Effective gap size index for determination of optimum separation distance preventing pounding between buildings during earthquakes

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Abstract

Seismic excitations may lead to collisions between adjacent civil engineering structures, causing major damage. In this paper, an effective equation for calculating the gap size index is proposed so as to provide the optimum separation distance preventing structural pounding during different earthquakes. Evaluation of the best prediction of the required separation distance between two adjacent buildings was carried out by using the lumped mass multi-degrees of freedom models of structures. A special computer program was used to perform dynamic analyses in order to confirm the accuracy of the proposed formula. For this purpose, several different models of buildings with various properties under different earthquake excitations were analyzed. The results of the study clearly show that the proposed formula for the gap size index (based on vibration periods and damping ratios of buildings) is effective and it allows us to calculate the optimum separation between adjacent structures preventing their pounding during different earthquakes.

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Khatami, S. M., Naderpour, H., Mortezaei, A., Razavi, S. M. N., Lasowicz, N., & Jankowski, R. (2021). Effective gap size index for determination of optimum separation distance preventing pounding between buildings during earthquakes. Applied Sciences (Switzerland), 11(5), 1–15. https://doi.org/10.3390/app11052322

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