Knowing Cellular Confinement System Even More
The world today is certainly embracing the technological innovations, which bring a lot of benefits to the people. These technological innovations have been the main reasons why almost impossible things to discover have been unveiled. One amazing product of the said technological innovations is the cellular confinement system.
Just in case you don’t know, cellular confinement system or CCS is otherwise known as geocell. This system has been very helpful the moment it was being discovered and even up to this day. Steep slopes and flat grounds can be greatly protected from soil erosion since cellular confinement system can make the soil strongly stabilized. CCS can also be an effective channel protection in the numerous construction sites in the world. It can even be used as a structural reinforcement in load support as well as earth retention.
Typically, HDPE or high-density polyethylene strips or NPA (Novel Polymeric Alloy) is the main important material used in making cellular confinement system. In order to make a honeycomb-like structure, the cellular confinement system is spread in construction sites. It will then be covered with gravel or concrete, rock, soil, and sand. That is all, and the area will then become free from severe soil erosion incidents. This is such an amazing invention, right?
A Little History Regarding Cellular Confinement System
The truth is, it was way back in the year 1975 when cellular confinement system was discovered. Its discoverers were none other than the US Army Corps of Engineers. This group of people was once tasked to come up with the best and effective approach in building tactical roads for any soft ground. Sand confinement systems are way better when it comes to performance compared to the traditional crushed stone sections. This was the discovery of these Engineers. With sand confinement systems, expedient construction method in accessing roads that are under soft ground is possible. And take note, the wet weather conditions can never badly affect it.
Way back in the year 1981, US Army Corps of Engineers in the beautiful place of Vicksburg, Mississippi did a lot of confining system related experiments. For these experiments, they mainly used prefabricated polymeric systems, slotted aluminum sheets, and plastic pipe mats which then lead to the discovery of cellular confinement system.
How Cellular Confinement System Exactly Works?
Excellent geotechnical and mechanical properties can be created if compacted soil will be infilled to the cellular confinement system. In case the cellular confinement system contains a subject-to-pressure soil, it will create lateral stresses on the perimeter cell walls during the load support application. As a result, high lateral stress as well as resistance on cell-surface interface can be expected. The soil particles’ lateral movement can also be reduced due to the confinement’s 3D zone.
When these things happen, the confined soil’s shear strength can be increased to a more higher level. This will then lead to decreased soil deformation, higher bearing capacity of the soil, reduced cases of soft soil punching, and increased shear resistance of the soil.
Just in case you don’t know, cellular confinement system or CCS is otherwise known as geocell. This system has been very helpful the moment it was being discovered and even up to this day. Steep slopes and flat grounds can be greatly protected from soil erosion since cellular confinement system can make the soil strongly stabilized. CCS can also be an effective channel protection in the numerous construction sites in the world. It can even be used as a structural reinforcement in load support as well as earth retention.
Typically, HDPE or high-density polyethylene strips or NPA (Novel Polymeric Alloy) is the main important material used in making cellular confinement system. In order to make a honeycomb-like structure, the cellular confinement system is spread in construction sites. It will then be covered with gravel or concrete, rock, soil, and sand. That is all, and the area will then become free from severe soil erosion incidents. This is such an amazing invention, right?
A Little History Regarding Cellular Confinement System
The truth is, it was way back in the year 1975 when cellular confinement system was discovered. Its discoverers were none other than the US Army Corps of Engineers. This group of people was once tasked to come up with the best and effective approach in building tactical roads for any soft ground. Sand confinement systems are way better when it comes to performance compared to the traditional crushed stone sections. This was the discovery of these Engineers. With sand confinement systems, expedient construction method in accessing roads that are under soft ground is possible. And take note, the wet weather conditions can never badly affect it.
Way back in the year 1981, US Army Corps of Engineers in the beautiful place of Vicksburg, Mississippi did a lot of confining system related experiments. For these experiments, they mainly used prefabricated polymeric systems, slotted aluminum sheets, and plastic pipe mats which then lead to the discovery of cellular confinement system.
How Cellular Confinement System Exactly Works?
Excellent geotechnical and mechanical properties can be created if compacted soil will be infilled to the cellular confinement system. In case the cellular confinement system contains a subject-to-pressure soil, it will create lateral stresses on the perimeter cell walls during the load support application. As a result, high lateral stress as well as resistance on cell-surface interface can be expected. The soil particles’ lateral movement can also be reduced due to the confinement’s 3D zone.
When these things happen, the confined soil’s shear strength can be increased to a more higher level. This will then lead to decreased soil deformation, higher bearing capacity of the soil, reduced cases of soft soil punching, and increased shear resistance of the soil.
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