Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Model Tests on Geocell Walls Under Strip Loading

View through CrossRef
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 manner is a foremost concern in India. In the present study, an attempt has been made for proper utilization of fly ash as an alternative backfill material in geocell walls. This study also provides an approach for the use of waste plastic water bottles as geocells. The geocell diameter and height used in the model testing is 70 mm. Two types of structural geometry were considered in the study: gravity wall type and facing wall type. The lateral deformation of geocell wall and settlement of the backfill were studied under strip loading by varying facing angle of the wall, with and without reinforcement in the backfill. For both the type of walls, model testing results show that the maximum lateral deformation of geocell wall, backfill settlement, and failure surcharge pressures increased with decreasing facing angle of wall. For the reinforced case, the lateral deformation of the geocell wall was reduced considerably. When the reinforcement placed at top and total layers, the maximum lateral deformation of the geocell wall occurred at mid height of the wall. However, for bottom layers reinforced backfill, the maximum lateral deformation occurred at the top.
Title: Model Tests on Geocell Walls Under Strip Loading
Description:
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 manner is a foremost concern in India.
In the present study, an attempt has been made for proper utilization of fly ash as an alternative backfill material in geocell walls.
This study also provides an approach for the use of waste plastic water bottles as geocells.
The geocell diameter and height used in the model testing is 70 mm.
Two types of structural geometry were considered in the study: gravity wall type and facing wall type.
The lateral deformation of geocell wall and settlement of the backfill were studied under strip loading by varying facing angle of the wall, with and without reinforcement in the backfill.
For both the type of walls, model testing results show that the maximum lateral deformation of geocell wall, backfill settlement, and failure surcharge pressures increased with decreasing facing angle of wall.
For the reinforced case, the lateral deformation of the geocell wall was reduced considerably.
When the reinforcement placed at top and total layers, the maximum lateral deformation of the geocell wall occurred at mid height of the wall.
However, for bottom layers reinforced backfill, the maximum lateral deformation occurred at the top.

Related Results

Improvement of Seismic Performance of Ordinary Reinforced Partially Grouted Concrete Masonry Shear Walls
Improvement of Seismic Performance of Ordinary Reinforced Partially Grouted Concrete Masonry Shear Walls
Reinforced masonry constitutes about 10% of all low-rise construction in the US. Most of these structures are commercial and school buildings. It may also be used for multi-story h...
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...
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...
Long-term edge effect of strip roads in pine stands (Pinus sylvestris L.)
Long-term edge effect of strip roads in pine stands (Pinus sylvestris L.)
Crowns of trees neighboring a strip road are exposed to greater amounts of sunlight, which may result in the so-called edge effect, leading to enhanced tree growth. The aim of this...
Settlement of Ring Footing Resting on Geocell Reinforced Sandy Soil under Cyclic Load
Settlement of Ring Footing Resting on Geocell Reinforced Sandy Soil under Cyclic Load
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...
Ecological Engineering Trench Inspection and Foundation Reinforcement in the New Era
Ecological Engineering Trench Inspection and Foundation Reinforcement in the New Era
The structure layer of geocell reinforced with macadam, as well as effectiveness and practicality of such a method in foundation reinforcement during work progress of civil enginee...
Analysis and research on the bearing capacity of geocell reinforced cushion subgrade in liyu expressway
Analysis and research on the bearing capacity of geocell reinforced cushion subgrade in liyu expressway
Abstract This paper takes the filling roadbed of the Lipu-Yulin Expressway (Liyu Expressway) project in the Guangxi Zhuang Autonomous Region as the backup project. N...
High Modulus Walls in Updated EN 12063
High Modulus Walls in Updated EN 12063
High modulus wall, a pile wall consisting of only primary piles, is getting more popular solution as retaining wall in challenging conditions. This is now recognized also in standa...

Back to Top