Publications by Arlind Dervishaj
Peer reviewed
Articles
[1]
Dervishaj, A., Räsänen, A., Gudmundsson, K. & Lahdensivu, J. (2026). From durability to circularity : ensuring service life and enabling reuse of concrete in circular construction. Materials and Structures, 59(1).
[2]
Fonsati, A., Dervishaj, A. & Gudmundsson, K. (2026). Leveraging OpenBIM standards and information delivery specification (IDS) for digital validation in circular construction : reusing hollow core slabs. Smart and Sustainable Built Environment.
[3]
Matthews, B., Hernández Vargas, J., Vullings, M., Dervishaj, A., Jonker-Hoffrén, P., Alkki, L. & Wijte, S. (2026). Toward complete circular reuse : A database system for reclaimed precast concrete elements. Automation in Construction, 188.
[4]
Dervishaj, A. & Gudmundsson, K. (2025). Parametric design workflow for solar, context-adaptive and reusable facades in changing urban environments. Journal of Building Performance Simulation, Taylor & Francis, 18(2), 161-190.
[5]
Dervishaj, A. & Gudmundsson, K. (2025). Sunlight Autonomy for Buildings: A New Methodology for Evaluating Sunlight Performance in Urban and Architectural Design. LEUKOS The Journal of the Illuminating Engineering Society of North America, 21(1), 34-64.
[6]
Dervishaj, A., Malmqvist, T., Silfwerbrand, J. & Gudmundsson, K. (2024). A digital workflow for assessing lifespan, carbonation, and embodied carbon of reusing concrete in buildings. Journal of Building Engineering, 96, 1-23.
[7]
Dervishaj, A. & Gudmundsson, K. (2024). From LCA to circular design : A comparative study of digital tools for the built environment. Resources, Conservation and Recycling, 200.
[8]
Dervishaj, A. (2023). From Sustainability to Regeneration : a digital framework with BIM and computational design methods. Architecture, Structures and Construction, 3(3), 315-336.
Conference papers
[9]
Dervishaj, A. (2026). Solar, Adaptive and Circular Facades : Parametric design workflow for evolving cities. In OpenFace Day - 24 June 2026 @TU Delft..
[10]
Dervishaj, A., Norton, B. (2025). Daylight in a circular and sustainable built environment. Presented at Daylight Academy Annual Conference & General Assembly 2025, 22-23 May 2025, TUM-IAS, Garching, Germany.
[11]
Dervishaj, A., Gudmundsson, K. (2025). From Precast Structures to reusable components : Processing and reconditioning of reclaimed precast concrete elements. In Proceedings of the 2nd International Conference on Circularity in the Built Environment (CiBEn2025). (pp. 179-179). Tampere: Tampere Univeristy.
[12]
Dervishaj, A., Gudmundsson, K. (2025). Smart Logistics for Reuse : Tracking precast concrete in Circular Construction. In Proceedings of the 2nd International Conference on Circularity in the Built Environment (CiBEn2025). (pp. 92-92). Tampere: Tampere University.
[13]
Elshani, D., Dervishaj, A., Hernández, D., Gudmundsson, K., Staab, S., Wortmann, T. (2024). An Ontology for the Reuse and Tracking of Prefabricated Building Components. In Proceedings - The 2nd International Workshop on Knowledge Graphs for Sustainability (KG4S 2024), Hersonissos, Greece, May 27th, 2024: colocated with the 21st Extended Semantic Web Conference (ESWC 2024). (pp. 53-64). RWTH Aachen University.
[14]
Dervishaj, A., Gudmundsson, K., Malmqvist, T. (2024). Digital workflow to support the reuse of precast concrete and estimate the climate benefit. In International Conference on Challenges for the Next Generation Built Environment, 09/05/2024 - 10/05/2024, Bologna, Italy. (pp. 1-10). Bologna: IOP Publishing.
[15]
Hernández Vargas, J., Dervishaj, A. (2024). Embedding NFC Tags Into 3DCP Elements. In Digital Concrete 2024. 4th RILEM International Conference on Concrete and Digital Fabrication. 4th to 6th September 2024 - Munich, Germany..
[16]
Dervishaj, A. (2024). Frameworks, Digital Tools, and Climate Benefits of Concrete Reuse in New Buildings. In 4th BIM A+ International Conference in Building Information Modelling, 1st and 2nd October, 2024..
[17]
Dervishaj, A. (2024). Sunlight Autonomy for Sustainable Buildings and Cities : Maximizing daylight potential outdoors and indoors. Presented at Daylight Academy’s Annual Conference & General Assembly 2024, 30-31 May 2024, Trondheim, Norway.
[18]
Dervishaj, A., Hernández Vargas, J., Gudmundsson, K. (2023). Enabling reuse of prefabricated concrete components through multiple tracking technologies and digital twins. In Proceedings of the 2023 European Conference on Computing in Construction and the 40th International CIB W78 Conference. (pp. 1-8). Heraklion, Crete: European Council for Computing in Construction.
[19]
Dervishaj, A., Fonsati, A., Hernández Vargas, J., Gudmundsson, K. (2023). Modelling Precast Concrete for a Circular Economy in the Built Environment : Level of Information Need guidelines for digital design and collaboration. In eCAADe 2023: Digital Design Reconsidered, Proceedings of the 41st eCAADe conference, 20-22 September 2023, Graz University of Technology Graz, Austria. Education and research in Computer Aided Architectural Design in Europe, and Graz. (pp. 177-186). Brussels, Graz: Graz University of Technology Faculty of Architecture.
[20]
Dervishaj, A. (2023). Operationalization of Regenerative Design Indicators : An Integrated Framework of Design and Analysis. In Proceedings of the UIA World Congress of Architects Copenhagen 2023: Design for Climate Adaptation. (pp. 175-183). Springer Nature.
[21]
Dervishaj, A., Dervishaj, G. (2023). Sunlight Autonomy (SA) for building facades. Presented at Inside–Out: Daylight in Sustainable Urban Design Conference, 11 March 2023, ETH Zurich ONA. Zürich.
[22]
Dervishaj, A., Dervishaj, G., Gudmundsson, K., Björk, F. (2022). New computational methods with Sunlight, Daylight, and Quality Views for Regenerative Design. In 2nd International Nordic Conference on Building Simulation. Copenhagen, Denmark: EDP Sciences.
Non-peer reviewed
Theses
[23]
Dervishaj, A. (2026). Enabling concrete reuse through digital workflows for a circular built environment (Doctoral thesis , KTH Royal Institute of Technology, Stockholm, TRITA-ABE-DLT 2628). Retrieved from https://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-387878.
Reports
[24]
[25]
[26]
Vullings, M., Huuhka, S., Wijte, S., Lambrechts, T., Houtman, J., Landman, M. ... Gottschling, D. (2024). Best practice guidelines and recommendations for reuse-optimised deconstruction. .
[27]
Räsänen, A., Lahdensivu, J., Vullings, M., Dervishaj, A. & Huuhka, S. (2024). Procedure for quality management of reclaimed concrete elements. .
[28]
Räsänen, A., Lahdensivu, J., Gudmundsson, K., Dervishaj, A., Westerlind, H., Lambrechts, T. ... Huuhka, S. (2024). Properties and quality of precast concrete elements deconstructed in ReCreate's pilots. .
[29]
Vullings, M., Wijte, S., Henschel, C., Fischer, J., Huuhka, S., Salmio, E. ... Dervishaj, A. (2024). Real-life deconstruction pilots of the ReCreate project. .
Other
[30]
Dervishaj, A. & Gudmundsson, K. (2025). Is Circular Construction the answer to concrete’s carbon footprint?. Stockholm: KTH Royal Institute of Technology.
[31]
Dervishaj, A. & Gudmundsson, K. (2023). Digital Reuse : Leveraging technology for a circular built environment. Stockholm, Sweden: KTH Royal Institute of Technology.
Latest sync with DiVA:
2026-10-09 22:14:31 UTC