthquake ground motion in Eastern North America by :

Download or read book Guidelines for Determining Design Basis Ground Motions: Method and guidelines for estimating earthquake ground motion in Eastern North America written by and published by . This book was released on 1993 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Practices and Procedures for Site-Specific Evaluations of Earthquake Ground Motions

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Publisher : Transportation Research Board National Research
ISBN 13 :
Total Pages : 92 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Practices and Procedures for Site-Specific Evaluations of Earthquake Ground Motions by : Neven Matasovic

Download or read book Practices and Procedures for Site-Specific Evaluations of Earthquake Ground Motions written by Neven Matasovic and published by Transportation Research Board National Research. This book was released on 2012 with total page 92 pages. Available in PDF, EPUB and Kindle. Book excerpt: TRB’s National Cooperative Highway Research Program (NCHRP) Synthesis 428: Practices and Procedures for Site-Specific Evaluations of Earthquake Ground Motions identifies and describes current practice and available methods for evaluating the influence of local ground conditions on earthquake design ground motions on a site-specific basis.

Estimation of Ground Motion Parameters

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ISBN 13 :
Total Pages : 56 pages
Book Rating : 4.:/5 (359 download)

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Book Synopsis Estimation of Ground Motion Parameters by :

Download or read book Estimation of Ground Motion Parameters written by and published by . This book was released on 1978 with total page 56 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Simulating and Analyzing Artificial Non-stationary Earthquake Ground Motions

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Publisher :
ISBN 13 :
Total Pages : 64 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Simulating and Analyzing Artificial Non-stationary Earthquake Ground Motions by : Robert F. Nau

Download or read book Simulating and Analyzing Artificial Non-stationary Earthquake Ground Motions written by Robert F. Nau and published by . This book was released on 1980 with total page 64 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Scaling and Estimation of Earthquake Ground Motion as a Function of the Earthquake Source Parameters and Distance

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Publisher :
ISBN 13 :
Total Pages : 88 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Scaling and Estimation of Earthquake Ground Motion as a Function of the Earthquake Source Parameters and Distance by : D. L. Bernreuter

Download or read book Scaling and Estimation of Earthquake Ground Motion as a Function of the Earthquake Source Parameters and Distance written by D. L. Bernreuter and published by . This book was released on 1981 with total page 88 pages. Available in PDF, EPUB and Kindle. Book excerpt:

estimating losses from future earthquakes

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Publisher : National Academies Press
ISBN 13 :
Total Pages : 247 pages
Book Rating : 4./5 ( download)

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Book Synopsis estimating losses from future earthquakes by : Committee On Earthquake Engineering Panel on Earthquake Loss Estimation Methodology

Download or read book estimating losses from future earthquakes written by Committee On Earthquake Engineering Panel on Earthquake Loss Estimation Methodology and published by National Academies Press. This book was released on 1989-01-01 with total page 247 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Early Site Permit Demonstration Program

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Publisher :
ISBN 13 :
Total Pages : 619 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Early Site Permit Demonstration Program by :

Download or read book Early Site Permit Demonstration Program written by and published by . This book was released on 1993 with total page 619 pages. Available in PDF, EPUB and Kindle. Book excerpt: This report develops and applies a methodology for estimating strong earthquake ground motion. The motivation was to develop a much needed tool for use in developing the seismic requirements for structural designs. An earthquakes̀ ground motion is a function of the earthquakes̀ magnitude, and the physical properties of the earth through which the seismic waves travel from the earthquake fault to the site of interest. The emphasis of this study is on ground motion estimation in Eastern North America (east of the Rocky Mountains), with particular emphasis on the Eastern United States and southeastern Canada. Eastern North America is a stable continental region, having sparse earthquake activity with rare occurrences of large earthquakes. While large earthquakes are of interest for assessing seismic hazard, little data exists from the region to empirically quantify their effects. Therefore, empirically based approaches that are used for other regions, such as Western North America, are not appropriate for Eastern North America. Moreover, recent advances in science and technology have now made it possible to combine theoretical and empirical methods to develop new procedures and models for estimating ground motion. The focus of the report is on the attributes of ground motion in Eastern North America that are of interest for the design of facilities such as nuclear power plants. Specifically considered are magnitudes M from 5 to 8, distances from 0 to 500 km, and frequencies from 1 to 35 Hz.

A Probabilistic Procedure for Estimating Seismic Loading Based on Historic and Geologic Data

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Publisher :
ISBN 13 :
Total Pages : 244 pages
Book Rating : 4.:/5 (227 download)

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Book Synopsis A Probabilistic Procedure for Estimating Seismic Loading Based on Historic and Geologic Data by : J. M. Ferritto

Download or read book A Probabilistic Procedure for Estimating Seismic Loading Based on Historic and Geologic Data written by J. M. Ferritto and published by . This book was released on 1978 with total page 244 pages. Available in PDF, EPUB and Kindle. Book excerpt: This report describes a procedure for estimating site ground motion based on the historic data base of earthquakes adjusted to incorporate fault slip data. Procedures are given for determining site acceleration magnitude and duration of various confidence levels. Seismic risk analysis techniques are discussed. The report contains background material required for an understanding of the procedure. (Author).

Stochastic Model for Earthquake Ground Motion Using Wavelet Packets

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Publisher : Stanford University
ISBN 13 :
Total Pages : 329 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Stochastic Model for Earthquake Ground Motion Using Wavelet Packets by : Yoshifumi Yamamoto

Download or read book Stochastic Model for Earthquake Ground Motion Using Wavelet Packets written by Yoshifumi Yamamoto and published by Stanford University. This book was released on 2011 with total page 329 pages. Available in PDF, EPUB and Kindle. Book excerpt: For performance-based design, nonlinear dynamic structural analysis for various types of input ground motions is required. Stochastic (simulated) ground motions are sometimes useful as input motions, because unlike recorded motions they are not limited in number and because their properties can be varied systematically to study the impact of ground motion properties on structural response. This dissertation describes an approach by which the wavelet packet transform can be used to characterize complex time-varying earthquake ground motions, and it illustrates the potential benefits of such an approach in a variety of earthquake engineering applications. The proposed model is based on Thr´ainsson and Kiremidjian (2002), which use Fourier amplitudes and phase differences to simulate ground motions and attenuation models to their model parameters. We extend their model using wavelet packet transform since it can control the time and frequency characteristic of time series. The time- and frequency-varying properties of real ground motions can be captured using wavelet packets, so a model is developed that requires only 13 parameters to describe a given ground motion. These 13 parameters are then related to seismological variables such as earthquake magnitude, distance, and site condition, through regression analysis that captures trends in mean values, standard deviations and correlations of these parameters observed in a large database of recorded strong ground motions. The resulting regression equations then form a model that can be used to predict ground motions for a future earthquake scenario; this model is analogous to widely used empirical ground motion prediction models (formerly called "attenuation models") except that this model predicts entire time series rather than only response spectra. The ground motions produced using this predictive model are explored in detail, and are shown to have elastic response spectra, inelastic response spectra, durations, mean periods, etc., that are consistent in both mean and variability to existing published predictive models for those properties. That consistency allows the proposed model to be used in place of existing models for probabilistic seismic hazard analysis (PSHA) calculations. This new way to calculate PSHA is termed "simulation-based probabilistic seismic hazard analysis" and it allows a deeper understanding of ground motion hazard and hazard deaggregation than is possible with traditional PSHA because it produces a suite of potential ground motion time histories rather than simply a distribution of response spectra. The potential benefits of this approach are demonstrated and explored in detail. Taking this analysis even further, this suite of time histories can be used as input for nonlinear dynamic analysis of structures, to perform a risk analysis (i.e., "probabilistic seismic demand analysis") that allows computation of the probability of the structure exceeding some level of response in a future earthquake. These risk calculations are often performed today using small sets of scaled recorded ground motions, but that approach requires a variety of assumptions regarding important properties of ground motions, the impacts of ground motion scaling, etc. The approach proposed here facilitates examination of those assumptions, and provides a variety of other relevant information not obtainable by that traditional approach.

Ground Motion Evaluation Procedures for Performance-based Design

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ISBN 13 :
Total Pages : 280 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Ground Motion Evaluation Procedures for Performance-based Design by : Jonathan P. Stewart

Download or read book Ground Motion Evaluation Procedures for Performance-based Design written by Jonathan P. Stewart and published by . This book was released on 2001 with total page 280 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Advancement of Hazard-consistent Ground Motion Selection Methodology

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Advancement of Hazard-consistent Ground Motion Selection Methodology by : Ting Lin

Download or read book Advancement of Hazard-consistent Ground Motion Selection Methodology written by Ting Lin and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Performance-based earthquake engineering (PBEE) quantifies the seismic hazard, predicts the structural response, and estimates the damage to building elements, in order to assess the resulting losses in terms of dollars, downtime, and deaths. This dissertation focuses on the ground motion selection that connects seismic hazard and structural response, the first two elements of PBEE, to ensure that the ground motion selection method to obtain structural response results is consistent with probabilistic seismic hazard analysis (PSHA). Structure- and site-specific ground motion selection typically requires information regarding the system characteristics of the structure (often through a structural model) and the seismic hazard of the site (often through characterization of seismic sources, their occurrence frequencies, and their proximity to the site). As the ground motion intensity level changes, the target distribution of important ground motion parameters (e.g., magnitude and distance) also changes. With the quantification of contributing ground motion parameters at a specific spectral acceleration (Sa) level, a target response spectrum can be computed using a single or multiple ground motion prediction models (GMPMs, previously known as attenuation relations). Ground motions are selected from a ground motion database, and their response spectra are scaled to match the target response spectrum. These ground motions are then used as seismic inputs to structural models for nonlinear dynamic analysis, to obtain structural response under such seismic excitations. This procedure to estimate structural response results at a specific intensity level is termed an intensity-based assessment. When this procedure is repeated at different intensity levels to cover the frequent to rare levels of ground motion (expressed in terms of Sa), a risk-based assessment can be performed by integrating the structural response results at each intensity level with their corresponding seismic hazard occurrence (through the seismic hazard curve). This dissertation proposes a more rigorous ground motion selection methodology which will carefully examine the aleatory uncertainties from ground motion parameters, incorporate the epistemic uncertainties from multiple GMPMs, make adaptive changes to ground motions at various intensity levels, and use the Conditional Spectrum (CS) as the new target spectrum. The CS estimates the distribution (with mean and standard deviation) of the response spectrum, conditioned on the occurrence of a target Sa value at the period of interest. By utilizing the correlation of Sa values across periods, the CS removes the conservatism from the Uniform Hazard Spectrum (which assumes equal probabilities of exceedance of Sa at all periods) when used as a target for ground motion selection, and more realistically captures the Sa distributions away from the conditioning period. The variability of the CS can be important in structural response estimation and collapse prediction. To account for the spectral variability, aleatory and epistemic uncertainties can be incorporated to compute a CS that is fully consistent with the PSHA calculations upon which it is based. Furthermore, the CS is computed based on a specified conditioning period, whereas structures under consideration may be sensitive to multiple periods of excitation. Questions remain regarding the appropriate choice of conditioning period when utilizing the CS as the target spectrum. To advance the computation and the use of the CS in ground motion selection, contributions have been made in the following areas: The computation of the CS has been refined by incorporating multiple causal earthquakes and GMPMs. Probabilistic seismic hazard deaggregation of GMPMs provides the essential input for such refined CS computation that maintains the rigor of PSHA. It is shown that when utilizing the CS as the target spectrum, risk-based assessments are relatively insensitive to the choice of conditioning period when ground motions are carefully selected to ensure hazard consistency. Depending on the conditioning period, the structural analysis objective, and the target response spectrum, conclusions regarding appropriate procedures for selecting ground motions may differ.

Selection and Scaling of Ground Motions for Nonlinear Response History Analysis of Buildings in Performance-based Earthquake Engineering

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ISBN 13 :
Total Pages : 195 pages
Book Rating : 4.:/5 (919 download)

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Book Synopsis Selection and Scaling of Ground Motions for Nonlinear Response History Analysis of Buildings in Performance-based Earthquake Engineering by : Neal Simon Kwong

Download or read book Selection and Scaling of Ground Motions for Nonlinear Response History Analysis of Buildings in Performance-based Earthquake Engineering written by Neal Simon Kwong and published by . This book was released on 2015 with total page 195 pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation investigates the issue of selecting and scaling ground motions as input excitations for response history analyses of buildings in performance-based earthquake engineering. Many ground motion selection and modication (GMSM) procedures have been developed to select ground motions for a wide variety of objectives. In this research, we focus on the selection and scaling of single, horizontal components of ground motion for estimating seismic demand hazard curves (SDHCs) of multistory frames at a given site. In Chapter 2, a framework is developed for evaluating GMSM procedures in their ability to provide accurate estimates of the SDHC. The notion of a benchmark SDHC is introduced, enabling biases caused by GMSM procedures to be isolated from other sources of bias. More importantly, the ability to quantify bias facilitates the identication of intensity measures (IMs) that are sufficient. However, this approach is limited by the availability of recorded ground motions and of prediction models for engineering demand parameters (EDPs) of structures. The framework developed in Chapter 2 is applied to synthetic ground motions in Chapter 3, where biases in estimates of SDHCs caused by GMSM procedures can be estimated for any structural system and any EDP. However, the use of synthetic ground motions gives rise to the issue of developing benchmark-consistent ground motion prediction models. Based on the results from Chapters 2-3, it is hypothesised that the potential bias in any SDHC estimate is caused directly by two important properties of the particular selection of ground motions: (i) hazard consistency, and (ii) IM sufficiency. A novel ground motion selection procedure, rooted in the theory of Importance Sampling, is developed in Chapter 4 that allows: (i) hazard consistency of the selected motions to be directly enforced for a user-specified collection of IMs, and (ii) SDHCs of a structure to be estimated from a single ensemble of ground motions, with the option of avoiding record scaling altogether. This procedure, together with two other contemporary GMSM procedures -- (i) "exact" Conditional Spectrum and (ii) Generalized Conditional Intensity Measure -- are evaluated in Chapters 5-6 for a variety of structural systems and EDPs at a specified site. In these chapters, the amount of effort involved in implementing these procedures for estimating SDHCs is summarized in a step-by-step form, and the magnitude of biases caused by these procedures are documented.