Liquefaction-induced damage to houses and its countermeasures at Minami-Kurihashi in Kuki City during the 2011 Tohoku Earthquake, Japan

IF 4.2 2区 工程技术 Q1 ENGINEERING, GEOLOGICAL Soil Dynamics and Earthquake Engineering Pub Date : 2015-12-01 DOI:10.1016/j.soildyn.2015.07.014
Junichi Koseki , Kazue Wakamatsu , Shunichi Sawada , Katsuya Matsushita
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引用次数: 15

Abstract

Sand boiling and liquefaction-induced damage to houses and infrastructures occurred in Minami-Kurihashi, Kuki City, during the 2011 off the Pacific Coast of Tohoku Earthquake, Japan. After the earthquake, extensive site investigations were conducted in the affected areas, including 14 borehole surveys and 43 sounding tests, where Piezo Drive Cone penetrometer, a newly developed test method, was used which could be effectively employed in detecting local change of soil profiles. A filled sandy soil layer existed near the ground surface in the affected areas, which originated from reclamation works using dredged materials to construct housing lots. In addition, a Holocene sandy soil layer existed partly at a depth of about 10–13 m. Though these two layers were evaluated to be potentially liquefiable, the liquefaction-induced damage was observed to concentrate in the areas where the reclamation works had been executed, suggesting that the liquefaction of the reclaimed layer caused such damage. It was deduced that possible liquefaction of the Holocene layer did not contribute to the damage and to the occurrence of sand boiling at the ground surface. As countermeasure against future liquefaction, ground water lowering method has been selected, and in-situ tests and numerical analyses were executed to predict the long-term ground settlement. A subsequent study on detailed design of the selected countermeasure is underway as of June 1, 2015.

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2011年日本东北地震期间,国市南栗桥地区液化对房屋的破坏及其对策
2011年,日本东北地震发生在太平洋沿岸,日本久木市南栗桥发生了沙子沸腾和液化导致的房屋和基础设施损坏。地震发生后,在受灾地区进行了广泛的现场调查,包括14个钻孔调查和43个测深试验,其中使用了一种新开发的测试方法压电驱动锥贯入仪,可以有效地检测局部土壤剖面的变化。受影响地区的地表附近存在一层填满的沙土层,这是由于填海工程使用疏浚材料建造房屋用地造成的。另外,在10 ~ 13 m深度部分存在全新世砂质土层。虽然这两层被评估为可能液化,但观察到液化引起的损害集中在已经进行填海工程的地区,这表明填海层的液化造成了这种损害。由此推断,全新世地层可能的液化作用并不是造成地层破坏和地表沸腾砂发生的原因。为应对未来液化,选择了降低地下水的方法,并进行了现场试验和数值分析,对长期地面沉降进行了预测。2015年6月1日,对选定对策的详细设计的后续研究正在进行中。
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来源期刊
Soil Dynamics and Earthquake Engineering
Soil Dynamics and Earthquake Engineering 工程技术-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
446
审稿时长
8 months
期刊介绍: The journal aims to encourage and enhance the role of mechanics and other disciplines as they relate to earthquake engineering by providing opportunities for the publication of the work of applied mathematicians, engineers and other applied scientists involved in solving problems closely related to the field of earthquake engineering and geotechnical earthquake engineering. Emphasis is placed on new concepts and techniques, but case histories will also be published if they enhance the presentation and understanding of new technical concepts.
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