offshoreWIND.biz
  • Fixed-Bottom
  • Floating Wind
  • Supply Chain
  • News
  • About
  • Contact
JobsNewsletter
offshoreWIND.biz logo
Topics
  • Fixed-Bottom
  • Floating Wind
  • Supply Chain
  • Power-to-X
  • Grid Connection
Network
  • Dredging Today
  • NavalToday
  • Offshore Energy
  • Offshore Wind
  • Maritieme Vacaturebank
Company
  • Advertising
  • Newsletter
  • Jobs
  • Privacy
  • Report your news

© 2026 Navingo. All rights reserved.

Home›Environment›UK: SRSL to Conduct Operational Noise Assessments for OpenHydro
Environment

September 23, 2013 · about 13 years ago

UK: SRSL to Conduct Operational Noise Assessments for OpenHydro

The potential ecological impact of the introduction of anthropogenic sound to the marine environment has received increasing attention in recent decades. Most interest has focused on acoustically sensitive or ecologically or commercially vulnerable species. Potential impacts vary in severity from di

1 minutes read
  • LinkedIn
  • X
  • Email

The potential ecological impact of the introduction of anthropogenic sound to the marine environment has received increasing attention in recent decades. Most interest has focused on acoustically sensitive or ecologically or commercially vulnerable species.

Potential impacts vary in severity from direct physical trauma and hearing damage through to behavioural disturbances, exclusions, fright responses and the masking of communication calls and prey / predator cues. SRSL were commissioned by OpenHydro to characterise the acoustic signature of their six meter diameter tidal turbine OCT0665 on a pile-mounted test structure at the EMEC tidal test site in Orkney.

The study used SRSL’s ‘Drifting Ears Method’ (Wilson and Carter, 2008) to record underwater sound levels, within the proposed array site. This customised method was applied because traditional boat/moored hydrophone methods expose the receiving element to contaminating ‘water-flow noise’, which is of prime consideration when monitoring ambient sound and device acoustic output in high-flow environments.

The data was analysed in-house and the results were then considered in the context of risk of auditory damage and audibility for four coastal marine mammal species present in the area.

[mappress]

Press release, September 23, 2013; Image: openhydro

Reach the offshoreWIND.biz industry in one go!

offshoreWIND.biz is read by thousands of professionals every day.

Increase your visibility with banners, tell your story with a branded article, and showcase your expertise with a full-page company profile in our business directory.

CONTACT

Follow offshoreWIND.biz on:

Filed under

Environment

Daily offshore wind news in your mailbox

Join thousands of industry professionals who start their day with our newsletter.

Trending Now

  1. 1Cadeler Adds Wind Ace to Fleet, First Stop East Anglia Two
  2. 2Turbine Installation at Thor Offshore Wind Farm Reaches Halfway Point
  3. 3South Korean Cable Maker Takes Delivery of Its Second Cable Laying Vessel
  4. 4Aker Solutions Joins Bellrock Floating Offshore Wind Farm Team

Related articles

ScotWind Developers Fund Study to Find Out More About Minke Whale Activity
Environment

ScotWind Developers Fund Study to Find Out More About Minke Whale Activity

about 2 months ago

Chantiers RTE Hitachi
Business development

European Consortium Developing Underwater Noise Reduction System for Floating and Jacket Foundations

about 3 months ago

Daily offshore wind news in your mailbox

Join thousands of industry professionals who start their day with our newsletter.

Subscribe free

Related news

ScotWind Developers Fund Study to Find Out More About Minke Whale Activity
Environment

ScotWind Developers Fund Study to Find Out More About Minke Whale Activity

about 2 months ago
Chantiers RTE Hitachi
Business development

European Consortium Developing Underwater Noise Reduction System for Floating and Jacket Foundations

about 3 months ago