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2025
Abbassi A, Dörpinghaus A, Römgens N, Grießmann T, Rolfes R. Embedded feature selection using dual-network architecture. Machine Learning with Applications. 2025 Sep;21:100672. Epub 2025 Jun 18. doi: 10.1016/j.mlwa.2025.100672
Abbassi A, Römgens N, Grießmann T, Rolfes R. Simulation of damage-induced wave propagation in composites using knowledge-embedded generative adversarial networks for structural health monitoring. Structural health monitoring. 2025 Sep 25. Epub 2025 Sep 25. doi: 10.1177/14759217251377871
Anilkumar PM, Haldar A, Clancy G, Scheffler S, Rao BN, Weaver PM et al. Bistable variable stiffness laminates: novel manufacturing and modeling strategies. Materials and design. 2025 Jul;255:114131. Epub 2025 Mai 28. doi: 10.1016/j.matdes.2025.114131
Arash B, Zakavati S, Bahtiri B, Jux M, Rolfes R. Phase-field modeling of fracture in viscoelastic–viscoplastic thermoset nanocomposites under cyclic and monolithic loading. Engineering with computers. 2025 Feb;41(1):681-701. 123741. Epub 2024 Aug 8. doi: 10.1007/s00366-024-02041-8
Asur Vijaya Kumar PK, Fleischhacker R, Dean A, Rolfes R, Pettermann HE. Revisiting multi-phase field model for FRCs using Puck theory. Composite Structures. 2025 Nov 15;372:119549. Epub 2025 Aug 11. doi: 10.1016/j.compstruct.2025.119549
Bansod A, Anilkumar PM, Scheffler S, Rolfes R. A computationally efficient abstract model for capturing the nonlinear response of bolted joints. in AIAA Science and Technology Forum and Exposition, AIAA SciTech Forum 2025. American Institute of Aeronautics and Astronautics Inc. (AIAA). 2025 Epub 2025 Jan 3. doi: 10.2514/6.2025-2687
Bashir D, Anilkumar PM, Scheffler S, Haldar A, Rao BN, Rolfes R. A Review of the Dynamic Behavior of Thermally Induced Bistable Configurations of Unsymmetrical Composite Laminates and their Applications. Archives of Computational Methods in Engineering. 2025 Apr;32(3):1635-1677. 114302. Epub 2024 Okt 17. doi: 10.1007/s11831-024-10192-6
Bohne T, Rolfes R. Investigating the influence of a bubble curtain on the underwater sound wave field generated by offshore pile driving. Journal of the Acoustical Society of America. 2025 Jan;157(1):471-481. Epub 2025 Jan 23. doi: 10.1121/10.0034841
Bonilla D, Jonscher C, Wolniak M, Grießmann T, Rolfes R. Automated Transmissibility‐Based Damage Detection for Output‐Only Systems. Structural Control and Health Monitoring. 2025;2025(1):9921293. Epub 2025 Dez 22. doi: 10.1155/stc/9921293
Hacker G, Just G, Scheffler S, Koch I, Gude M, Rolfes R. Efficient derivation of a nonlinear cohesive bridging law for numerical delamination simulations under static and fatigue loading. Composite Structures. 2025 Dez 1;373:119585. Epub 2025 Sep 13. doi: 10.1016/j.compstruct.2025.119585
Hematipour M, Dean A, Tariq M, Scheffler S, Rolfes R. Progressive static failure prediction of short fibre reinforced epoxy adhesive material: A combined experimental and numerical approach. Composite Structures. 2026 Mär 15;380:119959. Epub 2025 Dez 22. doi: 10.1016/j.compstruct.2025.119959
Hente A, Arash B, Jux M, Rolfes R. Enhancement of fracture properties of amorphous polymers by nanoparticles: A machine-learning assisted coarse-grained model. Materials Today Communications. 2025 Sep;48:113185. Epub 2025 Jul 17. doi: 10.1016/j.mtcomm.2025.113185
Jauken H, Liesecke LC, Wolniak MT, Rolfes R. Validation of a ply-based fatigue damage model using blade fatigue test data until failure. 2025. Epub 2025 Jun 27.
Jonscher C, Helming P, Märtins D, Fischer A, Bonilla D, Hofmeister B et al. Dynamic displacement measurement of a wind turbine tower using accelerometers: tilt error compensation and validation. Wind Energy Science. 2025 Jan 22;10(1):193-205. doi: 10.5194/wes-10-193-2025
Jonscher C, Grießmann T, Rolfes R. Monitoring von Turmstrukturen mit probabilistischen Methoden: Monitoring of Tower Structures with Probabilistic Methods. in Baudynamik 2025. VDI Verlag GmbH, Düsseldorf. 2025. S. 135-146. (VDI-Berichte; 2447). doi: 10.51202/9783181024478-135
Jonscher C, Warnken S, Ragnitz J, Heinemeyer J, Märtins D, Möller S et al. Real-Time Capable Model Updating of Digital Twins: A Case Study of a Cantilever Beam. in Cunha Á, Caetano E, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures : EVACES 2025. Band 1. 2025. S. 997-1006. Chapter 99. (Experimental Vibration Analysis for Civil Engineering Structures). doi: 10.1007/978-3-031-96110-6_99
Krabbe P, Jauken H, Rolfes R. Accelerated computation of vortex-lattices via fast multipole method and vortex particle approximation. 2025. Abstract von Wind Energy Science Conference 2025, WESC 2025, Nantes, Frankreich. Epub 2025.
Liesecke L, Jonscher C, Hofmeister B, Grießmann T, Rolfes R, Govers Y. Strukturdynamik einer Windenergieanlage beim Aufbau: Structural dynamics of a wind turbine during installation. in Baudynamik 2025. VDI Verlag GmbH, Düsseldorf. 2025. S. 237-248. (VDI-Berichte; 2447). doi: 10.51202/9783181024478-237
Märtins D, Schuster D, Hente C, Jauken HC, Gebhardt CG, Rolfes R. An adaptive time integration approach for aeroelastic simulations using the unsteady vortex-lattice method and geometrically exact beams. Journal of Fluids and Structures. 2025 Sep;137:104360. Epub 2025 Jun 18. doi: 10.1016/j.jfluidstructs.2025.104360, 10.15488/18794
Märtins D, Schuster D, Hente C, Gebhardt CG, Rolfes R. On an objective, geometrically exact coupling element for a director-based multi-body finite element framework. Multibody system dynamics. 2025 Mai;64(1):33-60. 103897. Epub 2024 Jun 5. doi: 10.1007/s11044-024-09998-w
Minne LJ, Jauken H, Rolfes R. On an Efficient Nonlinear Beam Model for Floating Offshore Wind Turbines. 2025. Abstract von Wind Energy Science Conference 2025, WESC 2025, Nantes, Frankreich. Epub 2025.
MOLLER SOREN, POTTHAST THOMAS, WINNEWISSER NIKLAS, JONSCHER CLEMENS, BEER MICHAEL, ROLFES RAIMUND. Quantifying the Required Sample Size for Desired Confidence in Damage Detection of Structural Health Monitoring. 2025. doi: 10.12783/shm2025/37512
Möller S, Jonscher C, Grießmann T, Rolfes R. Comparing Gaussian process enhanced grey-box approaches to detect damage in unknown environmental conditions due to climate change. Structural health monitoring. 2025 Jul;24(4):2338 - 2364. Epub 2025 Feb 5. doi: 10.1177/14759217241313375
Ragnitz J, Hofmeister B, Jonscher C, Hübler C, Rolfes R. A stochastic multi-objective optimisation approach for damage localisation via model updating with uncertain input parameters. Engineering structures. 2025 Mai 1;330:119860. Epub 2025 Feb 19. doi: 10.1016/j.engstruct.2025.119860
Ragnitz J, Jonscher C, Hofmeister B, Hübler C, Rolfes R. Influence of Optimised Sensor Placements on Multi-Objective Model Updating for Damage Localisation. in Dohler M, Melot A, Lopez MA, Hrsg., Proceedings of the 11th International Operational Modal Analysis Conference, IOMAC 2025. International Operational Modal Analysis Conference (IOMAC). 2025. S. 620-627
Römgens N, Abbassi A, Talahmeh M, Grießmann T, Rolfes R. Monitoring Different Prestressing Forces of a Concrete Steel Tower Using Neuronal Networks. in Cunha Á, Caetano E, Hrsg., Experimental Vibration Analysis for Civil Engineering Structures, EVACES 2025 - Volume 1. Springer Science and Business Media Deutschland GmbH. 2025. S. 793-802. (Lecture Notes in Civil Engineering). doi: 10.1007/978-3-031-96110-6_78
Römgens N, Abbassi A, Fürll F, Grießmann T, Rolfes R, Marx S. Robust Damage Detection and Localization Under Varying Environmental Conditions Using Neural Networks and Input-Residual Correlations. Structural Control and Health Monitoring. 2025 Mai 23;2025(1):3451930. doi: 10.1155/stc/3451930
Römgens N, Abbassi A, Dierksen N, Grießmann T, Hofmeister B, Hübler C et al. Temperature-compensated autoencoders with sequences of raw time-domain signals for damage detection and localization in active and passive SHM. Structural health monitoring. 2025 Nov 4;14759217251386293. Epub 2025 Nov 4. doi: 10.1177/14759217251386293
Schmidt F, Hübler C, Rolfes R. Kriging meta-models for damage equivalent load assessment of idling offshore wind turbines. Wind Energy Science. 2025 Dez 22;10(12):3069-3089. doi: 10.5194/wes-10-3069-2025