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SOIL SPRING MODEL SSM · Modelo de Resorte de Suelo

Validated empirical correlations for estimating the soil spring coefficient Ke in clay soils directly from the unconfined compressive strength qu.

FGET → NFF → ESPP → SSM

An integrated methodological architecture

SSM belongs to the THEK ecosystem of methods for complex systems. Each level has a precise role: theory, modelling, elastic-point identification, and geotechnical application.

FGET

Mathematical philosophy for formula evolution and selection.

NFF

Hierarchical modelling methodology through coefficient nesting.

ESPP

Protocol for identifying the elastic yield point on the stress-strain curve.

SSM

Applied correlations for calculating Ke in clay soils.

Engineering problem

Estimating Ke without relying exclusively on plate load testing

SSM transforms a parameter traditionally associated with costly in-situ testing into a quantity directly computable from a standard laboratory test.

01

Accessible

Uses the unconfined compression test, available in conventional soil laboratories.

02

Applicable

Provides Ke values ready for preliminary mat and slab modelling.

03

Traceable

The Ke–qu relationship remains explicit, interpretable, and verifiable.

SSM correlations

Four equations for clay soils

Ke is expressed in kg/cm³ and qu in kg/cm².

Stiff clays
Ke = 7.0193 qu − 2.1188
qu > 0.75 · Ke ≈ 4.00–8.00 kg/cm³
Moderately compact clays
Ke = 3.7052 qu + 0.3684
0.25 ≤ qu ≤ 0.75 · Ke ≈ 1.30–4.00 kg/cm³
Soft clays
Ke = 3.6367 qu + 0.277
qu < 0.25 · Ke ≈ 0.49–1.30 kg/cm³
General equation
Ke = 5.0805 qu − 0.1931
Applicable as a unified general estimate for clay soils.
Model verification

Three independent verification lines

Jiménez Salas (1980)

Comparison with widely used reference ranges for the coefficient of subgrade reaction.

Plate load tests

Dimensional and order-of-magnitude consistency with values obtained in situ.

SAP2000

Documented application to a five-story mat foundation model.

Applications

From the laboratory to the structural model

Preliminary sizing

Initial soil-stiffness estimation before the final geotechnical study.

Mat foundations

Preliminary spring modelling for slabs and mat foundations.

Soil scenarios

Response comparison for soft, intermediate, and stiff soils.

Projects without plate tests

Technical alternative for sites with cost or access restrictions.

INTERNATIONAL COLLABORATION

Collaboration, courses, cooperation, and exchanges

THEK Research Institute welcomes proposals from universities, companies, laboratories, professional organizations, and public institutions interested in applying, validating, teaching, or extending SSM and the broader THEK methods ecosystem.

01

Scientific collaboration

Joint research, independent validation, publications, and development of new correlations.

Propose collaboration
02

Courses and training

Institutional courses on SSM, ESPP, soil-structure interaction, SAP2000 modelling, and the FGET–NFF architecture.

Request a course
03

Technical cooperation

Method application in projects, comparative studies, foundation analysis, and methodological transfer.

Request cooperation
04

Academic exchanges

Seminars, keynote lectures, visiting researcher activities, university–industry cooperation, and knowledge exchange.

Propose an exchange
Institutional contact
Please describe your institution, collaboration objective, and expected scope.
research@hithek.com
Scientific SEO · Technical queries

Frequently asked questions about SSM

What is the Soil Spring Model (SSM)?

It is a set of four validated empirical correlations for estimating the soil spring coefficient Ke in clay soils from the unconfined compressive strength qu.

How is Ke calculated with SSM?

The engineer selects the correlation corresponding to the clay condition and enters the qu value obtained from the unconfined compression test. The initial result is expressed in kg/cm³ and can be converted to T/m³ or nodal spring stiffness.

How are ESPP and SSM connected?

ESPP identifies the elastic yield point on the stress-strain curve and provides Ke. SSM correlates those Ke values with qu for practical engineering use.

What projects can use SSM?

SSM can support preliminary sizing, initial mat-foundation modelling, soil-structure interaction analysis, and preliminary studies when plate load testing is unavailable.

Where can the paper and annexes be downloaded?

The English and Spanish versions and supplementary annexes are available in the official Zenodo record for SSM.

Open Science · CC BY 4.0

Download the paper, language versions, and annexes

The official Zenodo record includes the English version, the Spanish version, and the supplementary SSM materials.

Open Science · Academic identity

Publication and scientific profiles

Access the official DOI record, the academic dissemination page, and the author’s scientific identity profiles.