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Design at depth: A rapid ecological protocol to shape conservation potential of human-made reefs by linking structural features with presence and activity of marine life

Castelló y Tickell, Sofia, Verde Medina, Alejandra, Woodall, Lucy C., Sáenz-Arroyo, Andrea, Quiroga García, Blanca Alicia, Pienkowski, Thomas, Milner-Gulland, E.J. (2026) Design at depth: A rapid ecological protocol to shape conservation potential of human-made reefs by linking structural features with presence and activity of marine life. Ecological Engineering, 234 . Article Number 108148. ISSN 0925-8574. (doi:10.1016/j.ecoleng.2026.108148) (The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided) (KAR id:116159)

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Official URL:
https://doi.org/10.1016/j.ecoleng.2026.108148

Abstract

Human-made reefs (HMRs) of various origins are proliferating worldwide with claims of conservation benefit, but ecological assessment protocols are often limited to single structure types, impeding learning and comparison for future design. We developed a novel, low-cost protocol for the rapid ecological assessment of HMRs and applied it to 70 subtidal structures in Cozumel, Mexico, including shipwrecks, concrete debris, coral restoration modules, sculptures, infrastructure and rock piles. Some of these structures were designed for conservation, while others were not. Drawing on existing methodologies for coral reefs, rocky reefs and single HMR types, we undertook standardised data collection on (1) physical characteristics such as size, structural complexity, depth, and materials, and (2) marine life including “general” metrics of richness and abundance, as well as “targeted” metrics of conservation relevance such as presence of endangered or invasive species. We used a generalised linear mixed effects model to explore associations between HMR characteristics and marine life, identifying relationships between species richness and abundance and structural factors including depth, structure size, and substrate type. We also evaluated the influence of conservation-focused alterations, such as coral planting and rock addition, and compared HMRs created for coral restoration with similarly sized natural reefs. We identified 78 species of fish and five species of mobile invertebrates across HMRs, with behaviours such as sheltering and feeding observed across multiple species and structure types. This method provides a transferrable tool for assessing the ecological performance of diverse HMRs, with data collection and analysis acting as a preliminary proof of concept for its use. However, results represent a snapshot based on a single daytime survey and should be interpreted in light of uneven representation of structure types and potential under-detection of small or nocturnal species. We reflect on practical challenges and opportunities encountered during its application, and implications for sustainable reef design and management in a rapidly changing seascape.

Item Type: Article
DOI/Identification number: 10.1016/j.ecoleng.2026.108148
Additional information: For the purpose of open access, the author(s) has applied a Creative Commons Attribution (CC BY) licence to any Author Accepted Manuscript version arising.
Uncontrolled keywords: Human-made reefs; Sustainable design; Artificial reefs; Ecological assessment; Marine conservation
Subjects: G Geography. Anthropology. Recreation
Institutional Unit: Institutes > Durrell Institute of Conservation and Ecology
Former Institutional Unit:
There are no former institutional units.
Funders: University of Kent (https://ror.org/00xkeyj56)
Depositing User: Thomas Pienkowski
Date Deposited: 15 Sep 2026 09:36 UTC
Last Modified: 17 Sep 2026 09:09 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/116159 (The current URI for this page, for reference purposes)

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