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Mechanical Properties of Geomaterial Recovered from Disaster Debris after the 2011 Earthquake

机译:2011年地震后灾害碎片从灾区回收的机械性能

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Approximately 20,000 Gg of disaster debris was generated through the 2011 off Pacific coast of Tohoku earthquake and subsequent tsunami. Treatment of the disaster debris is a big challenging geotechnical issue, since a significant fraction of the disaster debris was occupied by soil and tsunami deposit. Recovery and utilization of these soil fractions have been promoted in reconstruction works at affected areas. Although several methods have been developed and employed to recover the soil fractions from disaster debris, small pieces of wood and waste remain in recovered soil. In this research, compaction and strength characteristics of recovered soil was evaluated in terms of the effects of wood contents and size on soil properties. Standard Proctor test was conducted to evaluate the compaction characteristics of the recovered soils, whereas unconfined compressive strength was determined by unconfined compression test. In addition, ignition loss test was done to determine the wood contents in the samples. Experimental results indicate that trend of both maximum dry density and unconfined compressive strength decreased with the increasing wood content. However, three wood combinations (based on size of the wood fractions) for each sample presented similar maximum dry density and compressive strength. Despite this, dry density and compressive strength values were relatively higher for larger size combination. Besides, ignition loss values at 330 °C increased with increasing wood content in the samples. It can be concluded that mechanical properties of recovered soil is influenced by both wood contents as well as size of the wood fractions.
机译:通过2011年的Tohoku地震和随后的海啸,产生了大约200,000千克的灾难碎片。灾害碎片的治疗是一个大量挑战性的岩土问题,因为灾害碎片的大部分是土壤和海啸矿床占据。在受影响地区的重建工作中促进了这些土壤部分的恢复和利用。尽管已经开发了几种方法,用于从灾难碎片中恢复土壤部分,但是小块木材和废物仍然存在于恢复的土壤中。在本研究中,在木质含量和土壤性质对土壤含量的影响方面评价回收土壤的压实和强度特征。进行标准功率测试以评估回收的土壤的压实特性,而通过无束的压缩试验测定不包含的抗压强度。此外,采用点火损耗试验以确定样品中的木材内容物。实验结果表明,随着木材含量的增加,最大干密度和无凝结的抗压强度的趋势降低。然而,每个样品的三种木组合(基于木级分的大小)呈现出类似的最大干密度和抗压强度。尽管如此,对于较大尺寸的组合,干密度和抗压强度值相对较高。此外,随着样品中的木质含量增加,330°C的点火损失值增加。可以得出结论,回收的土壤的机械性能受到木材内容的影响以及木材馏分的大小。

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