Wild engineers

Melanie Farmer

Wild Engineers explores how nature solves the functions engineers care about most: regulating temperature, managing flow, strengthening structures, protecting from fire, and more. Hosted by Melanie Farmer, with Master’s degrees in Biomimicry and Managing Innovation, each episode translates biological strategies into practical engineering insight, with a focus on building services.

Episodes

  1. 12 Aug

    Ep 9 How Nature Prevents Systems from Being Ignored

    How economists in Ho Chi Minh city changed how we think about alerts in critical infrastructure after studying the Madagascan hissing cockroach. Function: Prevent systems from being ignored over time Biological model: Madagascan hissing cockroach and adaptive signalling Engineering translation: Adaptive hospital nurse-call alarm design Sources / further reading • Cobus V, Heuten W. To beep or not to beep? Evaluating modalities for multimodal ICU alarms. Multimodal Technologies and Interaction. 2019;3(1):15. https://share.google/uzCZzmFPXLXKPXT1n • Edworthy J. Medical audible alarms: a review. Journal of the American Medical Informatics Association. 2013;20(3):584–589. • Howell J, Knight V. Quieter nurse call system to reduce alarm noise in hospitals. Studies in Health Technology and Informatics. 2024;318:2–5. https://share.google/Phyj6HWFTmOpqKF9j • Rauland Australia. Reducing alarm fatigue in hospitals: a quieter approach with Concentric Care. 2024. https://share.google/tfZVygRKuuoGI8Ekm • Triet LM, Truong Thinh N. Mitigating Neural Habituation in Insect Bio-Bots: A Dual-Timescale Adaptive Control Approach. Biomimetics. 2026;11(1):13. https://share.google/mNyQxKVCIBkdsg4ZY Image credits • Cockroaches, Miskolci Állatkert via Miskolc Zoo • Hospital via Envato Written and produced by Melanie Farmer. Podcast: Wild engineers. For learning and inspiration. Music and production completed in Movavi 2026. Please validate any design application for technical use.

    Ep 9 How Nature Prevents Systems from Being Ignored
  2. 5 Aug

    Ep 8 How Nature Distributes Energy Reliably

    How the US Department of Energy reduced power outage restoration time by about 50% by applying lessons from leaves. Function: Distribute energy reliably during disturbances Biological model: Leaf vein networks Engineering translation: Self-healing electrical networks / FLISR Sources / further reading • Brodribb TJ, Bienaime D, Marmottant P. Revealing catastrophic failure of leaf networks under stress. Proceedings of the National Academy of Sciences. 2016;113(17):4865–4869. https://share.google/mxCrrVx0PgH7WakAS • Pratt A, Engel D, Jain R, et al. Defining a Use Case for the ADMS Test Bed: Fault Location, Isolation, and Service Restoration. National Renewable Energy Laboratory; 2021. https://share.google/ITI5PCyETYRe897s4• Sack L, Dietrich EM, Streeter CM, Sanchez-Gomez D, Holbrook NM. Leaf palmate venation and vascular redundancy confer tolerance of hydraulic disruption. Proceedings of the National Academy of Sciences. 2008;105(5):1567–1572. https://share.google/QcJGtjSVPsGM3T8yQ • U.S. Department of Energy. Fault Location, Isolation, and Service Restoration Technologies Reduce Outage Impact and Duration. 2014. https://share.google/9NwdowaQxNDAWrKDg • U.S. Department of Energy. Final Smart Grid Investment Grant Program Report. 2016. https://share.google/1vdJ1eMX6gFfTZ134 Image credits • Leaves via Canva • Power station via Canva Written and produced by Melanie Farmer. Podcast: Wild engineers. For learning and inspiration. Music and production completed in Movavi 2026. Please validate any design application for technical use.

    Ep 8 How Nature Distributes Energy Reliably
  3. 22 July

    Ep 6 How Nature Manages Waste

    How cow’s stomachs inspired the design of a zero power, zero odour and zero chemical sewage treatment plant in India. Function: Manage waste Biological model: Cow stomach compartments and rumen microbiota Engineering translation: ECOSTP sewage treatment system Sources / further reading • Appels,L., Baeyens, J, Degrève,J,, & Dewil,R. 2008. Principles and potential of the anaerobic digestion of waste-activated sludge. Progress in Energy and Combustion Science. 34:6:755-781. https://doi.org/10.1016/j.pecs.2008.06.002. https://share.google/2RbH6WTvrTuxLynpr • Metcalf & Eddy. Wastewater Engineering: Treatment and Resource Recovery. 2014. https://share.google/Ma1khM8anLxRmGJFx • Perez, H. G., Stevenson, C. K., Lourenco, J. M., & Callaway, T. R. 2024. Understanding Rumen Microbiology: An Overview. Encyclopedia, 4(1), 148-157. https://doi.org/10.3390/encyclopedia4010013. https://share.google/Eisaa8O3MCLEOCXi9 • Van Soest PJ. Nutritional Ecology of the Ruminant. Cornell University Press; 1994. https://share.google/O2hWmaSlyaRyjR3q8 • Xu Q, et al. Gut Microbiota and Their Role in Health and Metabolic Disease of Dairy Cow. Frontiers in Nutrition. 2021;8:701511. https://share.google/YxxwNM4aQVjtCzO81 Image credits • Cow diagram, illustration adapted from Graham's family Dairy • ECOSTP Antharam, via Organo Written and produced by Melanie Farmer. Podcast: Wild engineers. For learning and inspiration. Music and production completed in Movavi 2026. Please validate any design application for technical use.

    Ep 6 How Nature Manages Waste
  4. 30 June

    Ep 2 How Nature Reduces Acoustic Impact

    How Kingfisher’s beaks changed the way we design fast trains cutting noise by up to 15 decibels. Function: Reduce acoustic impact Biological model: Kingfisher beak Engineering translation: Shinkansen bullet train nose redesign Sources / further reading • Biomimicry Institute. Kingfisher-inspired Shinkansen design. https://share.google/mzcDAhsClBNQKl8pV • Crandell KE, Howe RO, Falkingham PL. Repeated evolution of drag reduction at the air-water interface in diving kingfishers. Journal of the Royal Society Interface. 2019;16(154):20190125. https://share.google/3V3kDtxWmdsUXwgWw • Kikuchi, Katsuhiro & Iida, M. & Fukuda, T.. (2011). Optimization of Train Nose Shape for Reducing Micro-Pressure Wave Radiated from Tunnel Exit. Low Frequency Noise, Vibration and Active Control. 30. 1-19. 10.1260/0263-0923.30.1.1. https://share.google/6Otr8SZap2VH4ZkcB • Fish FE, Lauder GV. Passive and active flow control by swimming fishes and mammals. Annual Review of Fluid Mechanics. 2006;38:193–224. https://share.google/fYrmvrEYY77IzQdz8 • Lovvorn JR, Jones DR. Body mass, volume, and buoyancy of some aquatic birds, and their relation to locomotor strategies. Canadian Journal of Zoology. 1991;69(11):2888–2892. https://share.google/R7gVqSL4GfjcE0JLM • Vogel S. Life in Moving Fluids: The Physical Biology of Flow. Princeton University Press; 1994. https://share.google/00fvyNg5U4vymwNQW Image credits • Kingfisher via Envato • Bullet train via Canva Written and produced by Melanie Farmer. Podcast: Wild engineers. For learning and inspiration. Music and production completed in Movavi 2026. Please validate any design application for technical use.

    Ep 2 How Nature Reduces Acoustic Impact

Ratings & Reviews

5
out of 5
5 Ratings

About

Wild Engineers explores how nature solves the functions engineers care about most: regulating temperature, managing flow, strengthening structures, protecting from fire, and more. Hosted by Melanie Farmer, with Master’s degrees in Biomimicry and Managing Innovation, each episode translates biological strategies into practical engineering insight, with a focus on building services.