Volume 15 (2024)
Volume 14 (2023)
Volume 13 (2022)
Volume 12 (2021)
Volume 11 (2020)
Volume 10 (2019)
Volume 9 (2018)
Volume 8 (2017)
Volume 7 (2016)
Volume 6 (2015)
Volume 5 (2014)
Volume 4 (2013)
Volume 3 (2012)
Volume 2 (2011)
Volume 1 (2010)
Rock Mechanics
Bearing Capacity of Circular Footing Resting on Recycled Construction Waste Materials using ANN Method

Anant Saini; Jitendra Singh Yadav

Volume 15, Issue 1 , January 2024, , Pages 97-114

https://doi.org/10.22044/jme.2023.13453.2485

Abstract
  The goal of this research work was to use an Artificial Neural Network (ANN) model to predict the ultimate bearing capacity of circular footing resting on recycled construction waste over loose sand. A series of plate load tests were conducted by varying the thickness of two sizes of recycled construction ...  Read More

Bearing Capacity Evaluation of Square Footing Resting on Reinforced Sand

Imran Khan; Ravi Kumar Sharma

Volume 14, Issue 3 , July 2023, , Pages 813-824

https://doi.org/10.22044/jme.2023.12891.2342

Abstract
  An experimental study is carried out to improve the bearing capacity of soils by using geotextile. In the present study geotextile (tire reinforcement) is used as geotextile, whereas sand is used as a soil medium. This research work presents the results of laboratory load tests on model square footings ...  Read More

Numerical Analysis of Square and Circular Skirted Footings Placed on Sand using PLAXIS 3D Software

Gaurav Juneja; Ravi Kumar Sharma

Volume 13, Issue 4 , October 2022, , Pages 1049-1066

https://doi.org/10.22044/jme.2022.12458.2261

Abstract
  This paper presents the numerical analysis of square and circular skirted footings placed on different sands using the PLAXIS 3D software. The numerical analysis is done using the Mohr-coulomb (M-C) yield criteria. The size of the footings is considered as 100 mm for both the square and circular footings. ...  Read More

A 3D Discrete Element Analysis of Failure Mechanism of Shallow Foundations in Rocks

S. Sepehri; R. Shirinabadi; N. Hosseini Alaee; E. Moosavi; A. H. Bangian Tabrizi

Volume 11, Issue 2 , April 2020, , Pages 467-480

https://doi.org/10.22044/jme.2020.9267.1827

Abstract
  In this research work, a 3D numerical modeling technique is proposed based on the 3D particle flow code in order to investigate the failure mechanism of rock foundations. Two series of footings with different geometries and areas are considered in this work. The failure mechanism obtained is similar ...  Read More