USE OF EMBEDDED WALLS FOR MITIGATION OF LIQUEFACTION-INDUCED DISPLACEMENT IN SLOPES AND EMBANKMENTS
スポンサーリンク
概要
- 論文の詳細を見る
The effects of large displacement and deformation of liquefied subsoil during earthquakes have been seriously discussed in recent years. Although mitigative measures to prevent the onset of liquefaction are desirable, it is important from an economical viewpoint that there is a level of allowable displacement and deformation below which the induced ground movement does not cause serious problems to concerned facilities. That deformation is also acceptable that can be repaired within a reasonably short period of time. The present paper briefly examines the recent experience of a river dike during the 1995 Kobe earthquake and suggests that several measures, inclusive of an embedded sheet pile wall, are able to mitigate the displacement to an acceptable level. Then the study presents the results of small shaking table tests in which displacement of a liquefied slope was mitigated by an embedded wall made of either a sheet pile or compacted sand. The study proceeds to the development of an analytical method by which the mitigative effects of embedded walls are evaluated. The proposed method is so simple that a closed-form solution is available for simplified situations. Example studies were made of several situations.
- 社団法人地盤工学会の論文
- 2000-08-15
著者
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東畑 郁生
Professor of Civil Engineering, the University of Tokyo, 7-3-1, Bunkyo-ku, Tokyo 113-8656.
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東畑 郁生
Professor Of Civil Engineering The University Of Tokyo Bunkyo Tokyo 108-8656 Japan.
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東畑 郁生
Professor Of Civil Engineering University Of Tokyo
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Putra Hendri
Lecturer Andalas University Sumatra Indonesia
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小飼 喜弘
Research Engineer Fudo Construction Co. Ltd.
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網本 敬
Engineer, Nippon NCR Sales Co., Ltd. Former Student of University of Tokyo.
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網本 敬
Engineer Nippon Ncr Sales Co. Ltd. Former Student Of University Of Tokyo.
関連論文
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- LIQUEFACTION-INDUCED GROUND DAMAGE IN DAGUPAN IN THE JULY 16,1990 LUZON EARTHQUAKE
- 離散化解析のための修正入力地震波の作成(『土質工学会論文報告集』Vol. 30,No.2 (1990年6月発行)掲載論文の概要)
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- 主応力軸が回転する時の砂の非排水強度
- UNDRAINED STRENGTH OF SAND UNDERGOING CYCLIC ROTATION OF PRINCIPAL STRESS AXES
- SAND RESPONSE TO CYCLIC ROTATION OF PRINCIPAL STRESS DIRECTIONS AS INDUCED BY WAVE LOADS
- 波浪荷重によって生ずる繰返し主応力軸回転て対する砂の応答