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Natural Pool Training
More than 2 million students worldwide

Natural Pool Training

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Master every phase of natural pool design, construction, and maintenance with a curriculum built on real-world practice. From site assessment and zone calculations to aquatic planting and water quality management, this training gives you the technical foundation to deliver chemical-free pools that work. Whether you're entering the field or expanding your services, this course equips you to build and manage natural pools with confidence.

Dedika for businesses

What you will learn:

This course covers the complete lifecycle of a natural pool project, starting with ecological principles and site assessment and moving through pool sizing, liner systems, hydraulic design, and aquatic plant establishment. You will learn how to monitor and manage water quality using both field testing and laboratory analysis. Seasonal maintenance procedures, long-term renovation planning, and wildlife integration are also addressed. Supplementary modules cover digital monitoring technology, sustainable water sourcing, client communication, and business development. By the end, you will have the technical and practical skills to design, build, and manage natural pools professionally.

How you study in practice Natural Pool Training

How you practice Natural Pool Training

For companies that want to train their team

With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.

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Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Natural Pool Design

  • Lesson 1 • What Is a Natural Pool

    Defines natural pools by their biological filtration and plant-based purification. Provides the conceptual baseline for all subsequent design and construction topics.

  • Lesson 2 • Zone Layout and Pool Anatomy

    Introduces the swim zone and regeneration zone as the two core spatial components. Students map functional relationships between zones to guide later sizing decisions.

  • Lesson 3 • Water Quality Fundamentals

    Covers key water chemistry parameters: pH, dissolved oxygen, turbidity, and nutrients. Connects parameter targets to plant and microbial health outcomes.

  • Lesson 4 • Regulatory and Safety Overview

    Surveys health and safety standards applicable to public and private natural pools. Students recognize compliance obligations before beginning any project.

  • Lesson 5 • Ecological Balance Concepts

    Explains how plants, microbes, and invertebrates interact to maintain water quality. Students identify imbalance indicators and their root causes.

Chapter 2See details

Site Assessment and Planning

  • Lesson 1 • Producing the Site Assessment Report

    Integrates all site data into a structured report with recommendations and risk flags. Students practice a professional deliverable format used in real projects.

  • Lesson 2 • Soil and Substrate Evaluation

    Covers soil permeability, clay content, and contamination screening methods. Soil data directly informs liner selection and substrate depth decisions.

  • Lesson 3 • Hydrological Site Analysis

    Teaches groundwater depth, surface runoff patterns, and seasonal water table variation. Accurate hydrology data prevents liner failure and nutrient overload.

  • Lesson 4 • Spatial Constraints and Access

    Identifies setback requirements, underground utilities, and equipment access routes. Spatial planning prevents costly redesigns during construction.

  • Lesson 5 • Solar Exposure and Microclimate

    Analyzes sun hours, shading sources, and wind exposure across the site. Solar data drives plant selection, algae risk, and evaporation rate estimates.

Chapter 3See details

Pool Sizing and Zone Calculations

  • Lesson 1 • Swim Zone Sizing

    Applies minimum area-per-bather ratios and depth profiles to define swim zone dimensions. Correct sizing ensures comfort, safety, and adequate dilution capacity.

  • Lesson 2 • Regeneration Zone Sizing

    Calculates the plant bed area needed to process the nutrient load from the swim zone. Students apply uptake rate data for common aquatic plants to size beds accurately.

  • Lesson 3 • Hydraulic Retention Time

    Defines hydraulic retention time and its role in biological treatment efficiency. Students calculate pump flow rates needed to achieve target retention times.

  • Lesson 4 • Volume and Water Balance

    Calculates total pool volume, evaporation losses, and top-up water requirements. Water balance data informs infrastructure planning and ongoing operating costs.

  • Lesson 5 • Bather Load and Demand Modeling

    Establishes how peak bather numbers drive nutrient input and oxygen demand. Students calculate daily nutrient loads as the starting point for zone sizing.

Chapter 4See details

Liner, Substrate, and Structural Systems

  • Lesson 1 • Structural Edge and Coping Details

    Designs pool edges for safety, aesthetics, and liner protection using coping and retaining elements. Edge details also manage surface runoff entry into the pool.

  • Lesson 2 • Substrate Profiles for Plant Zones

    Specifies gravel, sand, and soil layer sequences that support rooted aquatic plants. Correct substrate depth and grain size optimize nutrient uptake and root anchorage.

  • Lesson 3 • Skimmer and Overflow Systems

    Installs surface skimmers and overflow weirs to remove floating debris and control water level. These systems protect plant zones from organic overload.

  • Lesson 4 • Liner Material Selection

    Compares EPDM, PVC, bentonite, and clay liners on durability, permeability, and ecology. Material choice affects long-term water retention and plant compatibility.

  • Lesson 5 • Liner Installation Techniques

    Covers subgrade preparation, geotextile underlays, seaming, and anchoring methods. Proper installation prevents punctures, uplift, and edge failure over time.

Chapter 5See details

Hydraulics, Pumps, and Circulation

  • Lesson 1 • Aeration and Oxygenation Systems

    Installs surface aerators or bottom diffusers to supplement dissolved oxygen in deep zones. Aeration prevents anaerobic conditions that degrade water quality.

  • Lesson 2 • Flow Control and Balancing

    Uses valves, flow meters, and weirs to balance flow between zones and adjust seasonal rates. Proper balancing maintains target retention times year-round.

  • Lesson 3 • Hydraulic Flow Principles

    Applies Bernoulli's principle, head loss, and pipe friction to natural pool circuits. Hydraulic fundamentals underpin every pump and pipe sizing decision.

  • Lesson 4 • Pump Selection and Sizing

    Matches pump curves to system head and flow requirements for efficient operation. Students select energy-efficient pump models appropriate for low-velocity natural pools.

  • Lesson 5 • Pipe Layout and Manifold Design

    Designs inlet and outlet manifolds that distribute flow evenly across the regeneration zone. Even distribution eliminates dead zones and maximizes plant contact time.

Chapter 6See details

Aquatic Plant Selection and Establishment

  • Lesson 1 • Plant Functional Groups

    Categorizes emergent, submerged, and floating plants by their filtration and oxygenation roles. Understanding functional groups guides species selection for each zone.

  • Lesson 2 • Planting Density and Layout

    Calculates planting densities and arranges species to maximize filtration coverage. Spatial layout also prevents competitive exclusion among plant communities.

  • Lesson 3 • Establishment Phase Management

    Manages the first growing season when plants are vulnerable and water quality is unstable. Students apply temporary nutrient controls and monitoring schedules.

  • Lesson 4 • Sourcing and Handling Plants

    Covers certified nursery sourcing, quarantine protocols, and transport handling to prevent pest introduction. Proper sourcing protects pool ecology from day one.

  • Lesson 5 • Species Selection Criteria

    Applies climate hardiness, nutrient uptake rate, and invasive risk as selection filters. Students build a shortlist of regionally appropriate, non-invasive species.

Chapter 7See details

Water Quality Monitoring and Management

  • Lesson 1 • Algae Identification and Control

    Identifies filamentous, planktonic, and cyanobacterial algae by visual and microscopic methods. Students apply targeted, ecology-safe control strategies for each algae type.

  • Lesson 2 • Monitoring Program Design

    Builds a sampling schedule covering frequency, locations, and parameters for routine monitoring. A structured program enables early detection of quality deterioration.

  • Lesson 3 • Laboratory Analysis Methods

    Covers sample collection, preservation, and submission for nutrient and microbial analysis. Lab data validates field readings and detects parameters not measurable on-site.

  • Lesson 4 • Field Testing Techniques

    Demonstrates in-situ measurement of pH, dissolved oxygen, temperature, and turbidity. Accurate field technique reduces false readings that trigger unnecessary interventions.

  • Lesson 5 • Corrective Intervention Protocols

    Provides decision trees for responding to pH spikes, oxygen crashes, and turbidity events. Structured protocols prevent overreaction that disrupts established ecology.

Chapter 8See details

Seasonal Maintenance and Long-Term Management

  • Lesson 1 • Long-Term Renovation Planning

    Identifies substrate exhaustion, liner aging, and plant community decline as renovation triggers. Students build multi-year capital plans with cost and timeline estimates.

  • Lesson 2 • Summer Operational Management

    Manages peak bather load, elevated temperatures, and accelerated plant growth in summer. Students apply intensified monitoring and harvesting schedules for this period.

  • Lesson 3 • Spring Startup Procedures

    Covers inspection, equipment restart, and plant zone preparation after winter dormancy. Correct startup prevents early-season algae blooms and equipment failures.

  • Lesson 4 • Autumn Preparation and Leaf Management

    Removes leaf litter, cuts back dying vegetation, and adjusts circulation before winter. Organic matter removal prevents nutrient loading during cold-season decomposition.

  • Lesson 5 • Winter Dormancy Management

    Protects liners, pipes, and pumps from freeze damage while maintaining minimal circulation. Students apply freeze protection strategies appropriate to their climate zone.

Certification

Your valid completion certificate

This course is for you:

  • Landscape contractor: ready to offer premium ecological water features to clients.

  • Pool builder: looking to expand beyond chemically treated conventional pool systems.

  • Ecological designer: wanting technical depth to back up sustainability-focused proposals.

  • Property developer: planning a natural pool feature for a residential or hospitality project.

  • Career changer: drawn to environmental work and seeking a concrete, marketable skill.

  • Horticulturist: eager to apply plant knowledge within aquatic and filtration contexts.

What our students say

Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of my interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...
Giulio Carlo
Giulio CarloDigital Marketing Student
I like how the lessons are straight to the point and how I can switch chapters and skip content I don't need.
Mariana Ferres
Mariana FerresPhotography Student
I like the content and the presentation style and video transcription, which speeds up the process!
Luciana Alvarenga
Luciana AlvarengaNail Design Student
The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.
André Felipe
André FelipePrompt Engineering Student

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