BUILDING I TECHNOLOGY I RESOURCES
FOUNDATION MAINTENANCE AND FOOTING PERFORMANCE
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Preventing soil-related building movement
This Building Technology Resource is designed as a homeowner's guide on the causes of soil-related building movement, and suggested methods to prevent resultant cracking.
particularly imported sand fill for bedding and blinding layers. However, this usually occurs as immediate settlement and should normally be the province of the builder. SEASONAL SWELLING AND SHRINKAGE OF SOIL All clays react to the presence of water by slowly absorbing it, making the soil increase in volume (see table below, from AS 2870). The degree of increase varies considerably between different clays, as does the degree of decrease during the subsequent drying out caused by fair weather periods. Because of the low absorption and expulsion rate, this phenomenon will not usually be noticeable unless there are prolonged rainy or dry periods, usually of weeks or months, depending on the land and soil characteristics. The swelling of soil creates an upward force on the footings of the building, and shrinkage creates subsidence that takes away the support needed by the footing to retain equilibrium. SHEAR FAILURE This phenomenon occurs when the foundation soil does not have sufficient strength to support the weight of the footing.There are two major post-construction causes: ► Significant load increase. ► Reduction of lateral support of the soil under the footing due to erosion or excavation. In clay soil, shear failure can be caused by saturation of the soil adjacent to or under the footing. TREE ROOT GROWTH Trees and shrubs that are allowed to grow in the vicinity of footings can cause foundation soil movement in two ways: ► Roots that grow under footings may increase in cross-sectional size, exerting upward pressure on footings.
Buildings can and often do move. This movement can be up, down, lateral or rotational. The fundamental cause of movement in buildings can usually be related to one or more problems in the foundation soil. It is important for the home owner to identify the soil type in order to ascertain the measures that should be put in place in order to ensure that problems in the foundation soil can be prevented, thus protecting against building movement. Generally soil classification is provided by a geotechnical report. SOIL TYPES The types of soils usually present under the topsoil in land zoned for residential buildings can be split into two approximate groups - granular and clay.Quite often, foundation soil is a mixture of both types.The general problems associated with soils having granular content are usually caused by erosion. Clay soils are subject to saturation and swell/shrink problems. As most buildings suffering movement problems are founded on clay soils, there is an emphasis on classification of soils according to the amount of swell and shrinkage they experience with variations of water content. Table 1 below is a reproduction of Table 2.1 from Australian Standard AS 2870-2011, Residential slabs and footings.
CAUSES OF MOVEMENT
SETTLEMENT DUE TO CONSTRUCTION Therearetwotypesof settlementthat occur as a result of construction: ► Immediate settlement occurs when a building is first placed on its foundation soil, as a result of compaction of the soil under the weight of the structure. The cohesive quality of clay soil mitigates against this, but granular (particularly sandy) soil is susceptible. ► Consolidation settlement is a feature of clay soil and may take place because of the expulsion of moisture from the soil or because of the soil's lack of resistance to local compressive or shear stresses.This will usually take place during the first few months after construction but has been known to take many years in exceptional cases. These problems may be the province of the builder and should be taken into consideration as part of the preparation of the site for construction. EROSION All soils are prone to erosion, but sandy soil is particularly susceptible to being washed away. Even clay with a sand component of say 10% or more can suffer from erosion. SATURATION This is particularly a problem in clay soils.Saturation creates a bog like suspension of the soil that causes it to lose virtually all of its bearing capacity.To a lesser degree, sand is affected by saturation because saturated sand may undergo a reduction in volume,
TABLE 1. GENERAL DEFINITIONS OF SITE CLASSES.
Foundation Most sand and rock sites withlittle or no ground movement from moisture changes Slightly reactive clay sites, which may experience only slight ground movement from moisture changes Moderately reactive clay or silt sites, which may experience moderate ground movement from moisture changes Highly reactive clay sites, which may experience high ground movement from moisture changes Highly reactive clay sites, which may experience very high ground movement from moisture changes Extremely reactive sites, which may experience extreme ground movement from moisture changes
Class
A
s
M
Hl
H2
Source: Reproduced with the permission of Standards Australia Limited© 2011. Copyright in AS 2870-2011 Residential slabs and footings vests in Standards Australia Limited.
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