Logo image
Measuring Ocean Surface Waves
Journal article   Open access   Peer reviewed

Measuring Ocean Surface Waves

Clarence Collins, Andre Amador, Alexander Babanin, James Behrens, Alvise Benetazzo, Filippo Bergamasco, Chris Blenkinsopp, Philippe Bonneton, Øyvind Breivik, Kai Christensen, …
Reviews of geophysics (1985), Vol.64(3), e2025RG000888
2026-09

Abstract

Earth Sciences Oceanography Sciences of the Universe
Propagating waves on the ocean surface can be represented as a stochastic process whose statistics are characterized by a spectrum. This paper reviews methods for measuring the wave spectrum and related quantities. Observations begin by sensing fluid dynamical properties of the sea surface over space and/or time. Visual observations, collected routinely since the mid‐18th century, comprise the longest‐running wave record. Nearshore measurement methods continue to advance, including traditional pressure and acoustic sensing as well as newer technologies like distributed acoustic sensing and LiDAR. Detailed small‐scale wave physics can now be explored with measurement techniques using light, including stereo‐imaging and polarimetry. Reductions in the size, cost, and power consumption of microelectronics have propagated through ocean wave instrumentation, most notably in wave buoys. Global networks of freely drifting miniature wave buoys offer novel observational capabilities. Remote sensing techniques based on radar and LiDAR continue to evolve and are widely deployed from land, ships, aircraft, autonomous vehicles, and satellites. Spaceborne altimeters form one of the most important records of wave height, and new spaceborne sensors now observe directional spectra globally with sampling akin to traditional altimetry. Aircraft and autonomous systems provide strategic sampling capabilities for detailed process studies and access to extreme storm environments. The quality and quantity of ocean wave measurements have never been greater. This review aims to help make sense of it all.
url
https://doi.org/10.1029/2025RG000888View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image