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This document outlines the theories and principles of retaining wall construction, detailing design considerations, types of retaining walls, construction techniques, tanking materials, and drainage
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Start by obtaining a copy of Unit 13026 specific to Retaining Walls.
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Who needs Unit 13026 Theory; Retaining walls?

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Civil engineering students looking to enhance their knowledge of retaining wall theory.
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Professionals in construction and design who want to understand retaining walls.
03
Architects needing to incorporate retaining walls into their designs.
04
Construction project managers overseeing projects that involve earth retention.
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In this post, we'll look at four different retaining walls — gravity retaining walls, cantilever retaining walls, sheet pile retaining walls, and “reinforced soil” or “geosynthetic reinforced” wall systems — so you can determine which one is best suited for your needs.
A retaining wall is a structure that holds or retains soil behind it. There are many types of materials that can be used to create retaining walls like concrete blocks, poured concrete, treated timbers, rocks or boulders. Some are easy to use, others have a shorter life span, but all can retain soil.
Retaining walls are designed to restrain soil, or engineering fill, at an angle steeper than the material's angle of repose – the steepest angle it can hold naturally, without failing. To do this, they need to be able to withstand the horizontal – or lateral – earth pressure, exerted by the material being retained.
Purpose of Retaining Wall Retaining walls are essential structures used to support soil where level differences exist. Their main purpose is to prevent the natural movement of soil and maintain the shape of the terrain.
What is a retaining wall? A retaining wall is a structure that serves to prevent a mass of matter, usually earth or rocks on a slope, from falling or collapsing.
Retaining walls are designed to restrain soil, or engineering fill, at an angle steeper than the material's angle of repose – the steepest angle it can hold naturally, without failing. To do this, they need to be able to withstand the horizontal – or lateral – earth pressure, exerted by the material being retained.
Definition. A retaining wall is designed to hold in place a mass of earth or the like, such as the edge of a terrace or excavation. The structure is constructed to resist the lateral pressure of soil when there is a desired change in ground elevation that exceeds the angle of repose of the soil.
RETAINING STRUCTURES Page 2 Page 3 A retaining wall is a structure that retains (holds back) any material (usually earth) and prevents it from sliding or eroding away. It is designed so that to resist the material pressure of the material that it is holding back.

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Unit 13026 Theory; Retaining walls refers to a set of guidelines and principles governing the design and analysis of retaining walls, structures used to hold back soil and other materials.
Engineers, designers, and construction professionals involved in the design and construction of retaining walls are typically required to file Unit 13026 Theory; Retaining walls.
To fill out Unit 13026 Theory; Retaining walls, individuals must provide relevant project information, including design specifications, material properties, site conditions, and structural calculations.
The purpose of Unit 13026 Theory; Retaining walls is to ensure proper design practices are followed for safety, stability, and effectiveness in retaining wall construction.
The information that must be reported includes wall dimensions, loading conditions, soil characteristics, applicable safety factors, and any relevant calculations that support the design.
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