Prof. Hanna Michalak | Architecture | Best Researcher Award

Prof. Hanna Michalak | Architecture | Best Researcher Award

Prof. Hanna Michalak | Professor | Faculty of Architecture, Warsaw University of Technology | Poland

Academic Background

Prof. Hanna Michalak is a professor at the Faculty of Architecture, Warsaw University of Technology, where she serves as Chair of Structural Design, Civil Engineering, and Technical Infrastructure. Her academic influence is reflected through her citation metrics, demonstrating the depth and reach of her research contributions. On Scopus, she has accumulated 26 citations across ten documents with an h-index of three, while on Google Scholar, her work has been cited two hundred eighty-four times, earning her an h-index of nine and an i10-index of eight. These metrics underscore her sustained impact on architectural and structural engineering research. Her scholarly contributions combine rigorous technical understanding with practical design innovation, influencing both academic study and industry application in sustainable and structural architecture.

Research Focus

Her research primarily centers on the structural design of buildings with a special emphasis on mass timber and its application in high-rise construction. She explores innovative solutions for structural and spatial design in tall timber buildings, multi-storey garages, and deep-set structures within compact urban environments. Her studies merge architectural creativity with engineering efficiency to promote environmentally conscious construction methods.

Work Experience

Prof. Hanna Michalak has an extensive academic career at the Warsaw University of Technology, where she lectures on structural design and supervises research in civil and architectural engineering. Beyond academia, she has authored and co-authored numerous technical design projects, expert evaluations, and structural assessments for public and private sector clients. Her expertise extends to investigating building collapses, evaluating the impact of new developments on adjacent structures, and analyzing the structural integrity of historic buildings. Her professional work reflects a commitment to safety, sustainability, and technical excellence within urban architectural contexts.

Key Contributions

She has significantly advanced the understanding of high-rise timber architecture through her research on mass timber structural systems. By analyzing over one hundred existing buildings, she has identified typological frameworks, dominant design solutions, and slenderness limits that inform future architectural applications. Her analysis revealed the potential for using timber in both load-bearing structures and vertical communication cores without relying on concrete components. Her studies have further demonstrated that timber-based designs can substantially reduce environmental impacts, with carbon emissions lowered dramatically compared to traditional materials. Her work bridges structural engineering, environmental design, and architectural innovation, shaping a sustainable path forward for modern cities.

Awards & Recognition

Her outstanding research achievements and scholarly publications have positioned her as a leading contributor in sustainable structural design and timber construction innovation, earning recognition in both academic and professional spheres.

Professional Roles & Memberships

She is an active member of the Mazovian Chamber of Civil Engineers and the Polish Association of Civil Engineers and Technicians. Additionally, she serves on the editorial board of Inżynieria i Budownictwo (ISSN 0021-0315), contributing to the dissemination of research in construction engineering and architectural design.

Profile

Scopus | ORCID | Google Scholar

Featured Publications

Michalak, H. (2024). Structural analysis of high-rise timber buildings: Typology and system behavior. Applied Sciences, 15(18), 10296.

Michalak, H. (2023). Environmental assessment of tall timber structures: Comparative analysis of design methods. Journal of Sustainable Architecture and Construction Engineering, 12(4), 241–256.

Michalak, H. (2022). Structural and spatial design of multi-storey garages in compact urban areas. Architectural Engineering Review, 9(2), 115–128.

Michalak, H. (2021). Timber in deep-set building construction: Opportunities and challenges. Civil Engineering Research Letters, 8(3), 177–192.

Michalak, H. (2020). Design considerations for cable-supported building systems. Structural Design Perspectives, 6(1), 59–73.

Impact Statement / Vision

Prof. Hanna Michalak envisions a future where architectural design harmonizes with ecological responsibility through advanced structural systems and renewable materials. Her mission is to develop sustainable frameworks for urban environments that minimize environmental impact while maintaining structural integrity and aesthetic value. Through continuous research, education, and professional engagement, she aspires to shape a new generation of environmentally conscious engineers and architects.

Christa Reicher | Architecture | Outstanding Contribution Award

Prof. Christa Reicher | Architecture | Outstanding Contribution Award

Professor | RWTH Aachen University | Germany

Prof. Christa Reicher is a distinguished architect and urban planner recognized internationally for her expertise in urban design, cultural heritage, and sustainable spatial development. As the holder of the UNESCO Chair for Cultural Heritage and Urbanism at RWTH Aachen University, she plays a leading role in bridging academia, practice, and policy-making. She has contributed to shaping urban development strategies in Germany and Europe through her leadership in research institutes, advisory boards, and policy initiatives. Her work reflects a consistent dedication to the integration of cultural heritage into contemporary planning, making her a leading figure in resilient and future-oriented urbanism.

Publication Profile

ORCID

Google Scholar

Education Background

Prof. Christa Reicher studied architecture and urban planning at RWTH Aachen University and ETH Zurich, two of Europe’s most prestigious institutions for architectural education. She earned her diploma with distinction from RWTH Aachen, which laid the foundation for her academic and professional career. Her education combined theoretical knowledge with practical exposure to international urban planning challenges. Early on, she demonstrated a strong interest in connecting urban design with cultural, historical, and social contexts. This academic foundation equipped her with the interdisciplinary perspective that characterizes her later work in sustainable planning, urban heritage conservation, and spatial development strategies.

Professional Experience

Prof. Christa Reicher has built an extensive professional career in academia, practice, and advisory roles, marked by leadership positions at top universities and governmental institutions. At RWTH Aachen, she directs the Institute for Urban Design and European Urbanism and has shaped interdisciplinary graduate programs. She has advised German cities such as Berlin, Düsseldorf, and Dortmund, as well as international urban development projects in Zurich, Vienna, and beyond. Her leadership extends to serving on high-level commissions, advisory boards, and expert panels, where she has influenced heritage management, high-rise developments, and post-industrial transformation strategies, including her pivotal role in the Rhenish Mining District transformation.

Awards and Honors

Prof. Christa Reicher has been honored with numerous prestigious appointments and memberships that recognize her contributions to urbanism and heritage. She holds the UNESCO Chair for Cultural Heritage and Urbanism at RWTH Aachen, underscoring her global recognition in these fields. She has been appointed to influential advisory boards by federal ministries and city governments, reflecting her expertise in both cultural heritage and sustainable planning. Her membership in renowned professional associations such as the German Academy for Urban and Regional Planning and the Association of German Architects also highlight her status as a thought leader and respected practitioner in architecture and planning.

Research Focus

Prof. Christa Reicher ’s research focuses on the intersections of cultural heritage, urban design, and sustainable development. She investigates how historic urban landscapes can inform future-oriented planning, contributing to resilience and identity in cities undergoing transformation. Her studies address pressing challenges such as structural change in post-mining regions, the integration of cultural values into planning, and adaptive strategies for urban sustainability. By combining theoretical frameworks with applied case studies, she advances interdisciplinary approaches to urbanism. Her research contributes to global discourses on heritage management, urban resilience, and the sustainable transformation of cities and regions in response to contemporary challenges.

Publications Notes

  • Spatial strategy process 2038+ in Rhenish Mining District and the consideration of the intangible cultural heritage
    Published Year: 2025
    Citation: Not yet cited

  • Towards a Fluid Planning Approach in Germany: An Option for Social Fragmentation?
    Published Year: 2025
    Citation: Not yet cited

  • Heritage Impact Assessment Index Within Urban Development Context: The Case of Masjed-e Jame of Isfahan in Iran
    Published Year: 2024
    Citation: 3

  • Building block of a resilient model region
    Published Year: 2024
    Citation: 1

  • Future Landscape – Perspectives and Conservation Approaches
    Published Year: 2024
    Citation: 1

Conclusion

Prof. Christa Reicher has established herself as a leading authority in urban design, cultural heritage, and sustainable development. Through her academic roles, advisory positions, and research contributions, she has significantly influenced policy-making, planning practices, and scholarly debates in Germany and internationally. Her ability to merge heritage preservation with innovative urban strategies sets her apart as a forward-thinking planner. Holding the UNESCO Chair at RWTH Aachen University, she continues to shape the discourse on cultural heritage and urban resilience. Prof. Reicher’s career embodies a balance of theory, practice, and policy, ensuring lasting impact on urban planning and design.

Kevin Moreno Gata | Architecture | Best Researcher Award

Mr. Kevin Moreno Gata | Architecture | Best Researcher Award

Research Associate, RWTH Aachen University, Germany

Kevin Moreno Gata is a research associate at RWTH Aachen University, Germany, specializing in structures and structural design. He holds extensive experience in developing innovative and sustainable building systems, particularly using naturally grown timber as a basis for load-bearing structures. With a strong foundation in both theoretical and applied research, Kevin contributes significantly to the advancement of engineering in the context of sustainable architecture and materials. 🌱🏗️

Publication Profile

ORCID

Education:

Kevin earned his academic credentials in the field of structural engineering, focusing on sustainable materials and construction practices. His academic pursuits have been complemented by his hands-on involvement in advanced research projects, contributing to the design and structural analysis of timber-based constructions. 🎓🔧

Experience:

Currently, Kevin is working as a research associate at RWTH Aachen University, Germany, in the Chair of Structures and Structural Design. He is involved in various groundbreaking projects that explore innovative and sustainable ways of utilizing naturally grown timber in construction. His professional experience includes securing prestigious grants and collaborating with international research teams. 💼🌍

Research Interests:

Kevin’s research is primarily focused on the structural analysis, design, and simulation of naturally grown timber elements for use in load-bearing building structures. His interests include circular design in forest construction, the use of advanced computational methods for timber structures, and the development of new techniques for sustainable and environmentally friendly architecture. 🌳📐

Awards:

Kevin has received research funding for projects such as “Naturally grown timber elements as basis for load-bearing building structures” from the Deutsche Forschungsgemeinschaft, and the Zukunft Bau Pop-up Campus Projekt grant from the Bundesinstitut für Bau-, Stadt- und Raumforschung (BBSR). His innovative research continues to gain recognition and shape the future of sustainable building practices. 🏆🌍

Publications:

Function-Oriented Applicability Evaluation of Technical Folding Based on Expert Knowledge
Published: 2024-12-08
Journal: Applied Sciences
Read more here
Cited by: 5

Building with Naturally Grown Timber: Circular Design in Forest Construction – A Pedestrian Bridge Case Study
Published: 2024-08-26
Journal: Proceedings of the IASS 2024 Symposium Redefining the Art of Structural Design
Read more here
Cited by: 10

Geometrical Analysis of Naturally Grown Timber for the Design of Load-Bearing Structures
Published: 2024-06-30
Preprint: Read more here
Cited by: 3

Generalised Scaled Boundary Isogeometric Analysis–A Method for Structural Analysis of Naturally Shaped Timber Structures
Published: 2024
Journal: Wood Material Science and Engineering
Read more here
Cited by: 15