PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS
Experimental tests were conducted to study the behavior of skirted foundations rested on dry medium sandy soil subjected to vertical and inclined loads. To achieve this goal, a small-scale physical model was designed and performed which contained an aluminum circular footing (100 mm) in diameter and...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Faculty of Engineering, University of Kufa
2020-04-01
|
Series: | Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ |
Subjects: | |
Online Access: | http://journals.uokufa.edu.iq/index.php/kje/article/view/9227 |
id |
doaj-f646f1f830f54726b5aff991873e808d |
---|---|
record_format |
Article |
spelling |
doaj-f646f1f830f54726b5aff991873e808d2020-11-25T04:00:16ZengFaculty of Engineering, University of KufaMağallaẗ Al-kūfaẗ Al-handasiyyaẗ2071-55282523-00182020-04-011121027HTTP://DX.DOI.ORG/10.30572/2018/KJE/110202PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADSOsamah Abdulhasan0Faris S. Mustafa1 Alaa H. Al-Zuhairi2M.Sc. Student, Department of Civil Engineering, University of Baghdad, Baghdad, Iraq.Dr, Department of Civil Engineering, University of Baghdad, Baghdad, IraqAssistant Professor, Department of Civil Engineering, University of Baghdad, Baghdad, Iraq.Experimental tests were conducted to study the behavior of skirted foundations rested on dry medium sandy soil subjected to vertical and inclined loads. To achieve this goal, a small-scale physical model was designed and performed which contained an aluminum circular footing (100 mm) in diameter and (10 mm) in thickness and skirts with different heights, local medium poorly graded dry sand is placed in a steel soil container (2 mm) thick with internal dimensions (1000 mm x 1000 mm in cross section and 800 mm in height). The main objective of this study was to evaluate the response of skirt attached to the foundation at different skirt (L/D) ratios (0.0, 0.5, 1.0 and 1.5) and is subjected to point load at different angles of inclination (θ) (90 °, 80 °, 70 ° to 60 °) varying with the horizontal. In all tests, the relative density of sand was kept constant and equal to (60%). Four tests were conducted on a foundation without a skirt, for comparison reasons, and twelve tests were conducted on a skirt attached to foundation. The results showed that with decreasing the angle of inclination of load with the horizontal the load carrying capacity decreased due to increase the horizontal component of applied load which leads to increase the shear stresses under the foundation, however that effect decreases with increase the skirt height.http://journals.uokufa.edu.iq/index.php/kje/article/view/9227skirt foundationcircular shallow footingmedium dry sandbearing capacity of shallow footingphysical model tests. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Osamah Abdulhasan Faris S. Mustafa Alaa H. Al-Zuhairi |
spellingShingle |
Osamah Abdulhasan Faris S. Mustafa Alaa H. Al-Zuhairi PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ skirt foundation circular shallow footing medium dry sand bearing capacity of shallow footing physical model tests. |
author_facet |
Osamah Abdulhasan Faris S. Mustafa Alaa H. Al-Zuhairi |
author_sort |
Osamah Abdulhasan |
title |
PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS |
title_short |
PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS |
title_full |
PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS |
title_fullStr |
PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS |
title_full_unstemmed |
PERFORMANCE OF SKIRTED CIRCULAR SHALLOW FOOTINGS RESTING ON SANDY SOIL UNDER INCLINED LOADS |
title_sort |
performance of skirted circular shallow footings resting on sandy soil under inclined loads |
publisher |
Faculty of Engineering, University of Kufa |
series |
Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ |
issn |
2071-5528 2523-0018 |
publishDate |
2020-04-01 |
description |
Experimental tests were conducted to study the behavior of skirted foundations rested on dry medium sandy soil subjected to vertical and inclined loads. To achieve this goal, a small-scale physical model was designed and performed which contained an aluminum circular footing (100 mm) in diameter and (10 mm) in thickness and skirts with different heights, local medium poorly graded dry sand is placed in a steel soil container (2 mm) thick with internal dimensions (1000 mm x 1000 mm in cross section and 800 mm in height). The main objective of this study was to evaluate the response of skirt attached to the foundation at different skirt (L/D) ratios (0.0, 0.5, 1.0 and 1.5) and is subjected to point load at different angles of inclination (θ) (90 °, 80 °, 70 ° to 60 °) varying with the horizontal. In all tests, the relative density of sand was kept constant and equal to (60%). Four tests were conducted on a foundation without a skirt, for comparison reasons, and twelve tests were conducted on a skirt attached to foundation. The results showed that with decreasing the angle of inclination of load with the horizontal the load carrying capacity decreased due to increase the horizontal component of applied load which leads to increase the shear stresses under the foundation, however that effect decreases with increase the skirt height. |
topic |
skirt foundation circular shallow footing medium dry sand bearing capacity of shallow footing physical model tests. |
url |
http://journals.uokufa.edu.iq/index.php/kje/article/view/9227 |
work_keys_str_mv |
AT osamahabdulhasan performanceofskirtedcircularshallowfootingsrestingonsandysoilunderinclinedloads AT farissmustafa performanceofskirtedcircularshallowfootingsrestingonsandysoilunderinclinedloads AT alaahalzuhairi performanceofskirtedcircularshallowfootingsrestingonsandysoilunderinclinedloads |
_version_ |
1724451558154829824 |