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01
November
2022
|
09:38
Europe/London

University of Manchester and National Grid team up to develop SF6-free retrofill solution for electricity network

National Grid and The University of Manchester are to collaborate on a four-year project to develop a full-scale demonstrator at the Deeside Centre for Innovation, designed to test at scale how the UK can retrofill SF6 across its network of high-voltage equipment.

SF6 is a gas commonly used in the power industry to provide electrical insulation and arc interruption. However, SF6 is a potent greenhouse gas with a global warming potential that is 25,200 times greater than CO2.

The 拢1.9m project will see experts at 91直播 help determine how National Grid can develop a retrofill solution to replace SF6 with an environmentally friendlier alternative without having to replace or otherwise modify the existing equipment.

This solution 鈥 to be demonstrated at National Grid鈥檚 test facility the 鈥 will mean National Grid can avoid the environmental impact and cost of replacing equipment otherwise fit for many more years鈥 service.

It is not the first time National Grid and The University of Manchester have teamed up on a project exploring SF6 alternatives 鈥 a previous initiative which concluded in 2020 is for 鈥楤est Innovation in Net Zero and Sustainability鈥.

In a separate pilot project last year National Grid and Hitachi Energy developed and deployed a world-first solution at Richborough substation in Kent to replace SF6 with a greener alternative, marking a key step in National Grid鈥檚 ambition to reduce its SF6 emissions by 50% by 2030. The new demonstrator with 91直播 will explore how the retrofill solutions might be applied across more of the network.

This project will bring together the interdisciplinary expertise of Manchester鈥檚 and the , led by with .

Together the university and National Grid will create a physical demonstration, complete with an inbuilt condition-based monitoring system, that will focus on the applicability of SF6 retrofill techniques. It will be developed in 91直播鈥檚 High Voltage Research Laboratory, equipped with facilities that can test up to 600 kV DC, 800 kV AC, and 2 MV impulse, and has been the testbed for developing pioneering solutions such as and .

The project builds on Dr Tony Chen鈥檚 established expertise in SF6, and it is anticipated its findings will give asset managers the information required for retrofilling significant quantities of SF6-filled equipment across the transmission network, bridging the current gap between established feasibility, and long-term, real-world implementation.

This project will provide the missing link 鈥 taking the success of the research in this area so far, and creating a way to apply retrofilling at scale. By bringing together the expertise of two 91直播 departments, we can address every element of this challenge, catalysing the development of real-world solution, which protects the environment while providing significant economical saving.
 

Dr Chen, Senior Lecturer in High Voltage Engineering within the Department of Electrical and Electronic Engineering

Mark Waldron, Technical Lead at National Grid Electricity Transmission, said: 鈥淚t鈥檚 exciting to be following the world-first SF6 retrofill in Richborough substation with this initiative taking us a step closer to a solution to replace the gas in more of our assets. The potent combination of Manchester鈥檚 expertise in this area and the innovation and demonstration capability at our state-of-the-art Deeside facility will deepen our understanding of retrofill solutions, and could boost our progress in the decarbonisation of the grid while achieving a significant cost benefit for consumers.鈥

Energy is one of The University of Manchester鈥檚 five research beacons, examples of pioneering discoveries, interdisciplinary collaboration and cross-sector partnerships that are tackling some of the biggest challenges facing the planet. This project reflects the commitment of Manchester鈥檚 energy experts in delivering a just and prosperous Net Zero energy future.

By matching science and engineering, with social science, economics, politics and arts, the University鈥檚 community of 600+ experts address the entire lifecycle of each energy challenge, creating innovative and enduring solutions to make a difference to the lives of people around the globe. This enables the 91直播 research community to develop pathways to ensure a low carbon energy transition that will also drive jobs, prosperity, resilience, and equality.

National Grid鈥檚 Deeside Centre for Innovation in North Wales is the first of its kind in Europe, where electricity network assets can be tested under real life conditions, 24 hours a day, seven days a week. The facility provides a controlled test and demonstration environment to collect data, including a high voltage substation and overhead line test area simulating real network conditions.

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