Dynamic Response of Underground Structures in Sand: Experimental Data

Author:

Lemnitzer Anne1,Keykhosropour Lohrasb1,Kawamata Yohsuke2,Towhata Ikuo3

Affiliation:

1. University of California, Irvine, 4135 Engineering Gateway, Dept. of Civil Eng., Irvine, CA, 92697

2. National Research Institute for Earth Science and Disaster Resilience, Hyogo Earthquake Engineering Research Center, 1501-21 Nishikameya, Mitsuta, Shijimicho, Miki, Hyogo, Japan 673-0515

3. Indian Institute of Technology Bombay, Powai Mumbai, India, 400076

Abstract

A densely instrumented system of large-scale underground structures consisting of two vertical shafts connected through a cut-and-cover tunnel and two independent shield tunnels was installed in an 8 m-diameter laminar soil box at the E-Defense shake table in Miki, Japan. The system was subjected to step-sine sweeps and scaled ground motion records of the Kobe (1995) earthquake. The underground structures were embedded in Albany Silica Sand with an average relative density of 54%. System instrumentation consisted of over 800 sensors, including strain gauges, accelerometers, displacement transducers, bender elements and pressure sensors. A U.S.-Japanese research collaboration was established to instrument the vertical shaft elements and record seismic soil pressures. Data records are archived at the NHERI DesignSafe Data Depot_and can be used to analyze the structural response, soil-structure interaction and other response parameters of individual subsurface components as well as the entire system. The DOI for the data set is 10.17603/DS21C78.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

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