Author
Listed:
- Philipp Ortmann
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Andreas Patha
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Roman Schwalbe
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Klara Maggauer
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Daniel Schwabeneder
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Carolin Monsberger
(AIT Austrian Institute of Technology GmbH, Giefinggasse 2, 1120 Vienna, Austria)
- Stefan Fink
(Energienetze Steiermark GmbH, Leonhardgürtel 10, 8010 Graz, Austria)
- Maximilian Prasser
(Energienetze Steiermark GmbH, Leonhardgürtel 10, 8010 Graz, Austria)
Abstract
In light of the strong expansion of renewables, electrolysis may act as an alternative to conventional grid enforcement to overcome grid constraints in a timely and effective manner, as it creates additional flexible load and thus enables renewable production peaks to be absorbed. This paper examines whether hydrogen electrolysis can serve as a cost-effective alternative to conventional grid reinforcement in Austrian electricity distribution networks. It goes beyond the current state of the art by using three real-world case studies in Styria, using an integrated techno-economic framework combining distribution-grid simulations, market optimisation, PEM electrolysis modelling and cost–benefit analysis to compare the grid-supportive electrolysis against conventional grid enforcement. The results demonstrate that grid-supportive electrolysis can become competitive under suitable hydrogen market conditions. When operated in grid-supportive mode only, the capacity factor for the electrolysis lies below 5%. Economic viability emerges only when electrolysers are allowed to combine grid-supportive operation with market-driven hydrogen production. Thereby, the hydrogen price proves to be the key determinant: a hydrogen price above approximately 6 EUR/kg incentivises market-based operation and naturally resolves grid congestion without further intervention by the DSO. In some locations, smaller electrolysers (around 20–60% of the theoretically required size) deliver the best economic performance, recovering most curtailed renewable energy while limiting investment costs compared to conventional grid extension.
Suggested Citation
Philipp Ortmann & Andreas Patha & Roman Schwalbe & Klara Maggauer & Daniel Schwabeneder & Carolin Monsberger & Stefan Fink & Maximilian Prasser, 2026.
"Grid-Supportive Electrolysis in Distribution Grids: A Techno-Economic Analysis for Austrian Case Studies,"
Energies, MDPI, vol. 19(16), pages 1-22, August.
Handle:
RePEc:gam:jeners:v:19:y:2026:i:16:p:3732-:d:2011356
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