Earthquake response evaluation of cylindrical latticed roofs supported by BRBs: Comparison of responses based on Chinese codes and Japanese regulations

Author:

Takiuchi Yuji1ORCID,Kato Shiro1,Nakazawa Shoji1,Niho Yutaka2

Affiliation:

1. Department of Architecture and Civil Engineering, Toyohashi University of Technology, Toyohashi, Japan

2. Department of Architecture and Structural Engineering, National Institute of Technology (KOSEN), Kure College, Kure, Japan

Abstract

The present study investigates the effectiveness of design strategies that induce yielding in the substructure of a single-layer latticed roof. The roof has a span of 28.9 m and a half-open angle of 30°. It is supported by a ductile substructure consisting of buckling-restrained braces (BRBs), and the substructure is designed to initiate yielding under a base shear coefficient of 0.40. The responses are analyzed using artificial earthquake motions corresponding to Chinese and Japanese design acceleration response spectra. The responses demonstrated that the dynamic amplification within the roof is considerably suppressed in comparison with a roof supported by elastic substructures. The negligible variance in the roof responses to the Japanese and Chinese spectra is also illustrated, suggesting the potential for reciprocal applicability of research results.

Publisher

SAGE Publications

Reference20 articles.

1. J 1072-2010. Technical specification for space frame structures. R. China. 2011 [in Chinese].

2. Architectural Institute of Japan. AIJ recommendation for design of latticed shell roof structures. Tokyo, Japan: Architectural Institute, 2016 [in Japanese].

3. Vibration Behaviour of Single-Layer Latticed Cylindrical Roofs

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