SHAKING TABLE TEST OF FULL-SCALE TWO-STORY WOODEN FRAMES WITH SLIDING BASE

被引:0
作者
Tomita A. [1 ,2 ]
Miyazu Y. [2 ]
Tojo T. [3 ]
Aoki T. [4 ]
Wakita T. [5 ]
Nagano M. [2 ]
机构
[1] JSPS Research Fellow / Doctoral Student, Tokyo University of Science
[2] R and D Institute, TAKENAKA Corporation
[3] Guest Associate Professor, Waseda University, WISE
来源
Journal of Structural and Construction Engineering | 2024年 / 89卷 / 816期
关键词
Coefficient of friction; Concrete base; Shaking table test; Sliding base; Two-dimensional frame model; Two-story wooden house;
D O I
10.3130/aijs.89.168
中图分类号
学科分类号
摘要
This paper aims to evaluate the seismic performance of wooden houses which have sliding-base structure as a seismic isolation system. The sliding base consists of a reinforced concrete (RC) slab, an RC foundation, and sliding materials. First, full-scale shaking table tests on two-story wooden frames with / without the sliding base were carried out. Then, two-dimensional frame models were developed, and time-history response analysis were conducted to simulate the test results. It is found that the sliding base is effective to reduce the seismic response of the wooden frame and the numerical model simulates the dynamic behavior accurately. © 2024 Architectural Institute of Japan. All rights reserved.
引用
收藏
页码:168 / 179
页数:11
相关论文
共 20 条
[1]  
Architectural Institute of Japan : Report on the Hanshin-Awaji Earthquake Disaster, 1
[2]  
Full-scale shaking table test of two-story wooden frames with sliding base, Annual Meeting of Japan Association for Earthquake Engineering
[3]  
Architectural Institute of Japan:Report on the Damage Investigation of the 2016 Kumamoto earthquake
[4]  
YANAGAWA Masayoshi, HADA Masaya, TAKEUCHI Kenichi, KITAJIMA Keiji, Fundamental Study on Seismic Input Reduction Effect of Building on Sliding Base, Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan, pp. 313-314, (2010)
[5]  
KABEYASAWA Toshikazu, KABEYASAWA Toshimi, MATSUMORI Taizo, KABEYASAWA Toshinori, KIM Yousok, Shake table test on a full-scale three-story reinforced concrete building structure, J. Struct Constr. Eng., AIJ, 73, 632, pp. 1833-1840, (2008)
[6]  
TOSAUCHI Yusuke, SATO Eiji, FUKUYAMA Kunio, INOUE Takahito, KAJIWARA Koichi, SHIOHARA Hitoshi, KABEYASAWA Toshimi, NAGAE Takuya, FUKUYAMA Hiroshi, KABEYASAWA Toshikazu, MUKAI Tomohisa, Three-dimensional shaking table test of a ten story RC frame (2015) -Test methods and the responses in case of sliding bases, J. Struct Constr. Eng., AIJ, 83, 750, pp. 1139-1149
[7]  
Satsuya SODA, FUJITA Hirosuke, MIYAMOTO Emi, Study on seismic response reduction of building on sliding base by full scale shaking table test, Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan, pp. 623-624, (2009)
[8]  
MIYAZU Yuji, SODA Satsuya, WATAI Kazuki, WAKITA Takehiro, TOMITA Ai, Shake Table Test of Light-gauge Cold-formed Steel Frame with Friction / Viscous Damper and Sliding Base Part 3 Two-Story Frame with Sliding Base, Dynamics and Design Conference, 221, (2019)
[9]  
Hu Hong-Song, Lin Fan, Gao Yi-chao, Guo Zi-Xiong, Wang Chen, Maximum Superstructure Response of Sliding-Base Structures under Earthquake Excitation, J. Struct Eng, 146, 7, (2020)
[10]  
Forestry Agency: Part 1 Special Feature 2 Section 2 Trends in Wood Use in the Construction Field (1)