
Foundation Construction Course
Master every phase of foundation construction, from soil investigation and bearing capacity analysis to deep pile systems and excavation support. This course delivers the technical depth and practical methods that structural and geotechnical professionals need to design, build, and verify foundations that perform. Build the expertise that separates competent engineers from trusted specialists.
What you will learn:
You will develop a complete understanding of soil behavior, site investigation, and geotechnical testing, then apply that knowledge directly to shallow and deep foundation design. The course covers bearing capacity theory, settlement analysis, pile selection, and load testing programs. You will also learn to design excavation support systems, manage groundwater, and implement quality control on site. Remediation methods, including underpinning, ground improvement, and integrity testing, are covered in full. Supplementary content addresses sustainability, digital tools, BIM workflows, and project management for foundation works.
How you study in a practical way Foundation Construction Course
How you practice Foundation Construction Course
For companies who want to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Foundation Construction
Introduction to Foundation Construction
Lesson 1 • Groundwater and Its Effects
Examines water table depth, perched water, and hydrostatic pressure on foundations. Links groundwater conditions to design and construction risk.
Lesson 2 • Soil Classification and Properties
Covers grain size, plasticity, and unified classification of soils. Connects soil type to bearing capacity and settlement potential.
Lesson 3 • Regulatory and Safety Framework
Outlines approval processes, geotechnical reporting standards, and site safety obligations. Frames the compliance context for all practical work.
Lesson 4 • Role of Foundations in Structures
Explains how foundations transfer structural loads to bearing soil or rock. Establishes the functional purpose that drives all subsequent design choices.
Lesson 5 • Site Investigation Fundamentals
Introduces desk studies, field reconnaissance, and borehole planning. Provides the data-gathering framework used throughout the course.
Chapter 2HideHide detailsSee detailsGeotechnical Investigation and Testing
Geotechnical Investigation and Testing
Lesson 1 • In-Situ Testing Techniques
Teaches standard penetration, cone penetration, and vane shear tests. Connects test results directly to bearing capacity and pile design parameters.
Lesson 2 • Laboratory Soil Testing
Covers consolidation, triaxial, and direct shear tests for strength and compressibility. Provides the lab data needed to validate field test correlations.
Lesson 3 • Subsurface Exploration Methods
Covers rotary drilling, auger boring, and trial pits for subsurface profiling. Builds on site investigation basics to select appropriate exploration tools.
Lesson 4 • Geotechnical Report Preparation
Structures borehole logs, test summaries, and design recommendations into a professional report. Ensures findings are communicated clearly to design teams.
Chapter 3HideHide detailsSee detailsBearing Capacity and Settlement Analysis
Bearing Capacity and Settlement Analysis
Lesson 1 • Allowable Bearing Pressure Selection
Applies factors of safety and serviceability limits to derive allowable pressures. Bridges theory to practical design values used on drawings.
Lesson 2 • Bearing Capacity Theory
Derives general bearing capacity equations for shallow foundations on various soils. Establishes the theoretical basis for all subsequent sizing calculations.
Lesson 3 • Settlement Monitoring and Verification
Covers survey benchmarks, settlement plates, and back-analysis of monitored data. Closes the design loop by comparing predictions to field measurements.
Lesson 4 • Differential Settlement and Distortion
Evaluates differential settlement between adjacent footings and its effect on structure. Introduces angular distortion limits used in structural damage assessment.
Lesson 5 • Immediate and Consolidation Settlement
Calculates elastic immediate settlement and time-dependent consolidation settlement. Connects soil compressibility parameters from lab tests to predicted deformation.
Chapter 4HideHide detailsSee detailsShallow Foundation Design and Construction
Shallow Foundation Design and Construction
Lesson 1 • Quality Control for Shallow Foundations
Establishes inspection hold points, concrete testing, and as-built survey requirements. Links construction quality to long-term foundation performance.
Lesson 2 • Raft Foundation Design
Covers rigid and flexible raft analysis methods for heavily loaded or weak-soil sites. Connects raft behavior to differential settlement control.
Lesson 3 • Combined and Strap Footings
Addresses combined footings for closely spaced columns and strap beams for eccentric loads. Extends single-footing design to more complex column arrangements.
Lesson 4 • Spread and Strip Footing Design
Sizes isolated column footings and continuous wall footings using bearing capacity results. Introduces reinforcement layout and concrete cover requirements.
Lesson 5 • Excavation and Formwork for Footings
Details bulk excavation, trimming to formation level, and footing formwork assembly. Ensures construction quality matches design intent from the outset.
Chapter 5HideHide detailsSee detailsDeep Foundation Types and Selection
Deep Foundation Types and Selection
Lesson 1 • Micropiles and Specialty Systems
Introduces small-diameter grouted micropiles for restricted access and underpinning. Addresses helical piles and jet-grouted columns as alternative systems.
Lesson 2 • Caissons and Large-Diameter Shafts
Covers open caissons, pneumatic caissons, and drilled shafts for bridge and heavy industrial use. Extends pile knowledge to large-diameter, high-capacity elements.
Lesson 3 • Driven Pile Systems
Covers steel H-piles, precast concrete piles, and pipe piles installed by impact or vibratory driving. Connects pile type to soil conditions and installation effects.
Lesson 4 • When Deep Foundations Are Required
Identifies weak near-surface soils, heavy loads, and scour conditions that necessitate deep foundations. Builds decision criteria on top of bearing capacity knowledge.
Lesson 5 • Bored and Auger Cast Piles
Explains rotary bored, continuous flight auger, and cased bored pile construction. Addresses spoil management and concrete integrity in bored pile methods.
Chapter 6HideHide detailsSee detailsPile Design and Load Testing
Pile Design and Load Testing
Lesson 1 • Lateral Load and Moment Capacity
Analyzes pile response to horizontal loads using p-y curves and elastic methods. Addresses fixed-head and free-head conditions for different pile cap configurations.
Lesson 2 • Pile Group Behavior and Efficiency
Evaluates group efficiency factors, block failure, and differential settlement within pile groups. Extends single-pile design to multi-pile cap configurations.
Lesson 3 • Dynamic Pile Analysis
Covers wave equation analysis, dynamic formulas, and high-strain dynamic testing. Provides rapid capacity verification during pile installation.
Lesson 4 • Static Load Testing Programs
Plans and interprets maintained load, quick load, and bi-directional load tests. Provides the verification data required before full production pile installation.
Lesson 5 • Static Axial Capacity Methods
Applies alpha, beta, and lambda methods to calculate skin friction and end bearing. Builds directly on in-situ test data from the geotechnical investigation chapter.
Chapter 7HideHide detailsSee detailsExcavation Support and Dewatering
Excavation Support and Dewatering
Lesson 1 • Secant, Contiguous, and Diaphragm Walls
Explains construction sequences for secant pile walls, contiguous pile walls, and slurry diaphragm walls. Addresses watertightness and structural continuity requirements.
Lesson 2 • Sheet Pile and Soldier Pile Walls
Covers cantilever and propped sheet pile design and soldier pile with lagging systems. Connects earth pressure theory to practical wall sizing and embedment depth.
Lesson 3 • Dewatering and Groundwater Control
Covers wellpoints, deep wells, and cut-off walls for groundwater management in excavations. Links dewatering design to settlement risk for adjacent structures.
Lesson 4 • Lateral Earth Pressure Theory
Derives active, passive, and at-rest earth pressures for cohesive and cohesionless soils. Provides the loading basis for all retaining and support structure design.
Lesson 5 • Bracing, Tiebacks, and Struts
Designs internal strut frames, raking struts, and ground anchors for multi-level excavations. Extends wall design to the support systems that control wall deflection.
Chapter 8HideHide detailsSee detailsFoundation Inspection, Testing, and Remediation
Foundation Inspection, Testing, and Remediation
Lesson 1 • Pile Integrity Testing Methods
Covers low-strain sonic echo, cross-hole sonic logging, and gamma-gamma testing for pile defects. Provides non-destructive tools to verify pile continuity before loading.
Lesson 2 • Diagnosing Foundation Distress
Identifies crack patterns, differential movement, and heave as indicators of foundation failure modes. Builds diagnostic skills that guide remediation strategy selection.
Lesson 3 • Underpinning and Strengthening Methods
Covers mass concrete underpinning, pile underpinning, and resin injection for foundation repair. Addresses sequencing and temporary support during underpinning operations.
Lesson 4 • Ground Improvement as Remediation
Applies compaction grouting, dynamic compaction, and stone columns to improve weak bearing strata. Extends remediation options beyond structural underpinning to soil treatment.
Lesson 5 • Foundation Performance Monitoring
Installs inclinometers, load cells, and piezometers to track foundation behavior during construction. Connects monitoring data to design assumptions for real-time verification.
Your valid completion certificate
This course is for you:
Civil engineer: needs structured geotechnical knowledge to lead foundation decisions confidently.
Structural engineer: wants to evaluate foundation options without relying entirely on specialists.
Construction project manager: oversees foundation works but lacks deep technical design background.
Graduate engineer: building core competency before taking on independent geotechnical responsibilities.
Building inspector: needs stronger technical grounding to assess foundation compliance on site.
Career changer from geology: transitioning into applied geotechnical and foundation engineering roles.
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