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Mapping wind potential areas in Bavaria, Germany

Stengel, Martin; Mitterhofer, Matthias; Stengel, Martin (2025)

gis.Science.
DOI: 10.14627/gis.Science.2025.4.4


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Vector-based Land Eligibility Analysis for Renewable Energy Sources

Neumayer, Martin; Bücker, Dominikus; Nemeth, Isabell; Mitterhofer, Matthias...

2025 5th International Conference on Electrical, Computer and Energy Technologies (ICECET).
DOI: 10.1109/icecet63943.2025.11472444


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BIM for Building Acoustics: Integration of building acoustics in an open BIM workflow ...

Châteauvieux-Hellwig, Camille; Brockmeyer, Dieter; Brockmeyer, Nico; Schanda, Ulrich...


DOI: 10.71568/DASDAGA2025.113


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Mapping Wind Potential Areas in Bavaria, Germany: The Impact of Forest Use and Distance to Residential Buildings

Neumayer, Martin; Mitterhofer, Matthias; Stengel, Martin (2025)

AGIT Conference.
DOI: 10.25598/AGIT/2025-8


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Semantics for assembling modular components in a scalable building performance simulation

Mitterhofer, Matthias; Schneider, G; Stratbücker, S; Steiger, S (2019)

Journal of Building Performance Simulation 12, 145-159.
DOI: 10.1080/19401493.2018.1492020


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A methodology for a scalable building performance simulation based on modular components

Sedlbauer, Klaus; Leistner, Philip; Mehra, Schew-Ram; Mitterhofer, Matthias (2018)

, v, 176 Seiten.



Abschlussbericht VASE: VerbundAnlagen: Validierte Ermittlung der Systemeffizienz von Systemkombinationen für die Umsetzung der ErP-Richtlinie

Eberl, Michael; Kirmayr, Thomas; Mitterhofer, Matthias; Steiger, Simone (2018)

, 123 Seiten.


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A Methodology for a Scalable Building Performance Simulation based on Modular Components

Sedlbauer, Klaus; Sedlbauer, Klaus; Bednar, Thomas; Auer, Thomas...

, Online-Ressource.



An FMI-enabled methodology for modular building performance simulation based on Semantic Web Technologies

Mitterhofer, Matthias; Schneider, G; Stratbücker, S; Sedlbauer, Klaus Peter (2017)

Building and Environment 125, 49-59.
DOI: 10.1016/j.buildenv.2017.08.021


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Determination of requirements on occupant behavior models for the use in building performance simulations

Lindner, Andrea ; Park, S; Mitterhofer, Matthias (2017)

Building Simulation 10, 861-874.
DOI: 10.1007/s12273-017-0394-8


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Model driven engineering methods for integrated building performance optimization

Stratbücker, S; Zhu, S; Mitterhofer, Matthias (2017)

Building Simulation Conference Proceedings, 1956-1965.
DOI: 10.26868/25222708.2017.785


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Planung, Auslegung und Betriebsoptimierung von energieeffizienten Neu- und Bestandsbauten durch Modellierung und Simulation auf Basis von Bauwerkinformationsmodellen (EnEff-BIM)

Stratbücker, Sebastian; Mitterhofer, Matthias; Benndorf, Gesa; Réhault, Nicolas (2017)

, 120, 4, 2 ungezählte Blätter.


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Semantics for assembling modular network topologies in FMI-based building performance simulation

Mitterhofer, Matthias; Schneider, G; Stratbücker, S; Steiger, S (2017)

Building Simulation Conference Proceedings, 1548-1556.
DOI: 10.26868/25222708.2017.418


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Towards design tools for holistic assessment of indoor environmental quality

Pathak, A; Mitterhofer, Matthias; Lengsfeld, K; Stratbücker, S (2017)

Healthy Buildings Europe 2017.


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Information requirement definition for BIM: A life cycle perspective

Schneider, G; Bougain, A; Noisten, P; Mitterhofer, Matthias (2016)

eWork and eBusiness in Architecture, Engineering and Construction - Proceedings of the 11th European Conference on Product and Process Modelling, ECPPM 2016, 225-234.


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Dynamic simulation and optimization of an experimental micro-CSP power plant

Mitterhofer, Matthias; Phd, M (2015)

ASME 2015 9th International Conference on Energy Sustainability, ES 2015, collocated with the ASME 2015 Power Conference, the ASME 2015 13th International Conference on Fuel Cell Science, Engineering and Technology, and the ASME 2015 Nuclear Forum.
DOI: 10.1115/ES2015-49333


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Computational temperature fi eld analysis based on Particle Image Velocimetry (PIV) measurement of natural buoyant thermal plume,Temperaturfeldberechnung aus einer Particle Image Velocimetry (PIV)-Messung einer natürlichen Auftriebsströmung

Van Treeck, C; Mitterhofer, Matthias (2013)

Bauphysik, 77-85.
DOI: 10.1002/bapi.201310050


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Prof. Dr. Matthias Mitterhofer


Technische Hochschule Rosenheim

Zentrum für Forschung, Entwicklung und Transfer
Hochschulstraße 1
83024 Rosenheim

T +49 (0) 8031 / 805 - 2952
matthias.mitterhofer[at]th-rosenheim.de

ORCID iD: 0000-0003-0037-5577