Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground

In order to improve the bearing capacity of soft ground for the purpose of getting trafficability of construction vehicles, the reinforcement of geosynthetics for sand-mat layers on soft ground has often been used. As the strength of the geosynthetics increases, and the sand-mat system becomes stro...

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Main Authors: Jong-Beom Park, Hyun-Soo Park, Daehyeon Kim
Format: Article
Language:English
Published: MDPI AG 2013-11-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/6/11/5314
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spelling doaj-65cd5e5ba78c4b77aa8b46fa1ea11e1f2020-11-24T22:30:43ZengMDPI AGMaterials1996-19442013-11-016115314533410.3390/ma6115314ma6115314Geosynthetic Reinforcement of Sand-Mat Layer above Soft GroundJong-Beom Park0Hyun-Soo Park1Daehyeon Kim2Shinmyeong Construction Engineering Co., Ltd.; Suncheon 540-080, KoreaNew Millennium Construction Co., Ltd.; Gwangju 500-862, KoreaDepartment of Civil Engineering, Chosun University, Gwangju 501-759, KoreaIn order to improve the bearing capacity of soft ground for the purpose of getting trafficability of construction vehicles, the reinforcement of geosynthetics for sand-mat layers on soft ground has often been used. As the strength of the geosynthetics increases, and the sand-mat system becomes stronger, the bearing capacity of sand-mat systems will be increased. The depths of geosynthetics, reinforced in sand-mat layers, were varied with respect to the width of footing. The tensile strengths of geosynthetics were also varied to evaluate the effect of reinforcement on the bearing capacity of soft ground. The dispersion angles, with varying sand-mat thicknesses, were also determined in consideration of the tensile strength of geosynthetics and the depths of reinforcement installations. The bearing capacity ratios, with the variation of footing width and reinforced embedment depth, were determined for the geosynthetics-only, reinforced soft ground, 1-layer sand-mat system and 2-layer sand-mat system against the non-reinforced soft ground. From the test results of various models, a principle that better explains the concept of geosynthetic reinforcement has been found. On the basis of this principle, a new bearing capacity equation for practical use in the design of geosynthetically reinforced soft ground has been proposed by modifying Yamanouchi’s equation.http://www.mdpi.com/1996-1944/6/11/5314sand-mat systemgeosynthetics reinforcedbearing capacitysoft ground
collection DOAJ
language English
format Article
sources DOAJ
author Jong-Beom Park
Hyun-Soo Park
Daehyeon Kim
spellingShingle Jong-Beom Park
Hyun-Soo Park
Daehyeon Kim
Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
Materials
sand-mat system
geosynthetics reinforced
bearing capacity
soft ground
author_facet Jong-Beom Park
Hyun-Soo Park
Daehyeon Kim
author_sort Jong-Beom Park
title Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
title_short Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
title_full Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
title_fullStr Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
title_full_unstemmed Geosynthetic Reinforcement of Sand-Mat Layer above Soft Ground
title_sort geosynthetic reinforcement of sand-mat layer above soft ground
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2013-11-01
description In order to improve the bearing capacity of soft ground for the purpose of getting trafficability of construction vehicles, the reinforcement of geosynthetics for sand-mat layers on soft ground has often been used. As the strength of the geosynthetics increases, and the sand-mat system becomes stronger, the bearing capacity of sand-mat systems will be increased. The depths of geosynthetics, reinforced in sand-mat layers, were varied with respect to the width of footing. The tensile strengths of geosynthetics were also varied to evaluate the effect of reinforcement on the bearing capacity of soft ground. The dispersion angles, with varying sand-mat thicknesses, were also determined in consideration of the tensile strength of geosynthetics and the depths of reinforcement installations. The bearing capacity ratios, with the variation of footing width and reinforced embedment depth, were determined for the geosynthetics-only, reinforced soft ground, 1-layer sand-mat system and 2-layer sand-mat system against the non-reinforced soft ground. From the test results of various models, a principle that better explains the concept of geosynthetic reinforcement has been found. On the basis of this principle, a new bearing capacity equation for practical use in the design of geosynthetically reinforced soft ground has been proposed by modifying Yamanouchi’s equation.
topic sand-mat system
geosynthetics reinforced
bearing capacity
soft ground
url http://www.mdpi.com/1996-1944/6/11/5314
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AT hyunsoopark geosyntheticreinforcementofsandmatlayerabovesoftground
AT daehyeonkim geosyntheticreinforcementofsandmatlayerabovesoftground
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