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  2. Retaining wall - Wikipedia

    en.wikipedia.org/wiki/Retaining_wall

    Drystone retaining walls are normally self-draining. As an example, the International Building Code requires retaining walls to be designed to ensure stability against overturning, sliding, excessive foundation pressure and water uplift; and that they be designed for a safety factor of 1.5 against lateral sliding and overturning. [6]

  3. Geonets - Wikipedia

    en.wikipedia.org/wiki/Geonets

    Road construction can make use of geonets; Repairing potholes and patching roadways; The joints in asphalt roads can be reinforced; It serves as a layer to remove water from behind retaining walls; it serves as a drainage blanket underneath the building foundation and surcharge fill; Strengthening asphalt concrete pavement joints; Avoiding cracking

  4. Lateral earth pressure - Wikipedia

    en.wikipedia.org/wiki/Lateral_earth_pressure

    An example of lateral earth pressure overturning a retaining wall. The lateral earth pressure is the pressure that soil exerts in the horizontal direction. It is important because it affects the consolidation behavior and strength of the soil and because it is considered in the design of geotechnical engineering structures such as retaining walls, basements, tunnels, deep foundations and ...

  5. Terraced wall - Wikipedia

    en.wikipedia.org/wiki/Terraced_wall

    Terraced wall on La Gomera. A terraced wall, also a terrace wall, or a terraced retaining wall is a wall that is divided into sections over a slope. Such designs are useful when building on a steep grade. Terraced walls may be built with many different materials. Some craters have terraced walls, which includes complex craters. [1] [2]

  6. Embankment (earthworks) - Wikipedia

    en.wikipedia.org/wiki/Embankment_(earthworks)

    An embankment is a raised wall, bank or mound made of earth or stones, that are used to hold back water or carry a roadway. A road , railway line , or canal is normally raised onto an embankment made of compacted soil (typically clay or rock-based) to avoid a change in level required by the terrain , the alternatives being either to have an ...

  7. Tieback (geotechnical) - Wikipedia

    en.wikipedia.org/wiki/Tieback_(geotechnical)

    Typically in the form of a horizontal wire or rod, or a helical anchor, a tieback is commonly used along with other retaining systems (e.g. soldier piles, sheet piles, secant and tangent walls) to provide additional stability to cantilevered retaining walls. [1]

  8. Soil compaction - Wikipedia

    en.wikipedia.org/wiki/Soil_compaction

    Soil compaction is a vital part of the construction process. It is used for support of structural entities such as building foundations, roadways, walkways, and earth retaining structures to name a few. For a given soil type certain properties may deem it more or less desirable to perform adequately for a particular circumstance.

  9. Bearing capacity - Wikipedia

    en.wikipedia.org/wiki/Bearing_capacity

    In geotechnical engineering, bearing capacity is the capacity of soil to support the loads applied to the ground. The bearing capacity of soil is the maximum average contact pressure between the foundation and the soil which should not produce shear failure in the soil.

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