Javascript must be enabled to continue!
Settlement of Ring Footing Resting on Geocell Reinforced Sandy Soil under Cyclic Load
View through CrossRef
Ring footings are widely used as a foundation for water tanks, television antennas, silos, chimneys, oil storage tanks, etc. This paper is conducted to study the ring footing model's experimental cyclic behavior and circular footing resting on sandy soil reinforced with geocell. A group of ninety-six test models has been tested to investigate shallow footings' behavior beneath a cyclic loading of various loading rates. Four shapes of footing sand with three relative densities, two embedment depths of footing, two loading rates, and two widths of geocell were used. It was founded that as the footing depth increases, the settlement of soil due to cyclic loading decreases. Generally, when other variables are maintained to be the same, the footing bearing capacity increases when the foundation depth increases. The footing rebounds to some degree during the decay period of the load. The presence of geocell at the footing depth equals 100 mm will provide more improvement in all footing models more than using it at the surface, especially in ring 2 where the radius ratio is 0.4.
Title: Settlement of Ring Footing Resting on Geocell Reinforced Sandy Soil under Cyclic Load
Description:
Ring footings are widely used as a foundation for water tanks, television antennas, silos, chimneys, oil storage tanks, etc.
This paper is conducted to study the ring footing model's experimental cyclic behavior and circular footing resting on sandy soil reinforced with geocell.
A group of ninety-six test models has been tested to investigate shallow footings' behavior beneath a cyclic loading of various loading rates.
Four shapes of footing sand with three relative densities, two embedment depths of footing, two loading rates, and two widths of geocell were used.
It was founded that as the footing depth increases, the settlement of soil due to cyclic loading decreases.
Generally, when other variables are maintained to be the same, the footing bearing capacity increases when the foundation depth increases.
The footing rebounds to some degree during the decay period of the load.
The presence of geocell at the footing depth equals 100 mm will provide more improvement in all footing models more than using it at the surface, especially in ring 2 where the radius ratio is 0.
4.
Related Results
Penanggulangan Longsoran Dengan Menggunakan Geocell
Penanggulangan Longsoran Dengan Menggunakan Geocell
Dalam penanggulangan longsoran dengan geosintetik salah satunya adalah menggunakan Geocell. Telah dilakukan studi sebelumnya mengenai analisis kestabilan lereng dengan menggunakan ...
Geocell performance in stabilising railway ballast over soft clay subgrade
Geocell performance in stabilising railway ballast over soft clay subgrade
A three-dimensional finite element model is developed to investigate the effects of geocell inclusion within a railway ballast overlying typical soft clays found in the coastal reg...
The Research and Development of Safety Forewarning Composite Integral Strong Geocell
The Research and Development of Safety Forewarning Composite Integral Strong Geocell
In this paper, we have studied the high strength geocell development technology route, analyzed the rules of the
tensile properties and creep properties of geocell, and established...
Experimental study on anti-eroding effect of slope protected by degradable geocell
Experimental study on anti-eroding effect of slope protected by degradable geocell
Abstract
In order to study the anti-erosion mechanism of the new degradable geocell which is designed for slope protection and the influence of rainfall intensity an...
Model Tests on Geocell Walls Under Strip Loading
Model Tests on Geocell Walls Under Strip Loading
Abstract
Thermal power stations in India produce an enormous quantity of fly ash as a by-product. Fly ash utilization and disposal in an environmental friendly manne...
Uniaxial Compressive Process Simulation of Geocell-Reinforced Asphalt Mixture by Discrete Element
Uniaxial Compressive Process Simulation of Geocell-Reinforced Asphalt Mixture by Discrete Element
Based on laboratory tests and the discrete element method (DEM), this study investigated the reinforcement by geocells on the compressive process of asphalt mixture. By considering...
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Performance of Treated Date Palm Leaf Fiber as a Sustainable Reinforcement for Different Soil
Performance of Treated Date Palm Leaf Fiber as a Sustainable Reinforcement for Different Soil
The use of sustainable materials in geotechnical applications has increased in recent years due to their positive impacts on geo-environmental and future generations. This paper co...

