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Project duration: 2024-01-01 - 2026-07-31

Opti-Zent: Investigation of pomace digestion in centrifugation via experiment and simulation with innovative screw geometry to increase the yield

When producing vegetable oils or fruit juices with 2-phase decanters, approx. 80-90% of the oil or juice can be extracted in high quality. To significantly reduce the loss, the processes involved in dehydrating the marc, the rheological behavior of the liquid and the powder flow of the pile will be investigated. Simulations of the discrete element method coupled with flow simulation and thus a new screw geometry for improved extraction of the marc.
Project lead THRO: Prof. Dr. Johannes Lindner
Produkte und Produktion Produkte und Produktion Prozesstechnik
Project duration: 2024-01-01 - 2026-03-31

Robot-based wall cladding supported by artificial intelligence

The aim of the research project "RoWaPla - Robot-based wall cladding supported by artificial intelligence" is to develop an intelligent, robot-assisted production unit for the cladding of timber frame walls.
Project lead THRO: Prof. Dr.-Ing. Fabian Riß
Übergreifend Automatisierung digitale Transformation Digitale Transformation KI neue Technologien Produkte und Produktion Roboter Übergreifend
Project duration: 2024-01-01 - 2025-12-31

DBU_HELIOS - Predictive Spatial Analytics for Solar Energy Grid Integration: Enhancing Reliability and Efficiency

The "Helios" energy meteorology project is developing precise PV forecasts using cloud camera data in order to optimize the integration of solar power into electrical grids.
Project coordinator THRO: M.Sc. Andreas Boschert, Prof. Michael Zehner
Bauen, Planen und Energie Bauen, Planen und Energie Energieeffizienz Solarenergie
Project duration: 2024-01-01 - 2025-05-31

DBU_reversible wood-concrete composite ceilings

In this project, an attempt is being made to create a new type of bond between wood and concrete that requires few or no screw connections. Bauen, Planen und Energie Bauen, Planen und Energie Bioökonomie Bioökonomie und Holztechnologie Holz-Beton Verbunddecken Holztechnik Holztechnologie
Project duration: 2023-12-01 - 2025-01-31

Development of a wooden traffic sign bridge TTS - Bridge

Within the scope of the project a traffic sign bridge made of wood is being constructed. Of particular of particular importance is the development of suitable monitoring and monitoring systems to record the load-bearing behavior. Furthermore, the the location of the traffic sign gantry, in the directly weathered outdoor area and with high high de-icing salt ingress, special attention must be paid to structural wood protection with the appropriate choice to pay particular attention to the wood species used. Bioökonomie und Holztechnologie Bauen Bautechnik Bioökonomie und Holztechnologie Planen und Energie
Project duration: 2023-12-01 - 2024-11-30

ROCkET EMPOWERing Female EntrepreneurS

With EXIST-Women, the Federal Ministry for Economic Affairs and Climate Protection supports women at universities and research institutions who are interested in setting up a business in the phase before the company is founded.
Project lead THRO: Prof. Dr. Stephanie Kapitza
Übergreifend Geschlechtergleicheit Gründung Innovation Management Übergreifend
Project duration: 2023-11-01 - 2026-01-31

Climate neutrality through networking in neighborhoods

Analysis and tool development for the development of transformation pathways to climate neutrality with the help of low-temperature networks in neighborhoods.
Overall lead - project manager THRO: Prof. Dr.-Ing. Isabell Nemeth, Prof. Dr. Jochen Stopper
Bauen, Planen und Energie Bauen, Planen und Energie energieeffiziente Gebäude Energieeffizienz Klimaschutz Klimawandel nachhaltiges Bauen Nachhaltigkeit
Project duration: 2023-10-09 - 2023-12-31

Stärkung der praxisorientierten (Holzbau)-Lehre an der Technischen Hochschule Rosenheim im Rahmen der Holzbauinitiative Bayern

Project lead THRO: Dr. Sebastian Hirschmüller
Übergreifend Bautechnik Bioökonomie Holzbau Holztechnik Lehre Übergreifend
Project duration: 2023-10-01 - 2026-09-30

Electromagnetic susceptibility of MEMS microphones

The project aims to understand the effect of interfering, high-frequency coupling in a microphone installed in a mobile device (e.g. smartphone, tablet) and to reduce it by means of suitable measures.
Overall lead - project manager THRO: Prof. Dr.-Ing. Matthias Winter
Produkte und Produktion Automatisierung Digitale Transformation Mechatronik Produkte und Produktion
Project duration: 2023-10-01 - 2026-09-30

Injection molding of cellulose fibers - Development of the manufacturing process for paper applications for technical components that fall into tools

The overall aim of the research project is to enable the production of paper components using the injection molding process.
Overall lead - project manager THRO: Prof. Dr. Manuela List, Prof. Dipl.-Ing. Martin Würtele
Übergreifend biologische Abbaubarkeit Bioökonomie Nachhaltigkeit Prozesstechnik Spritzgussverfahren Übergreifend Zellulosefasern

Centre for Research, Development and Transfer

Technische Hochschule Rosenheim

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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