What is gabion?
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Gabion is a welded wire cage or box filled with materials such as stone, concrete, sand, or soil. So, gabion is a partially flexible block construction used for slope stability and erosion protection in construction. Various types of gabions are constructed and used in different engineering constructions. Sometimes, live rooting branches may be placed between the rock-filled baskets which improves durability and stability of the gabion. This article presents gabion definition, types, applications, and advantages.
Gabion wire mesh properties
Wire mesh used to manufacture the cage of gabion shall poses certain properties otherwise it might not serve its purpose properly. Table 1 provides the desired properties of gabion wire mesh.
Types of Gabions
There are number of gabion configurations that can be selected based on their cost and function. Common types of Gabion are as follows:
It is a net wire mesh that produced in box-shaped and in different sizes.
Used in highway and railway works.
It would be economical unless filling materials are not available from quarries near the project site.
Gabion mattresses, also known as reno mattresses.
Gabion mattresses height is shorter than the other types of measurements as it might be observed from the Fig. 3.
It is employed in the channel coating for preventing erosion. So, it tackles wave and erosion induced velocity.
Common size, 6 m long by 2 m wide by 0,3 m high.
This type of gabions is formed quickly.
It has a porous and flexible structure.
Gabion sacks are usually used in hydraulic works in emergency conditions.
It is utilized to keep the possible rock and stone fall on the highway and railway surfaces.
Gabion wire mesh maintains stability of the slope close to highway and railways. It is applied for anti-erosion to slope.
It enhances embankment soil strength in combination with geogrid reinforcement.
It is used indoor and outdoor decoration, garden design and landscaping. Gabion elements offer suitable environment for the growth of plant roots.
Applications of gabions
Gabions are used in several engineering projects and serve various purposes. common applications of gabions are as follows:
Retaining structures such as retaining walls, revetment and toe walls to embankments and cuttings.
Corrosion prevention structures for instance sea walls, river bank defenses, canal banks, dams, weirs, groynes and for the protection of reservoirs and lakesides.
cylindrical metal gabion is used for dams or in foundation construction.
It is employed as a noise barrier.
Gabions are also used as a temporary flood walls.
It is utilized to change the direction of the force of flood water around weak structure. Stepped gabions improve energy dissipation in channels.
Finally, it is used for aesthetic purposes
Advantages of gabions
gabion, protection, erosion control, terramesh, hexagonal crates, pvc gabion, wire mesh, gabion wall, gabion box
Not to be confused with Bastion
Reinforced earth with gabions supporting a multilane roadway Gabions as X-ray protection during customs inspectionA gabion (from Italian gabbione meaning "big cage"; from Italian gabbia and Latin cavea meaning "cage") is a cage, cylinder or box filled with rocks, concrete, or sometimes sand and soil for use in civil engineering, road building, military applications and landscaping.
For erosion control, caged riprap is used. For dams or in foundation construction, cylindrical metal structures are used. In a military context, earth- or sand-filled gabions are used to protect sappers, infantry, and artillerymen from enemy fire.
Leonardo da Vinci designed a type of gabion called a Corbeille Leonard ("Leonard[o] basket") for the foundations of the San Marco Castle in Milan.[1]
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Bridge abutment with gabionsThe most common civil engineering use of gabions was refined and patented by Gaetano Maccaferri in the late 19th century in Sacerno, Emilia Romagna and used to stabilize shorelines, stream banks or slopes against erosion. Other uses include retaining walls, noise barriers, temporary flood walls, silt filtration from runoff, for small or temporary/permanent dams, river training, or channel lining. They may be used to direct the force of a flow of flood water around a vulnerable structure.
Gabions are also used as fish screens on small streams. Gabion stepped weirs are commonly used for river training and flood control; the stepped design enhances the rate of energy dissipation in the channel, and it is particularly well suited to the construction of gabion stepped weirs.[2]
A gabion wall is a retaining wall made of stacked stone-filled gabions tied together with wire. Gabion walls are usually battered (angled back towards the slope), or stepped back with the slope, rather than stacked vertically.
The life expectancy of gabions depends on the lifespan of the wire, not on the contents of the basket. The structure will fail when the wire fails. Galvanized steel wire is most common, but PVC-coated and stainless steel wire are also used. PVC-coated galvanized gabions have been estimated to survive for 60 years.[3] Some gabion manufacturers guarantee a structural consistency of 50 years.[4]
In the United States, gabion use within streams first began with projects completed from to on North River, Virginia, and Zealand River, New Hampshire.[5] More than 150 grade-control structures, bank revetments and channel deflectors were constructed on the two U.S. Forest Service sites. Eventually, a large portion of the in-stream structures failed due to undermining and lack of structural integrity of the baskets. In particular, corrosion and abrasion of wires by bedload movement compromised the structures, which then sagged and collapsed into the channels. Other gabions were toppled into channels as trees grew and enlarged on top of gabion revetments, leveraging them toward the river channels.
Gabions have also been used in building, as in the Dominus Winery in the Napa Valley, California, by architects Herzog & de Meuron, constructed between and . The exterior is formed by modular wire mesh gabions containing locally quarried stone; this construction allows air movement through the building and creates an environment of moderate temperatures inside.[6][7]
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Bank protection made with mattressesThere are various special designs of gabions to meet particular functional requirements and some special terms for particular forms have come into use. For example:[8]
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Gabions with cannon, from a late 16th-century illustrationEarly gabions were round cages with open tops and bottoms, made from wickerwork and filled with earth for use as military fortifications.[10]:38 Willow twigs were brought from East Lothian to make gabions to protect gun emplacements in Edinburgh in April , during the siege of Edinburgh Castle.[11]
These early military gabions were most often used to protect sappers and siege artillery gunners.[10]:39 The wickerwork cylinders were light and could be carried relatively conveniently in the ammunition train, particularly if they were made in several diameters to fit one inside another. At the site of use in the field, they could be stood on end, staked in position, and filled with soil to form an effective wall around the gun, or rapidly construct a bulletproof parapet along a sap. During the Crimean War, local shortages of brushwood led to use of scrap hoop-iron from hay bales in its stead; this in turn led to purpose-built sheet-iron gabions.[10]:182
Today, gabions are often used to protect forward operating bases (FOBs) against explosive, fragmentary, indirect fires such as mortar or artillery fire. Examples of areas within a FOB that make extensive use of gabions are sleeping quarters, mess halls, or any place where there would be a large concentration of unprotected soldiers. Gabions are also used for aircraft revetments, blast walls, and similar structures. A gabion is often referred to as a "Hesco bastion".
The interior of Fort Stedman in , showing a breastwork constructed with gabions to protect gun positions
Modern Hesco bastions
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Gabions may be used for attenuating dynamic load as those resulting from impacts by vehicles or rockfall for example. First, gabions may be suitable as a vehicle restraint system in scenic lower speed roads.[12] Second, when used as facing of earth-reinforced structures with a vertical face, gabions offer a more deformable surface to impact compared to other classical geotechnical alternatives. This higher deformability results from crushing and large displacements of the fill content. As a result, the impact load transmitted to the structure is reduced, due to both impact energy dissipation and peak force attenuation. In an optimization process, the fill material can be adapted to meet specific requirements, in terms of impact response. This in particular led to the use of recycled materials (tires and ballast from railway tracks) in the core of some rockfall protection embankments.[13][14]
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