Garden Ponds & Swimming Ponds: The Illustrated Guide

Free illustrated guide · 20 chapters

Build it step by step.
Understand it at your own depth.

Garden ponds and swimming ponds: construction, ecology and water chemistry.

Start with the pond you want to build. Then discover how water, plants, microbes and nutrients work together. Every chapter combines an easy introduction, practical drawings and an optional scientific supplement.

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Browse all 20 chapters
Watercolour garden pond with planting zones and a swimming area

A quick read or a deeper dive

At a glance explains the main idea. In practice turns it into a drawing and three useful actions. Open Going deeper when you want the mechanism, calculation or scientific detail.

What are you working on?

Part 1 · Building your pond

Part 2 · Understanding living water

Keep exploring

Use the pond calculators and tools alongside your sketch, or visit the complete guide library for plant selection and detailed care guides.

Sources and further reading
  1. R1 · Royal Horticultural Society. How to Make a New Pond.
  2. R2 · Freshwater Habitats Trust. Garden Pond Advice Hub.
  3. R4 · Health and Safety Executive. Excavations.
  4. R6 · Royal Horticultural Society. Aquatic Plants: Planting Guide.
  5. R7 · Royal Horticultural Society. Invasive Non-native Plants.
  6. S01 · USGS. Dissolved Oxygen and Water.
  7. S02 · USGS. Alkalinity and Water.
  8. S03 · USGS. Alkalinity calculation methods and carbonate speciation.
  9. S04 · USGS. DOTABLES: dissolved oxygen solubility calculations.
  10. S05 · WHO/IPCS. Environmental Health Criteria 54: Ammonia (1986). Includes the Emerson temperature relationship.
  11. S06 · US EPA. Municipal Nutrient Removal Technologies Reference Document (2008). Stoichiometric nitrification and denitrification demands.
  12. S07 · Daims et al. Complete nitrification by Nitrospira bacteria. Nature (2015).
  13. S08 · van Kessel et al. Complete nitrification by a single microorganism. Nature (2015).
  14. S09 · US EPA. Constructed Wetlands Treatment of Municipal Wastewaters (2000). Engineering context, not a bathing-pond sizing standard.
  15. S10 · USGS. Phosphorus and Water.
  16. S12 · Scheffer et al. Alternative equilibria in shallow lakes. Trends in Ecology & Evolution (1993). DOI: 10.1016/0169-5347(93)90254-M.
  17. S13 · Schindler et al. Eutrophication of lakes cannot be controlled by reducing nitrogen input: results of a 37-year whole-ecosystem experiment. PNAS (2008).
  18. S14 · Paerl et al. Dual phosphorus and nitrogen nutrient reduction will be more effective than a phosphorus-only reduction in mitigating diatom and cyanobacterial booms in Lake Erie, USA-Canada. Limnology and Oceanography 69 (2024), 2913–2928.
  19. S16 · Stewart and Franklin. Physiological heterogeneity in biofilms. Nature Reviews Microbiology (2008).
  20. S17 · Stewart et al. Reaction–diffusion theory explains hypoxia and heterogeneous growth within microbial biofilms associated with chronic infections. npj Biofilms and Microbiomes 2 (2016), 16012. Model context; not pond-specific parameters.
  21. S19 · Azam et al. The ecological role of water-column microbes in the sea. Marine Ecology Progress Series 10 (1983), 257–263.
  22. S20 · USGS Organic Matter Research Laboratory. What is Organic Matter?
  23. S22 · US EPA. Indicators: Conductivity.
  24. S23 · USGS. Water-quality parameter definitions: light attenuation.
  25. S24 · US EPA. HAB Methods: cyanobacteria and cyanotoxin detection.
  26. S25 · CDC. Healthy Swimming: prevention guidance for untreated recreational water.

The watercolour scenes are AI-generated illustrations, not photographs of inspected installations. Labelled diagrams are conceptual and not to scale; calculated graphs and synthetic examples are marked as teaching models.