Engineering Science Letter
Vol. 5 No. 01 (2026): Engineering Science Letter

Transforming Conventional Seawalls into Marine Habitats: Eco-Engineered Coastal Structures for Philippine Urban Waterfronts

Zuraida Julhiji Bara (Tawi-Tawi Regional Agricultural College)
Al-Rashiff Hamjilani Mastul (Mindanao State University -Tawi-Tawi College of Technology and Oceanography)
Muhammad Hasnain Khan (University of Agriculture Faisalabad)
Nazia Ehsan (University of Agriculture Faisalabad)



Article Info

Publish Date
03 Apr 2026

Abstract

Philippine cities require dependable coastal protection, yet conventional smooth seawalls simplify intertidal habitat and can intensify ecological losses associated with marine urbanization. This integrative literature review examines how eco-engineering can retrofit or redesign vertical coastal structures to retain their safety function while providing habitat. Thirty-one peer-reviewed and institutional sources were synthesized across four themes: ecological effects of shoreline armoring, performance of habitat-complexity interventions, structural and maintenance requirements, and transferability to Philippine urban waterfronts. Evidence consistently favors small-scale additions of pits, crevices, ledges, textured panels, shaded cavities, and water-retaining pools; responses nevertheless vary with tidal elevation, wave exposure, material, pollution, propagule supply, and maintenance. A context-sensitive design is proposed in which the reinforced-concrete wall remains the primary load-bearing system and replaceable habitat panels are zoned vertically, fixed through inspectable corrosion-resistant connections, combined with lower-intertidal water-retaining units, and separated from structurally independent toe protection. Manila Bay is used as the principal application context because flood exposure, subsidence, dense infrastructure, degraded water quality, and large planned coastal investments make ecological co-benefits both valuable and difficult. The review concludes that eco-engineered seawalls are not substitutes for mangroves, tidal flats, setback, or pollution control. They are a pragmatic harm-reduction and habitat-support strategy where hard protection is justified and space is constrained. Philippine pilots should use reference sites, before–after-control–impact monitoring, native-species safeguards, life-cycle maintenance plans, and explicit structural acceptance criteria.

Copyrights © 2026






Journal Info

Abbrev

ESL

Publisher

Subject

Computer Science & IT Control & Systems Engineering Engineering Industrial & Manufacturing Engineering Materials Science & Nanotechnology

Description

Engineering Science Letter is an international peer-reviewed letter that welcomes short original research submissions on any branch of engineering, computer science, and technology, as well as their applications in industry, education, health, business, and other fields. Artificial intelligence, ...