

The Solutions Explorer lets you create alerts that match your needs. You can create several alerts and you will receive a notification each time a new Solar Impulse Efficient Solutions is labelled and matches your filters.
Your Search Alerts will show up here.
Sign in to create alerts for your filters and search terms.
Sign inDon't have an account?
Sign upOctober 2, 2023
Artelia Group
Trondheim
Nyhavna Utvikling is spearheading an ambitious urban transformation project in Trondheim, Norway’s third-largest city, to develop a modern harbor district with a strong emphasis on sustainability. A key component of this initiative is the Nyhavna EN BT2, a six-floor office building that exemplifies innovative construction practices aimed at reducing environmental impact and enhancing efficiency. Innovative Construction with SigmaSlab: The Nyhavna EN BT2 building has been constructed using SigmaSlab, a cutting-edge technology that integrates Dramix concrete reinforcement fibers with CCL post-tensioning systems. This combination was chosen specifically for its numerous benefits in terms of efficiency, cost savings, and sustainability. Each SigmaSlab in the Nyhavna EN BT2 building spans from 7.2 meters to 9.6 meters and was cast in a single pour without any joints, covering a total area of 9600 square meters.
The reduced requirement for labor onsite led to significant cost savings and faster project completion CO2 Savings: The sustainable construction methods employed by SigmaSlab contribute to substantial CO2 reductions, aligning with the project's eco-friendly objectives
Dramix® steel fiber reinforced concrete offers a solution that is both effective, cost-efficient and environmentally conscious. By using steel fibers instead of traditional concrete reinforcement methods such as mesh or rebar, you can reduce the CO2 emissions by up to 35% for the construction of, for example, an automated warehouse, a production plant, tunnels, precast elements, etc. This is because steel fibers reinforce concrete homogeneously, requiring less material for the same level of performance. Additionally, advanced design optimization allows for the creation of thinner, yet durable concrete elements that use less concrete, steel, and water compared to traditional reinforcement methods.
Share
The information set out above, is solely for the purposes of information and the Solar Impulse Foundation does not provide any guarantee as to its authenticity, completeness or accuracy. This information does not constitute investment advice or a recommendation to buy into, transact or to enter into any agreement with any of the parties or persons mentioned above. Potential investors or interested parties are solely responsible for their investment or business decisions and for performing any due diligence required by the circumstances. The innovator has asserted ownership of the intellectual property rights for images, videos, and content showcased above, affirming full and unrestricted usage rights, and has provided explicit permission for the Solar Impulse Foundation to publish such information designated as "public" in the application form.