A Laser-Based Optical Sensor for Broad-Band Measurements of Building Earthquake Drift

Author:

McCallen David1,Petrone Floriana2,Coates Jason3,Repanich Nicholas3

Affiliation:

1. Lawrence Berkeley National Laboratory and University of California Office of the President, 1111 Broadway, Oakland CA, 94720

2. Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley CA, 94607

3. Mechatronics Center, California State University, Chico, 400 West First Street, Chico, CA, 95929

Abstract

Accurate measurements of the time-dependent deformations of a building during earthquake excitation are essential for interpretation of the dynamic response of the as-built system and for quantifying the seismic demands. Traditional approaches for monitoring building systems are based on strong motion accelerometers mounted at selected elevations. However, accelerometer-based systems do not directly measure the deformations of the structure, and can have significant limitations that make it challenging to correctly measure deformations, particularly permanent deformations from inelastic response. In the study described herein, computational simulations and experiments were combined to evaluate the potential of a new optically based sensor to directly measure time-dependent deformations of a building, including inelastic deformations. The sensor methodology includes corrections for localized structural member rotations and can provide estimates of the absolute accelerations at each floor. A laser-based system utilizing a recently developed discrete diode position sensor (DDPS) is evaluated, and the ability of such a system to measure earthquake induced transient deformations characterized by building interstory drift is demonstrated.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

Reference21 articles.

1. AnderssonH. 2008 Position Sensitive Detectors – Device Technology and Applications in Spectroscopy Doctor Thesis, Electronics Design Division, Mid Sweden University, Sundsvall, Sweden.

2. Interstory drift monitoring in smart buildings using laser crosshair projection

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