Open Closing in a 1 month

Large Scale Battery Energy Storage Systems

Descriptions

The following summary is not intended as a complete or definitive specification of the requirement. A purpose of this engagement is to seek information from the market to help refine our understanding and aid the development of a future specification. STEP is currently in its Concept Design phase, which is expected to be completed in 2026. The electrical infrastructure of STEP will resemble that of large conventional thermal power stations; however, its design presents unique challenges: Fusion power stations like STEP have exceptionally large parasitic (auxiliary/house) loads required to initiate and sustain fusion reactions—significantly higher than those in conventional power plants. These parasitic loads must be supplied by external sources during plant start-up, before the power generation cycle begins producing electricity. The highly dynamic nature of these loads could make compliance with grid code requirements challenging. For more information, please refer to: Staying positive: producing net power | Philosophical Transactions of the Royal Society A | The Royal Society UKIFS is seeking experts to support the technology selection of a central energy storage system (CESS) that is part of the STEP Electrical infrastructure. Due to the power dynamics of operating the STEP power plant and operating parameters set by the National Energy System Operator (NESO), an energy storage system is required to provide a mechanism to ensure that we remain within the NESO operating parameters. Rather than a continuous output, STEP will operate on a pulsed basis. The power dynamics of the fusion pulses are typically different to a conventional power plant, and a CESS has been identified as a critical system to the design as it provides a mechanism to compensate for the changing load dynamics throughout the pulse. This will ensure STEP remains within the NESO defined operating parameters at the point of grid connection. Current assumptions are to exploit existing Battery Energy Storage Systems (BESS) to fulfil the energy storage needs. We are interested in all battery chemistries used in large-scale energy storage systems, including Lithium Iron Phosphate (LFP), Sodium-Sulfur (NaS), Lithium Titanate (LTO), Vanadium Redox Flow Batteries (VRFB), Nickel Manganese-Cobalt (MNC), Solid State Batteries or others. Due to knowledge gaps in BESS behaviour and limitations, the decision of using a BESS system for the CESS cannot be fully justified. This PME is looking to address this. The proposed technical and operational characteristics of the BESS are: 2 operational cycles per day Pulse length will be over 1 hour (continuous) Power range larger than 300MW Energy capacity 100-300MWh Response in the millisecond range Similar charge and discharge rates. Fast response time during power swings (full charge to discharge) High round trip efficiency: 80% In conjunction the BESS will be required to be operated and maintained for the 20-year life of the STEP machine. For more information about this opportunity, please visit the Delta eSourcing portal at: https://ukifs.delta-esourcing.com/tenders/UK-UK-Culham:-Engineering-design-services./44277P4UUB To respond to this opportunity, please click here: https://ukifs.delta-esourcing.com/respond/44277P4UUB

Engagement

A purpose of this engagement is to seek information from the market to help refine our understanding and aid the development of a future specification. UKIFS is seeking experts to support the technology selection of a central energy storage system (CESS) that is part of the STEP Electrical infrastructure. To participate in this exercise, please complete and submit Appendix 1: Questionnaire and return any documents via the Delta portal. We are conscious of your time (and grateful to you for taking the time to complete the questionnaire), therefore we suggest you limit your responses to a maximum of 5 pages. If there are any areas you would like to expand on, please add a note to the relevant section for future discussion. If you experience any difficulties with the portal, please contact the portal helpdesk helpdesk@delta-esourcing.com cc operationalprocurement.step@ukifs.uk Information obtained from responses to Appendix 1: Questionnaire will help UKIFS understand current market capabilities and may shape the scope, direction, and design of the future procurement activities. If you have any questions about this Preliminary Market Engagement, please contact UKIFS through the Delta portal. We are keen to engage with suppliers to assist with the questionnaire if needed, to ensure quality responses enabling us to shape the future requirement and procurement. Following the submission and review of questionnaires, UKIFS intends to run an online conference call meeting/seminar/Q&A. The closing date for the pre-market engagement is Monday 23rd March 2026, 1 pm.

Timeline

Published Date :

27th Jan 2026 Today

Deadline :

23rd Mar 2026 in a 1 month

Contract Start :

31st Mar 2029

Contract End :

31st Mar 2033

Keywords

plant technical design

plant equipment layout

power system design

factory plant design

switchgear engineering

plant system planning

renewable grid design

electrical grid planning

project design advisory

conceptual engineering

process plant design

manufacturing plant consultancy

electrical network consultancy

power system integration services

process engineering blueprint

engineering blueprint consultancy

multidisciplinary engineering planning

engineering drafting services

technical design solutions

industrial plant solutions

power infrastructure planning

engineering specification services

power distribution layout

technical design services

system design engineering

substation design engineering

engineering design consultancy

electrical utility design

industrial plant engineering

plant facility engineering

Tender Lot Details & Award Criteria

1 Tender Lots

Let’s Get you Started ✍

Get to see all tender details more briefly

Already have an account ?

Workflows

Status :

Open

Procedure :

N/A

Suitable for SME :

N/A

Nationwide :

No

Assign to :

Tender Progress :

0%

Details

Notice Type :

PIN

Tender Identifier :

IT-378-246-T: 2024 - 001

Tenderbase ID :

310724019

Low Value :

£100K

High Value :

£1000K

Buyer Information

Address :

Liverpool Merseyside , Merseyside , L13 0BQ

Website :

N/A

Procurement Contact

Name :

Tina Smith

Phone :

0151 252 3243

Email :

tina.smith@shared-ed.ac.uk