Skip to main content

Gill Instruments improves performance of 3-axis anemometers

Gill Instruments has improved the sonic temperature performance of the company’s 3-axis anemometer range to an accuracy of greater than ±1% in readings between -18°C and +30°C. The improvement has been achieved by using the US National Physical Laboratory’s advanced sound profiling facility as well as research using in-house computational fluid dynamics - CFD modelling - to examine transducer production. Anemometers are used throughout the meteorological research and industrial industries. They simultane
June 9, 2015 Read time: 2 mins
8134 Gill Instruments has improved the sonic temperature performance of the company’s 3-axis anemometer range to an accuracy of greater than ±1% in readings between -18°C and +30°C. The improvement has been achieved by using the US National Physical Laboratory’s advanced sound profiling facility as well as research using in-house computational fluid dynamics - CFD modelling - to examine transducer production.

Anemometers are used throughout the meteorological research and industrial industries. They simultaneously monitor turbulent fluctuations of wind and sonic temperature in order to accurately calculate sensible heat flux or wind load.

Gill claims the result is a generation of transducer assembly that benefits from small yet significant design changes to the assembly processes at the same time preserving the high performance of the existing transducer.

To maintain the integrity and continuity of the 3-axis anemometer range, Gill tightly controls the software, electronics, head geometry and transducer to ensure changes are limited to improving only the performance of sonic temperature.

“Gill 3-axis anemometers consistently outperform other sonic anemometers in the measurement of 3-dimensional wind vectors and sensible heat fluxes” said Gill’s product manager Richard McKay. “Now, following recent improvements, all Gill 3-axis anemometers can benefit from improved sonic temperature performance. A key advantage is that these improvements maintain the continuity of design and we now have high performance in all conditions”.

For more information on companies in this article

Related Content

  • Lower emissions from asphalt plants
    June 28, 2021
    Emissions regulations relating asphalt plants in China are now far more stringent than before, which is requiring change from the manufacturers and their customers alike.
  • In control, with advanced technology
    August 15, 2019
    Machine control technology continues to advance, with new systems offering contractors major gains in working efficiency The latest developments in machine control technology once again push the bar in terms of advancements. The latest systems allow contractors to work even more effectively and efficiently than before. Doosan has unveiled one of the first uses globally of 5G technology to remotely control construction and quarrying machines. The firm has coined the term ‘TeleOperation’ to describe the
  • Highway design software developments
    February 21, 2012
    New advanced software is being released for use by those involved in highway design as Adrian Greeman reports. The growing importance of BIM, building or project information modelling, as a design and construction process, and not just 3D modelling, is the driving force for the latest 2012 versions of Autodesk's comprehensive range of software for civil engineers. This is reflected in a new packaging of its various software tools into suites (along the lines of Microsoft's office suites) tailored to variou
  • IPC Global launches AsphaltQube asphalt mixture tester
    May 16, 2017
    AsphaltQube, new from IPC Global, uses IPC’s electromechanical servoactuation (EmS) technology for dynamic SuperPave Performance tests that were previously available only to high-end research laboratories. According to IPC Global, AsphaltQube allows all the most common international asphalt mixture standard tests in one compact, modular, easy to use machine. The design allows for total flexibility to suit each user's testing requirements. Individual test modules can be added to the base system separately as