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  1. 防災科研関係論文

Shaking-table tests of a full-scale ten-story reinforced-concrete building (FY2015). Phase I: Free-standing system with base sliding and uplifting

https://nied-repo.bosai.go.jp/records/4260
https://nied-repo.bosai.go.jp/records/4260
e648b8ff-5b69-4f59-8ee5-483f309e467f
Item type researchmap(1)
公開日 2023-04-27
タイトル
言語 en
タイトル Shaking-table tests of a full-scale ten-story reinforced-concrete building (FY2015). Phase I: Free-standing system with base sliding and uplifting
著者 Koichi Kajiwara

× Koichi Kajiwara

en Koichi Kajiwara

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Yusuke Tosauchi

× Yusuke Tosauchi

en Yusuke Tosauchi

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Jae Do Kang

× Jae Do Kang

en Jae Do Kang

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Kunio Fukuyama

× Kunio Fukuyama

en Kunio Fukuyama

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Eiji Sato

× Eiji Sato

en Eiji Sato

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Takahito Inoue

× Takahito Inoue

en Takahito Inoue

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Toshimi Kabeyasawa

× Toshimi Kabeyasawa

en Toshimi Kabeyasawa

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Hitoshi Shiohara

× Hitoshi Shiohara

en Hitoshi Shiohara

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Takuya Nagae

× Takuya Nagae

en Takuya Nagae

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Toshikazu Kabeyasawa

× Toshikazu Kabeyasawa

en Toshikazu Kabeyasawa

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Hiroshi Fukuyama

× Hiroshi Fukuyama

en Hiroshi Fukuyama

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Tomohisa Mukai

× Tomohisa Mukai

en Tomohisa Mukai

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抄録
内容記述タイプ Other
内容記述 In this paper, results are presented from shaking-table tests of a full-scale 10-story reinforced-concrete structure to confirm the behavior of a free-standing system with a base that permits both sliding and uplifting. The purpose of this system is to use the seismic resistance of the structure during a small or medium earthquake and a sliding and uplifting behavior of the free-standing system during a large earthquake. Cast-iron plates were installed on the grade beams of the lower part of the specimen building to generate a low friction coefficient. Thus, the specimen building should be able to move sideways during large earthquakes, although the specimen building should not move sideways during small earthquakes. In the tests, the specimen building was moved sideways during tests with JMA-Kobe 25%, 50%, and 100% amplitude excitations but not during that with JMA-Kobe 10% amplitude excitation, and the specimen building was uplifted at one of its corners for all amplitude excitations. The base sliding displacement was 84–189 mm, and the corner uplift was 5–40 mm. The sliding and uplift behavior led to small maximum inter-story drift ratios, and these behaviors did not increase the base overturning moments. Thus, allowing sliding and uplifting behavior can reduce building damage in an extremely large earthquake.
言語 en
書誌情報 en : Engineering Structures

巻 233, 発行日 2021-04
ISSN
収録物識別子タイプ EISSN
収録物識別子 1873-7323
DOI
関連識別子 10.1016/j.engstruct.2020.111848
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