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Page 102
Suggested Citation:"Appendices." National Academies of Sciences, Engineering, and Medicine. 2024. Seismic Site Response Analysis with Pore Water Pressure Generation: Guidelines. Washington, DC: The National Academies Press. doi: 10.17226/27536.
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Page 102

Below is the uncorrected machine-read text of this chapter, intended to provide our own search engines and external engines with highly rich, chapter-representative searchable text of each book. Because it is UNCORRECTED material, please consider the following text as a useful but insufficient proxy for the authoritative book pages.

102 Appendices A through E can be found on the National Academies Press website (nap.nationalacademies.org) by searching for NCHRP Web-Only Document 383: Seismic Site Response Analysis with Pore Water Pressure Generation: Resources for Evaluation. Appendix A: Literature Search Appendix B: Field Exploration and Site Characterization Appendix C: Experiments and Advanced Laboratory Testing Appendix D: Numerical Modeling – Element Tests Appendix E: Numerical Modeling – Case Histories Appendices

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Seismic Site Response Analysis with Pore Water Pressure Generation: Guidelines Get This Book
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 Seismic Site Response Analysis with Pore Water Pressure Generation: Guidelines
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One-dimensional (1D) equivalent-linear total-stress site response analysis (SRA) is the de facto standard for state department of transportation (DOT) highway facilities at locations where site-specific ground response analyses are conducted. However, many users and various DOTs have concerns about the applicability of equivalent-linear analyses for the cases where site-specific SRA is most relevant.

NCHRP Research Report 1092: Seismic Site Response Analysis with Pore Water Pressure Generation: Guidelines, from TRB's National Cooperative Highway Research Program, presents guidelines for the selection and use of methods for 1D nonlinear seismic SRA with excess pore water pressure generation and dissipation.

Supplemental to the report is NCHRP Web-Only Document 383: Seismic Site Response Analysis with Pore Water Pressure Generation: Resources for Evaluation.

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