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WaveWeather

WaveWeather

Miros WaveWeather is a situational awareness solution intended for any industry or user relying on accurate, local environmental data for operational decision-making.

Miros WaveWeather delivers accurate, real-time measurements of local sea state and weather conditions to any user, on any device. High-quality data regarding local environmental conditions is fundamental for successful planning, decision-making, and execution of activities. WaveWeather provides this critical insight for all relevant stakeholders, on- or offshore.

Miros
Asker, NO

Description

Miros WaveWeather delivers accurate, real-time measurements of local sea state and weather conditions to any user, on any device, providing critical data for all relevant stakeholders, on- or offshore. The compact solution is easy to install, simply requiring Internet and a power supply to get started. The environmental data is then immediately accessible anywhere, without the need for any external processing. This dry, Cloud-integrated solution makes the costly maintenance associated with underwater equipment a thing of the past and can be leveraged to support safe and efficient operations.

With Miros WaveWeather you gain real-time access to local measurements of parameters such as wave height & period, airgap/draught, water level/tide, air pressure, temperature, humidity, rainfall, wind speed and wind direction.

WaveWeather puts accurate, reliable data in the hands of decision makers at the right time. Users gain access to real-time, local environmental data wherever they are. Access can easily be given to third parties involved in the operation (vessels, operation centres, etc.).

The sensor is based on plug-and-play sensors with embedded processing and browser-based GUIs. No integration or external processing is required. Miros WaveWeather is uniquely cost-effective, with no equipment submerged in water and physical maintenance reduced to a minimum.

Specifications

Physical Properties

Operating temperature: min. [Ā°C]

-30

Operating temperature: max. [Ā°C]

50

General

Year of initial development

2019

Year of latest version

2019

Area of Application

Offshore Wind, Tidal Stations, Ports

Type of wave recorder

Radar

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Daniƫl Haanskorf Peter Tapken Sjors Kloosterman

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