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Project duration: 2025-01-01 - 2026-12-31

Temporary improvement of the airborne sound insulation of windows with external closures to maintain airborne sound insulation at night

In order to avoid a further increase in construction costs due to oversizing, the research project is investigating the extent to which external closures can contribute to compliance with airborne sound insulation at night.
keine Nennung auf Homepage THRO: Dr. Andreas Mayr, Prof. Dr.-Ing. Andreas Rabold
Bauphysik Bautechnik Gesundheit Holzbau Labor für Schallmesstechnik Schallschutz
Project duration: 2022-10-01 - 2023-03-30

LuScha: Untersuchung dezentraler Wohnraumlüftungsgeräte: Notwendiger Luftwechsel vs. Schallemission

Bauphysik Bauen, Planen und Energie Bautechnik Energieeffizienz Gebäudetechnik Gebäudetechnische Anlagen Labor für Schallmesstechnik Lüftungstechnik Raumluftqualität
Project duration: 2021-06-01 - 2024-03-31

LignoTrend: Entwicklung eines innovativen Holzdeckensystems mit besonderen Trittschallschutzeigenschaften im tieffrequenten Bereich

Sub-project lead THRO: Prof. Dr. Ulrich Schanda
Bauphysik Deckenschwingungen Finite-Elemente Methode Holzbau Körperschall Labor für Schallmesstechnik Schallschutz
Project duration: 2021-01-01 - 2025-12-31

Noise protection_FSP Bayern: Prediction method for noise and vibration protection for BIM-based building planning - completion of input data and extension to artificial intelligence methods

For timber construction, planning tools for sound and vibration protection in the form of a specialist acoustic model are to be integrated into open BIM platforms. Bauphysik BIM Building Information Modeling Digitale Transformation Holzbau Labor für Schallmesstechnik Schallschutz
Project duration: 2019-01-01 - 2022-03-31

Low Cost nZEB: Low cost nearly zero energy buildings

Project lead THRO: Prof. Dr. Harald Krause
Bauphysik Bauen, Planen und Energie Bautechnik Best Practice energieeffiziente und klimaschutzkonforme Gebäudestandards leistbares Wohnen Vernetzung von Wissenschaft und Bauwirtschaft
Project duration: 2018-01-01 - 2022-06-30

Prediction method for noise and vibration protection for BIM-based building planning

Research focus "Forecasting methods for noise and vibration protection for BIM-based building planning - continuation and extension to methods of artificial intelligence Bauphysik BIM Building Information Modeling Digitale Transformation Holzbau Labor für Schallmesstechnik Schallschutz
Project duration: 2016-12-01 - 2020-05-31

NaWaRo insulation materials: More than just insulation - additional benefits of insulation materials made from renewable raw materials

The overarching, primary goal of this research network is to significantly increase the applicability of insulating materials made from renewable raw materials.
Project lead THRO: Prof. Dr.-Ing. Andreas Rabold
Bauphysik Bautechnik Biomasse Holzbau Kreislaufwirtschaft Labor für Schallmesstechnik Leichtbau Materialwissenschaft Nachhaltigkeit
Project duration: 2016-11-01 - 2018-11-01

Transfer functions in timber construction - prediction of sound transmission from building services systems using a tabular, practical engineering method

Sub-project lead THRO: Prof. Dr. Ulrich Schanda
Bauphysik Energieeffizienz Gebäudetechnik Gebäudetechnische Anlagen Holzbau Körperschall Labor für Schallmesstechnik Schallemission Schallschutz
Project duration: 2015-09-01 - 2018-08-31

Forschungs- und Innovationsnetzwerk Alpines Bauen

Project lead THRO: Prof. Dr. Harald Krause
Bauphysik Alpines Bauen Bauen, Planen und Energie Bautechnik Best Practice Gebäudetechnik Handwerk Monitoring Qualifizierungsprogramm
Project duration: 2015-04-01 - 2017-03-31

Vibroacoustics in the planning process for timber constructions - modeling, numerical simulation, validation

The aim of the project is a planning process that closely links the numerical simulation and verification of vibroacoustic building properties to a comprehensive building information model (BIM).
Sub-project lead THRO: Prof. Dr. Ulrich Schanda
Bauphysik Bautechnik BIM Building Information Modeling Digitale Transformation Finite-Elemente Methode Holzbau Körperschall Labor für Schallmesstechnik

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M.A. Laura Scholz

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laura.scholz[at]th-rosenheim.de