Conference Article

·2023 OPEN ACCESS

Investigation behavior of gypsum soil reinforced by geosynthetics supported square footing-an experimental study

Adil Abdulameer Waleed YTU , Murat Ergenekon Selçuk YTU , Makki K. Mohsen

IOP Conference Series Earth and Environmental Science

Abstract

Abstract Recently, an urban expansion prompted to construction of structures on weak or unsuitable ground soils. In a sustainable view, there is a need to investigate and improve such types of soils under consideration. Gypsum soil is one of the weak soils when exposed to wetness, especially the value of bearing capacity and Collapse. The main objective of this study is to carry out several model tests for gypsum soil at a relative density of 30% for dry and wet conditions under static vertical stress. The study involved evaluating the effectiveness of soil stabilization using geosynthetics reinforced (geotextile and E-glass fiber fabric) by using single, double, and triple layers placed at different locations. Soil with a gypsum content of 47% was used. Experimental tests were carried out on soil models for the dry and saturated conditions for a relative density of 30%. The ultimate bearing capacity was calculated, as well as the ratio of improvement BCR% according to the reinforcement layers. It was found that the ultimate bearing capacity increases 100% when using E-glass fiber fabric comparing used geotextile at reinforcement triple layers (0.25B+0.5B+1B) for dry state.

Keywords

Bearing capacity Geotechnical engineering Gypsum Geotextile Soil water Geosynthetics Reinforcement Environmental science Materials science Geology Soil science Composite material

Subject Areas

Geotechnical Engineering and Soil Stabilization ·Civil and Structural Engineering ·Physical Sciences
Geotechnical Engineering and Analysis ·Safety, Risk, Reliability and Quality ·Physical Sciences
Geotechnical Engineering and Underground Structures ·Civil and Structural Engineering ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Sustainable cities and communities 64%