Mads Holst Aagaard Madsen is a Postdoc at the Department of Wind and Energy Systems, Technical University of Denmark. His research focuses on aerodynamic shape optimization and computational fluid dynamics for wind turbine design, with specialization in wake recovery, mesh adaptation, and turbulent flow interactions. Active in CFD simulations and wind turbine blade optimization Supervises PhD projects on vortex generators and aero-elastic design Publishes in top wind energy conferences (TORQUE) and journals Collaborates with international researchers on wind farm efficiency Research Themes Wind turbine aerodynamics, turbulence modeling, and boundary layer control through advanced flow solvers. Recent Publications 2025: RANS solver stabilization for airfoil optimization 2024: Wake recovery dynamics, mesh resolution studies, and blade design enhancement Contact Email: mham@dtu.dk Phone: +4542670450
Christian Bak is a Professor and Head of the Poul la Cour Tunnel at the Department of Wind and Energy Systems, Technical University of Denmark (DTU). He leads the Rotors Wind Turbine Design Division and has contributed extensively to wind turbine aerodynamics, blade erosion, and computational fluid dynamics (CFD). Education: MSc in Mechanical Engineering (Energy and Physics), Technical University of Denmark (1987–1993) External Experience: Engineer in Fluid Simulation at COWI A/S (1993–1997) His research focuses on Wind Turbine Engineering , Aerodynamics , and Leading Edge Erosion . Recent work includes wind tunnel experiments, digital twin development for erosion analysis, and optimization of blade root aerodynamics. Scientific Activities include keynote presentations at TORQUE 2024, WindEurope, and guest lectures on wind energy myths. He supervises PhD projects on blade root design and leading edge roughness categorization.
Victoria Laura Antoci is a Senior Researcher at the Department of Space Research and Technology, Technical University of Denmark (DTU), specializing in stellar astrophysics with a focus on magnetic fields and pulsation phenomena. Her work bridges observational astronomy and theoretical modeling. Her research centers on stellar pulsation mechanisms in intermediate-mass stars, particularly Ap stars and roAp stars. Key interests include: Magnetic field interactions with stellar oscillations Analysis of TESS and Gaia mission data for variable stars Exoplanet detection through stellar variability signatures Light curve modeling of 'hump and spike' features Recent publications reveal strong emphasis on magnetic phenomena in A/F-type stars , with growing applications to exoplanet research. Her work increasingly integrates satellite mission data (TESS, Gaia) with ground-based observations to resolve stellar surface features. As Principal Investigator and supervisor, she leads significant projects including the ERC Consolidator Grant MAGNIFY and the STEP-STONE satellite simulator initiative. Her supervisory role includes PhD candidates investigating magnetic field effects on stellar pulsations.
Nikolas Angelou is a Senior Researcher at the Department of Wind and Energy Systems, Danish Technical University (DTU), specializing in meteorology, remote sensing, and wind energy systems. His work integrates advanced lidar technologies with atmospheric physics to address critical challenges in wind energy development. Research Focus: Wind-tree interactions, floating offshore wind turbines, lidar turbulence measurements, and atmospheric flow characterization Key Projects: T-lidar (temperature lidar), LICOREIM (lidar-assisted control), and Single Tree Experiment Technical Expertise: Doppler lidar systems, WRF-LES simulations, 3D wind field analysis, and motion correction algorithms Collaborations: National Center for Atmospheric Research (USA), academic institutions in Spain, and cross-disciplinary teams in Denmark His recent publications highlight innovative studies on wind load estimation for trees, turbine wake characterization, and lidar measurement optimization. Angelou contributes to the UN Sustainable Development Goals through his wind energy research.
Martin Eder is an Associate Professor at the Department of Wind and Energy Systems , Technical University of Denmark (DTU) , located in Roskilde, Denmark. He leads and contributes to research on wind-turbine rotor-blade engineering, composite materials, fatigue, and additive manufacturing, and is currently supervising several PhD students. Research Interests Eder's work centers on the engineering science of wind-turbine blades , with emphasis on: composite materials durability and testing, high-cycle fatigue and fracture mechanics of adhesively bonded joints, cross-sectional analysis of tapered composite beams, thermoplastic composite additive manufacturing, corrosion-fatigue of offshore steel structures. These themes are reflected in DTU’s fingerprint analysis, showing his leadership in wind-turbine engineering, rotor-blade engineering, and related fatigue topics. Recent Publications & Trends His latest papers (2024-2025) reveal a dual focus: advancing digital-industrial concepts such as human-cyber-physical systems for Industry 5.0 wind turbines, and refining mechanics-based models for fatigue, thermoplastic 3D printing, and adhesive joints. Together, these works push towards lighter, more durable, and smarter turbine blades. Scientific Awards No specific awards or honors are listed in the provided material. Supervision & Projects Eder currently supervises three PhD projects: “In-situ corrosion fatigue tests for offshore steel structures” (V. Golshani) “Multi-physics modeling of 3D printing processes for sustainable composite structures” (H. P. Nowruzani) Industrial PhD “Advanced accurate and computationally efficient numerical methods for wind-turbine rotor-blade design” (P. Bertolini) He has also participated in major research initiatives such as WindWeld and national corrosion-fatigue consortia, demonstrating strong collaboration with both academia and industry. Laboratories & Teams He is affiliated with DTU Wind Energy’s Composites Manufacturing and Testing and Wind Energy Materials and Components divisions, where experimental facilities for fatigue, composite manufacturing, and structural testing support his research group’s work.
Jakob Mann is a Professor at the Department of Wind and Energy Systems , Technical University of Denmark. His research focuses on Wind Energy , Remote Sensing , and Atmospheric Turbulence , with applications in Offshore Wind Engineering and Micrometeorology . UN SDG Contributions : Renewable Energy (SDG 7), Climate Action (SDG 13) Recent Research Trends (based on 15 most recent publications): Wind turbine wake dynamics in complex terrain Improving turbulence measurements via advanced LiDAR configurations Offshore wind resource characterization and load modeling Micrometeorological studies of forest-edge and tree-scale wind interactions Supervision Activities Main supervisor for 4 active PhD projects (2023-2028) Co-supervisor in 3 additional PhD programs 26+ conference presentations including invited lectures Labs & Collaborations DTU Wind Energy (Roskilde, Denmark) Wind Energy Systems Division International collaborations in 12+ countries Leadership in 5 active research consortia
Søren Bie Bogh is an Associate Professor affiliated with the SDU Climate Cluster at the University of Southern Denmark. His research focuses on patient safety, emergency care, and quality improvement in healthcare systems, with expertise in clinical epidemiology, medication error prevention, and mechanical restraint reduction in mental health settings. Nationally recognized for analyzing large-scale healthcare data Active in Danish patient safety research networks Collaborates across disciplines including obstetrics, emergency medicine, and climate health Research interests center on evidence-based interventions to enhance clinical processes and patient outcomes, particularly through: Systematic analysis of patient complaints Statistical modeling of healthcare demand patterns Development of clinical decision-making frameworks Implementation science for safety initiatives Recent work examines climate-related impacts on emergency services and methodological approaches to medication error analysis. As a supervisor in projects like Guided Clinical Decision-making for Mechanical Restraints Use , he contributes to advancing nursing practices and healthcare quality metrics. His activities include: Organizing research symposia Peer reviewing for journals like International Journal for Quality in Health Care Statistical methodology workshops
Mariana Bichuette Cartuliares serves as Assistant Professor at the Department of Regional Health Research VIP, IRS - Hospital Sønderjylland (University of Southern Denmark), specializing in the Research Unit of Emergency Medicine in Aabenraa. Her work bridges clinical emergency care with infectious disease research, focusing on diagnostic optimization and treatment protocols for acute infections. Her research program centers on infectious disease management in emergency settings , with critical emphasis on antibiotic stewardship , pneumonia diagnostics , and infection biomarker validation . Key methodologies include multicentre randomized controlled trials and cross-sectional cohort studies across Danish emergency departments. Primary investigation areas encompass community-acquired pneumonia, urinary tract infections, cellulitis, and lower respiratory tract infections, with particular attention to clinical decision-making and diagnostic accuracy. Recent publications (2024-2025) reveal a concentrated research trajectory in infection diagnostics using biomarker profiling and clinical characteristic analysis. The work consistently addresses antibiotic treatment optimization across diverse infection types, demonstrating strong translational focus from diagnostic models to clinical implementation in emergency care pathways. Scientific recognition includes: Ph.D- cup (2019) Denmark’s Lunge foundation Found: Price for best master thesis (2019) Her academic contributions include research-based antibiotic stewardship training, simulation physiotherapy instruction, and co-supervision of student projects like "Tidlig og aktiv mobilisering" at Åbenrå ITA. Current research initiatives feature POET-INDEED (intravenous vs. oral antibiotics comparison) and the INDEED project (infectious diseases in emergency departments), with active coordination of multicentre clinical trials. She operates within the Research Unit of Emergency Medicine at Aabenraa, maintaining international collaborations including Hospital Clinic of Barcelona, and participates in European research networks focused on emergency medicine and infectious disease diagnostics through organizations like EUSEM.
Tine Engedal is a Postdoctoral Research Fellow in the Department of Plant and Environmental Sciences at the University of Copenhagen, specializing in soil science and sustainable agricultural practices. Her research focuses on carbon and nitrogen dynamics in agricultural systems, particularly examining cover crop impacts on soil health. Her primary research interests include soil carbon cycling, cover crop systems, rhizodeposition processes, and sustainable nutrient management. Dr. Engedal's work bridges field experimentation with modeling approaches to understand how plant-soil interactions affect carbon sequestration and greenhouse gas emissions. Analysis of her recent publications (2023-2025) reveals a strong emphasis on quantifying carbon inputs from cover crops, understanding soil organic carbon formation mechanisms, and evaluating trade-offs in cover crop management practices. Her research consistently addresses practical agricultural challenges while contributing to fundamental soil science knowledge. Dr. Engedal actively collaborates with researchers across multiple institutions, as evidenced by her co-authorship on numerous interdisciplinary studies. Her work has garnered significant attention in the scientific community with multiple publications receiving substantial citations and social media engagement.
Virgil Baran serves as a Guest Researcher at the Niels Bohr Institute within the Faculty of Science at the University of Copenhagen, specializing in Condensed Matter Physics. His work focuses on theoretical and computational investigations of quantum phenomena in hybrid semiconductor-superconductor nanostructures, with emphasis on topological states and device applications. Research interests center on topological quantum computing foundations, including Majorana fermion dynamics, spin chain physics in hybrid systems, and computational modeling of superconducting subgap states. Baran develops surrogate models to simulate complex quantum behaviors, bridging theoretical frameworks with experimental quantum device engineering. His methodologies integrate machine learning techniques with condensed matter theory to address challenges in quantum transport and impurity physics. Recent publications (2023-2025) reveal a cohesive research trajectory: advancing theoretical tools for floating superconductor-semiconductor hybrids, exploring spin-1 Haldane chains, and solving impurity-induced subgap state problems. These contributions target topological quantum computing hardware development, with increasing emphasis on computational efficiency through surrogate modeling. No scientific awards were documented in the source material. Student mentorship and grant funding details were not disclosed in available information. Baran operates within the Condensed Matter Physics section at the Niels Bohr Institute (Universitetsparken 5, Copenhagen), collaborating extensively with experimental groups as evidenced by co-authorship patterns. His network includes researchers from multiple international institutions, particularly evident in multi-author papers on Majorana modes and quantum dot systems.
Waseem Hassan is a Postdoc researcher at the Department of Computer Science (DIKU) at the University of Copenhagen. His work bridges engineering, computer science, and human perception through innovative haptic technologies. His primary research interests include: Haptic interfaces for human-computer interaction Development of multimodal and modular actuation systems Psychophysical studies of tactile perception Application of machine learning techniques to haptic systems Creation of haptic content for augmented and virtual reality environments Hassan's publication record shows a strong trajectory in non-contact haptic interfaces using sound and ultrasound, with significant contributions appearing in top venues like CHI, IEEE Access, and Scientific Reports through 2025. His work demonstrates particular expertise in creating novel tactile experiences through cross-modal interactions and advanced actuation techniques. Notable achievements include research referenced in patents and coverage by news outlets, indicating practical relevance and impact beyond academia. His collaborations span multiple institutions, reflecting the interdisciplinary nature of his work in human-computer interaction.
Ximena Ramos serves as a Guest researcher at the Niels Bohr Institute, University of Copenhagen, specializing in Astrophysics and Planetary Science. Her institutional affiliation centers on advanced research in planetary system formation and evolution within the institute's astrophysics division. Her primary research focuses on exoplanet migration mechanisms, protoplanetary disk dynamics, and gas flow behavior in laminar accretion environments. She employs computational modeling to investigate how Jupiter-mass planets interact with circumstellar disks, with particular attention to hydrodynamic effects and orbital evolution processes. Ramos' recent work demonstrates significant contributions to understanding planetary migration under laminar flow conditions, as evidenced by her 2022 publication in Astronomy and Astrophysics . This research bridges theoretical astrophysics and fluid dynamics, providing critical insights into the early stages of planetary system development.
Asbjørn Arvad Jørgensen is a Postdoctoral Researcher at the Niels Bohr Institute within the Faculty of Science at the University of Copenhagen. His research focuses on Quantum Optics and Photonics, specifically working with micro ring resonators and optical frequency combs for high-speed data transmission applications. He maintains an active research profile with publications in high-impact journals including Nature Photonics and Physical Review series. His research interests span Quantum Optics, Photonics, Optical Frequency Combs, Micro Ring Resonators, High-Speed Data Transmission, and Optical Lattice Clocks. His work bridges theoretical modeling with experimental implementation in integrated photonic systems, particularly focusing on chip-scale solutions for next-generation optical communications and precision measurement systems. Jørgensen's publication record shows a strong trajectory in photonics research with significant citations, particularly for his Nature Photonics paper on petabit-per-second data transmission which has garnered over 110 citations. His research demonstrates consistent collaboration with leading groups in quantum optics and photonics across Europe. His academic service includes peer-reviewed contributions to major optics conferences including the Conference on Lasers and Electro-Optics (CLEO). His research has received attention across multiple platforms with coverage in news outlets, social media, and academic networks.
Anne Nørremølle is an Associate Professor at the Department of Cellular and Molecular Medicine, Medical Genetics Program, Faculty of Health and Medical Sciences, University of Copenhagen. Her research focuses on understanding the pathogenic mechanisms causing cellular damage in inherited neurodegenerative disorders, with specific emphasis on Huntington disease. Dr. Nørremølle earned her Ph.D. from the University of Copenhagen in 1995 with a focus on Huntington Disease, following a Master of Science degree in 1990 with a focus on Cerebral Ischemia. She has been at the University of Copenhagen since 1991, progressing from Ph.D. student to her current position as Associate Professor since 2001. Her research spans several key areas including neurodegenerative disorders, Huntington disease mechanisms, mitochondrial function, oxidative stress, and genetic modifiers of disease progression. She leads a research group investigating metabolic changes in neuronal and non-neuronal cell types in Huntington disease models, with the goal of identifying new therapeutic targets. Her work also includes analyzing DNA sequences of the huntingtin gene region in Danish patients to identify variants that modify disease onset or progression. Dr. Nørremølle's publication record shows consistent focus on Huntington disease research from 2020-2025, with particular attention to cellular mechanisms, mitochondrial dysfunction, and potential therapeutic approaches. Her work spans basic science investigations of disease mechanisms to applied research in genetic education and therapeutic development. Dr. Nørremølle is actively involved in teaching, serving as course director for the Medical Genetics course (576 students annually) and teaching Gene Therapy to master's students. She has supervised numerous bachelor's, master's, and Ph.D. students, all of whom have graduated with excellent results. Her teaching philosophy emphasizes continuous development of methods and curriculum to optimize student motivation and learning outcomes. Her research group collaborates extensively both nationally and internationally, focusing on inherited neurodegenerative disorders beyond just Huntington disease. She maintains an active research program with ongoing projects exploring the metabolic underpinnings of neurodegenerative diseases and potential therapeutic interventions targeting these pathways.
Dr. Anette Ella Boklund is an Associate Professor at the Department of Veterinary and Animal Sciences, Faculty of Health and Medical Sciences, University of Copenhagen. With over 20 years of specialized experience, she focuses on epidemiological modeling of contagious diseases in livestock systems. Her expertise spans disease simulation, risk analysis, and outbreak management, particularly for swine and avian pathogens. She maintains active collaborations with industry partners including Danish swine producers and Kopenhagen Fur, adhering to institutional conflict-of-interest protocols. Research Focus: Dr. Boklund's work centers on three primary domains: Development of computational models for disease spread in animal populations Risk assessment frameworks for emerging zoonotic threats Evidence-based biosecurity protocols for livestock industries She maintains particular expertise in African Swine Fever, avian influenza, and foot-and-mouth disease dynamics. Publication Trends: Her recent research (2025) demonstrates strong emphasis on: Transmission modeling across species interfaces (wildlife-livestock) Validation of spatial disease spread algorithms Comparative analysis of international disease mitigation policies Vector competence studies for viral diseases Professional Engagement: Dr. Boklund serves on multiple national and international committees including: Danish Expert Group for Foot-and-Mouth Disease (current) EFSA ASF Working Group (2018-2019) ICAHS 2020 Scientific Committee She regularly presents at veterinary epidemiology conferences and contributes to One Health initiatives.