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University of London’s Heart for Compressor Technology from lt123's blog

Location, University of London’s Heart for Compressor Technology as well as Howden Compressors will attempt a 5-year collaborative undertaking - Smart Efficient Data compresion, Reliability and Energy Targets (SECRET) - that is supported by an award in the Royal Academy of Anatomist (RAEng) and led through Howden Chair in Anatomist Design and Compressor Technological know-how, Professor Ahmed Kovacevic.
This partnership will specifically look at the effect of clearances plus heat transfer dynamics while in the compressor and the resultant cut in losses and gains inside efficiency. The SECRET project is usually a continuation of the sound partnership between Howden in addition to City, combining 30 years of Professor Ahmed Kovacevic’s study on screw compressors using Howdens market-leading technology, and that is targeted at reducing leakages with rotating machinery by 20%, and improving the efficiency of oil free screw compressors by 2%, thus contributing for the European Union’s Global Web Zero CO2 emissions information, which is line with the Paris Climate Change Settlement of 2015.
New rotor profiles
This project also plays a part in advances in the development of Industry 4. 0, in which the team seeks to transform traditional manufacturing and industrial practices considering the latest smart technology. To help realise this, the project will focus on the short-, medium- and also long-term development of Howden’s oil-free screw compressors range.

The National Centre of Compressor Technologies will likely jointly lead on research carried out by Howdens and Town, which is expected for you to transform compression technology.

Teacher Ahmed Kovacevic said:

Howden introduced oil injected screw compressors from the 1950’s, and developed new technologies to give the range of this kind of machines. Today, the organization offers over 700 versions of screw machines pertaining to numerous applications, including acrylic and gas, refrigeration, cooling, and processed gas. We are proud to have already been closely allied with Howden for much more than 12 years jointly introducing new rotor profiles as well as compressor sizes, which continues to work their customers with better and more efficient machines. The Centre for Compressor Technologies i always direct at City, University of London is usually a world-leading research institute for a majority of these machines. With the support of Howden plus the Royal Academy of Anthropological, this project is destined to result in novel, more efficient, in addition to reliable oil free equipment. I am very excited about this opportunity.

Spanning 10 years, City and Howden use a long-standing history. Howden will leverage above 160 years’ experience as an original equipment manufacturer (OEM), so when the world leader within developing screw compressor technologies. Howden’s Glasgow-based main manufacturing facility built the very first screw compressor in the 1930s and is particularly the centre of development to the future research and improvement activities. The current project will develop a commercial prototype, and will pave the road to the future associated with oil free screw compressors.

Dougie Latta, International Product Director (Screw Compressors) stated:

“At Howden we are constantly desiring to innovate the products and the services we provide. How we harness that strength of our engineering heritage with the adoption of new technologies and methods to servicing our customers is utterly key to continued success and growth. We have got a strong partnership with City University that may form the basis of your industrial and academic effort. With the prestigious support in the Royal Academy of Anthropological and its wider circle, we see this like a key enabler to further growth and the introduction of sustainable and efficient gas free compressor technologies. The team at Howden have become proud of this award and are also excited about the part we can play in developing market leading solutions for countless years to come”.
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