Soil Reinforcement Model Test Using Timber Pile at Liquefaction Area

.. Suyadi, T. Harianto, A. B. Muhiddin, A. Arsyad
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Abstract

Indonesia is a tropical country threatened by many disasters, such as earthquakes and other collateral hazards (liquefaction). Utilization of micro pile on the liquefaction prone areas is quite popular to increase the soil bearing capacity. In this research, Eucalyptus Pellita Timber was used as micro-piles alternatives. This study aims to determine the effect of timber pile addition on soil settlement and the increase in bearing capacity. Some laboratory investigations were conducted, such as timber and soil physical and mechanical characteristics, preloading tests, and seismic load tests by using small-scale shaking table test. The preloading tests were carried out for 40 days, and the settlements were recorded every 24 hours. Subsequently, seismic load tests were conducted on sandy soil with Dr = 40%. The seismic duration was 37 seconds, with PGA = 0.3 g and f = 0.78 Hz. The preloading test results show that Eucalyptus pellita timber piles are able to reduce the settlement by 18%. and from seismic load testing results are able to reduce the settlement by 68% due to earthquake loads with PGA = 0.3g and a frequency of 0.78 Hz on sandy soil with the potential for liquefaction. This is due to the resistance at the tip of the pile and the skin friction on the timber pile. So, from the results of the model test, it shows that the use of Eucalyptus Pelita timber piles can be used as an alternative to handling sandy soils in areas where liquefaction has the potential to occur. Doi: 10.28991/CEJ-2023-09-06-016 Full Text: PDF
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液化区木桩加固土体模型试验
印度尼西亚是一个热带国家,受到许多灾害的威胁,例如地震和其他附带危害(液化)。在液化易发地区,利用微桩来提高土体承载力是非常受欢迎的。在本研究中,采用蓝桉木材作为微桩的替代品。本研究旨在确定木桩加桩对土体沉降及承载力增加的影响。采用小型振动台试验进行了木材和土壤的物理力学特性、预压试验和地震荷载试验等室内研究。预压试验进行了40天,每24小时记录一次沉降量。随后,在Dr = 40%的砂土上进行地震荷载试验。地震持续时间为37秒,PGA = 0.3 g, f = 0.78 Hz。预压试验结果表明,桉木桩可使沉降降低18%。从地震荷载试验结果来看,在具有液化潜力的砂土上,PGA = 0.3g、频率为0.78 Hz的地震荷载作用下,能够减少68%的沉降。这是由于桩尖的阻力和木桩上的表面摩擦。因此,从模型试验的结果来看,在有可能发生液化的地区,使用Pelita桉木桩可以作为处理沙土的替代方案。Doi: 10.28991/CEJ-2023-09-06-016全文:PDF
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来源期刊
Open Civil Engineering Journal
Open Civil Engineering Journal Engineering-Civil and Structural Engineering
CiteScore
1.90
自引率
0.00%
发文量
17
期刊介绍: The Open Civil Engineering Journal is an Open Access online journal which publishes research, reviews/mini-reviews, letter articles and guest edited single topic issues in all areas of civil engineering. The Open Civil Engineering Journal, a peer-reviewed journal, is an important and reliable source of current information on developments in civil engineering. The topics covered in the journal include (but not limited to) concrete structures, construction materials, structural mechanics, soil mechanics, foundation engineering, offshore geotechnics, water resources, hydraulics, horology, coastal engineering, river engineering, ocean modeling, fluid-solid-structure interactions, offshore engineering, marine structures, constructional management and other civil engineering relevant areas.
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