2020IOP Conference Series Materials Science and EngineeringOpen access

A Review on Correlations for Consolidation Characteristics of Various Soils

S. Jayalekshmi, V. Elamathi

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Abstract

Abstract Settlement is the major problem that arises after the construction of a structure on a soil mass. Consolidation characteristics of soil such as coefficient of consolidation cv, compression index cc, recompression index cr, preconsolidation pressureσ′pplay a major role in the settlement behavior of fine grained soil mass. cv represents the rate of consolidation of soil mass. cc and cr are essential in calculating settlement of normally and over consolidated clays respectively.σ′pis determined to find whether the clay is under, normally or over consolidated. These consolidation properties are obtained from graphical constructions after conducting several one dimensional consolidation-oedometer tests. Since this is time consuming, many correlations have been derived between consolidation properties and index properties of soil. Different researchers have used various soil parameters such as liquid limit (wL), plastic limit (wp), natural moisture content (wn), initial insitu void ratio (eo), dry unit weight (γd), plasticity index (Ip), void ratio at liquid limit (eL) etc., as correlative parameters for deriving the correlations. Hence, it is desirable to predict the value of cv, cc, cr andσ′pfrom the known correlations rather than conducting several tests, to ease the procedures.

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Abstract Settlement is the major problem that arises after the construction of a structure on a soil mass. Consolidation characteristics of soil such as coefficient of consolidation cv, compression index cc, recompression index cr, preconsolidation pressureσ′pplay a major role in the settlement behavior of fine grained soil mass. cv represents the rate of consolidation of soil mass. cc and cr are essential in calculating settlement of normally and over consolidated clays respectively.σ′pis determined to find whether the clay is under, normally or over consolidated. These consolidation properties are obtained from graphical constructions after conducting several one dimensional consolidation-oedometer tests. Since this is time consuming, many correlations have been derived between consolidation properties and index properties of soil. Different researchers have used various soil parameters such as liquid limit (wL), plastic limit (wp), natural moisture content (wn), initial insitu void ratio (eo), dry unit weight (γd), plasticity index (Ip), void ratio at liquid limit (eL) etc., as correlative parameters for deriving the correlations. Hence, it is desirable to predict the value of cv, cc, cr andσ′pfrom the known correlations rather than conducting several tests, to ease the procedures.

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Available abstract

Abstract Settlement is the major problem that arises after the construction of a structure on a soil mass. Consolidation characteristics of soil such as coefficient of consolidation cv, compression index cc, recompression index cr, preconsolidation pressureσ′pplay a major role in the settlement behavior of fine grained soil mass. cv represents the rate of consolidation of soil mass. cc and cr are essential in calculating settlement of normally and over consolidated clays respectively.σ′pis determined to find whether the clay is under, normally or over consolidated. These consolidation properties are obtained from graphical constructions after conducting several one dimensional consolidation-oedometer tests. Since this is time consuming, many correlations have been derived between consolidation properties and index properties of soil. Different researchers have used various soil parameters such as liquid limit (wL), plastic limit (wp), natural moisture content (wn), initial insitu void ratio (eo), dry unit weight (γd), plasticity index (Ip), void ratio at liquid limit (eL) etc., as correlative parameters for deriving the correlations. Hence, it is desirable to predict the value of cv, cc, cr andσ′pfrom the known correlations rather than conducting several tests, to ease the procedures.

Key concepts: Oedometer test, Atterberg limits, Consolidation (business), Void ratio, Geotechnical engineering, Water content, Clay soil, Soil water

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