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Updated: Jul 23, 2025

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Field Collection and Laboratory Maintenance of Canopy-Forming Giant Kelp to Facilitate Restoration
Published on: June 7, 2024
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Wave damping by giant kelp, Macrocystis pyrifera
Kristen Elsmore1, Kerry J Nickols2, Luke P Miller3
1Bodega Marine Laboratory, University of California at Davis, 2099 Westshore Road, Bodega Bay, CA 94923, USA.
Annals of Botany
|July 18, 2023
Summary
Giant kelp (Macrocystis pyrifera) forests offer modest wave energy attenuation, contributing to coastal protection. Restoration efforts should consider these limited but measurable impacts on wave damping.
Area of Science:
- Marine ecology
- Coastal geomorphology
- Oceanography
Background:
- Coastal ecosystems play a role in shoreline protection by attenuating wave energy, especially with increasing storm events.
- Canopy-forming kelps, such as giant kelp (Macrocystis pyrifera), are hypothesized to provide this ecosystem service.
- Previous studies faced challenges in isolating kelp's effect from other factors like seafloor bathymetry.
Purpose of the Study:
- To unambiguously resolve the capacity of giant kelp to dampen waves using a unique site with a kelp transition.
- To quantify the wave energy flux decline attributable to kelp presence.
Main Methods:
- Measurements of waves were taken within and outside giant kelp forests at Marguerite Reef, Palos Verdes, CA.
- The study site transitioned from a bare state to a fully formed kelp forest (8 stipes m-2) within a restoration project.
- Wave energy flux decline was quantified as a function of incident wave conditions as waves entered the reef habitat.
Main Results:
- The kelp forest measurably, but modestly, damped wave energy.
- Seabed interactions reduced wave energy flux by an average of 12% over 180 m.
- The kelp forest induced an additional 7% decrease in wave energy flux, with greater effects on longer-period, smaller-height waves.
Conclusions:
- Giant kelp (Macrocystis pyrifera) forests possess a limited yet measurable capacity to enhance shoreline protection from nearshore waves.
- The substantial impact of kelp forests on wave-induced coastal erosion may need re-evaluation, considering both extant and restored forests.
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