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Project duration: 2025-04-01 - 2027-03-31

Development of energy- and resource-efficient circular sawing technology with innovative cutting technology to reduce cutting performance and adhesive wear

The energy input when cutting wood is influenced by cutting force and cutting edge wear. The aim is to achieve efficient circular sawing technology to reduce friction and adhesive wear.
Project lead THRO: Prof. M.Eng. Christian Kortüm
Nachhaltigkeit Bioökonomie Bioökonomie und Holztechnologie Holztechnik Holztechnologie Produktionstechnik Prozess- und Verfahrenstechnik Ressourceneffizienz
Project duration: 2025-03-15 - 2026-03-14

DUnaMoT - Digital support for sustainable mobility in tourism

DUnaMoT paves the way for sustainable, cross-border tourism mobility in Bavaria-Tyrol by promoting cross-border information systems and ticket solutions.
Project lead THRO: Prof. Dr. Wibke Michalk
Nachhaltigkeit digitale Technologien Digitale Transformation Gesundheit Mobilität nachhaltiger Tourismus 4.0 Sozialer Wandel und Wohlergehen Tourismus
Project duration: 2025-01-01 - 2027-06-30

Campus Mobility Rosenheim Traunstein

CaMoRoT aims to realize the exemplary implementation of an innovative overall concept of various operational mobility measures. Nachhaltigkeit digitale Technologien Digitale Transformation Klimaschutz Mobilität Mobilitätsmanagement Übergreifend
Project duration: 2024-11-01 - 2027-10-31

KnowHowHP - Upskilling for boosting heat pump installation in refurbishments

The three-year KnowHowHP (Know-how Heat Pump) project teaches an integral planning process in which heat pumps and renovation concepts are optimally coordinated. Nachhaltigkeit Bauen Bauphysik Bautechnik nachhaltiges Bauen Planen und Energie Sanierung Wärmepumpe
Project duration: 2024-09-01 - 2027-08-31

Strategies for the material utilization of bark-damaged silver fir - Subproject 1

The aim of the WeiTaRi project is to determine the potential for economically and ecologically long-term material use of silver fir wood with bark damage.
Project lead THRO: Prof. Dr. Matthias Zscheile
Nachhaltigkeit Bioökonomie Bioökonomie und Holztechnologie holzbasierte Bioökonomie Holztechnik Holzverarbeitung
Project duration: 2024-09-01 - 2027-08-31

Leverage synergy by cyber-physical systems for the convergence of the eco systems mobility, infrastructure and energy in the circular economy for the Society 5.0

Cynergy4MIE is a European project with the aim of revolutionizing the industrial landscape by integrating basic technologies, cross-sectional technologies and key application areas.
Project lead THRO: Prof. Dr.-Ing. Noah Klarmann
Nachhaltigkeit digitale Technologien Digitale Transformation Produktionstechnik
Project duration: 2024-09-01 - 2027-08-31

Interreg Alpine Space - Building circular in the alpine space

The Interreg project BAUHALPS promotes sustainable building in the Alpine region through Innovation, Culture and NEB values to develop climate-friendly standards for future construction.
Project lead THRO: Prof. Andreas Heinzmann
Nachhaltigkeit Alpines Bauen Bauphysik Bautechnik Bioökonomie und Holztechnologie energieeffiziente und klimaschutzkonforme Gebäudestandards Klimawandel nachhaltiges Bauen
Project duration: 2024-05-01 - 2027-04-30

Data Science for Sustainability

In the face of global challenges such as climate change, environmental pollution and increasing resource consumption, identifying sustainable solutions is of the utmost importance. AI4GREEN is a future-oriented initiative. Nachhaltigkeit Automatisierung Digitale Transformation Effizientere Nutzung von Rohstoffen und Energie Energieeffizienz Energietechnik Werkstofftechnik
Project duration: 2024-04-01 - 2025-01-31

Innovation management Inn_Salzach

Identifying the needs and requirements of regional SMEs with regard to transformation processes (sustainability, circular economy, artificial intelligence, etc.) Nachhaltigkeit Change Management Digitale Transformation Gesundheit Gesundheitsmanagement KMU 4.0 Kreislaufwirtschaft Sozialer Wandel und Wohlergehen
Project duration: 2024-01-01 - 2027-12-31

Climate-resilient bioeconomy in the value-added cycle of wood and other renewable raw materials

The Rosenheim Technical University of Applied Sciences is researching the material use of climate-resilient wood and biomass. The focus here is on the processing of new types of wood and waste wood as well as the recycling of the products obtained from them and their recyclability using digital methods and AI. Nachhaltigkeit Bioökonomie und Holztechnologie Holztechnik Kreislaufwirtschaft

Centre for Research, Development and Transfer

Technische Hochschule Rosenheim

Hochschulstraße 1
83024 Rosenheim


FundE[at]th-rosenheim.de

Support of publications

M.A. Laura Scholz

T +49 (0) 8031 / 805 - 2689
laura.scholz[at]th-rosenheim.de