Experimental Evaluation of Effective Embedment Depth of Press-in Sheet Piling to Mitigate Liquefaction-Induced Foundation Settlements
- Organization:
- Deep Foundations Institute
- Pages:
- 11
- File Size:
- 1341 KB
- Publication Date:
- Oct 31, 2023
Abstract
The earthquakes that occurred in New Zealand and Japan in 2010 and 2011 caused significant damage due to liquefaction. Engineers have adopted various ground improvement techniques to reduce the impact of liquefaction-induced damage, and one of these techniques is installing a sheet pile next to the foundation. However, the optimal depth into a non-liquefiable soil layer for having appropriate fixity of the bottom of the sheet pile remains unclear. To address this issue, a series of moderate-scale 1g shake table tests were conducted to evaluate the effective embedment depth of the sheet pile required to mitigate liquefaction-induced foundation settlement. A 1/5 scaled model consisting of three soil layers with varying densities, namely the crust, liquefiable, and dense layers, was prepared. A shallow foundation was placed over the crust layer and a sheet pile at a horizontal distance of 0.625 times the foundation length from the center of the foundation was inserted into the soil at various embedment depths using the press-in technique. The test results indicated that the foundation settlement could be reduced by 62% and 72% when the sheet pile was embedded to 50% and 100% of the dense layer thickness. It was recommended that the sheet pile be embedded at least 50% of the firm stratum thickness to achieve optimal performance.
Citation
APA: (2023) Experimental Evaluation of Effective Embedment Depth of Press-in Sheet Piling to Mitigate Liquefaction-Induced Foundation Settlements
MLA: Experimental Evaluation of Effective Embedment Depth of Press-in Sheet Piling to Mitigate Liquefaction-Induced Foundation Settlements. Deep Foundations Institute, 2023.