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Effective regional collaboration for a fossil-free society -VERSAM
The project aims to develop knowledge about how regional collaboration contributes to building the multifaceted capacity required to achieve a fossil-free welfare society.
The Role of Hydrogen in Sweden's Energy System
The research project will examine the role of hydrogen in Sweden's energy system, focusing on both historical and contemporary conditions. The goal is to increase knowledge about hydrogen's technical and societal opportunities, risks, and conditions.
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Energy Resilient Cities
How can cities' energy systems become more resilient to climate change and geopolitical challenges? The project explores opportunities for increased local resilience through decentralization, user flexibility, and energy storage.
Capacity for Assessment of Socio-economic Implications
This project will analyze the socioeconomic effects and optimize planning using the Raps tool. The aim is to develop an academic platform to understand the impact of the transition on communities and regions.
Smart symbiosis
The aim of this project is to increase the understanding of how collaboration that promotes new resource flows between public and private actors can be stimulated.
The importance of physical and socio-political factors for wind power deployment
The ambition with this project is to identify and quantify socio-political and institutional factors that constrain the potential for renewable energy.
Energy management in the shipping and manufacturing sectors
The research project was analyzing how energy management is conducted in Swedish manufacturing and shipping industries.
Integrating data-driven decision-support, energy models and data analytics in urban transition governance
The goal of this project is to make better use of data, modelling and datadriven decision-support for governing the transformation of urban energy systems towards sustainability and climate neutrality.
Electric power grid resilience
The goal of project is to provide unique and novel knowledge of how the energy system of buildings can contribute to an electric power system that is resilient, i.e. has an ability to foresee, adapt and quickly recover from disturbances.
Transition of the energy system
The project contributes with new knowledge to the sustainable transformation of the Swedish energy system.