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Peter

Peter Breuhaus

Chief Scientist

pebr@norceresearch.no
+47 51 87 50 77
+47 920 19 066
Prof. Olav Hanssensvei 15, 4021 Stavanger, Norway

I have a Diploma from the Institute of Power Plant Technology, Steam and Gas Turbines, RWTH Aachen University, Germany and since 2010 worked as a chief scientist in NORCE

Key qualifications

Competence in power generation technologies, energy systems concepts and design, their integration and optimisation for energy efficiency. Furthermore, experience and competence in turbomachinery, thermodynamics and fluid dynamics.

Project management in research and industrial environment, national as well as international.

Interdisciplinary cooperation across boundaries (e.g. with social science, bio-technology, etc.).

Business development and project acquisition.

Peter Breuhaus

Division

Energy & Technology

Research themes

Hydrogen
Energy systems

Research Groups

Well Operations and Risk Management

More information about Peter

See profile in Cristin

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Source: Rune Rolvsjord, NORCE

Projects

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Publications
Overview of the Potential of Energy Harvesting Sources in Electric Vehicles – Energies 2023
Establishment of a Baseline Integrated Energy System to Decarbonise Geographical Islands – 2022
Performance Simulation of Micro Gas Turbines for Hydrogen Application – 2022
Metanfangst fra melke- og kjøttproduksjon i driftsbygninger – NORCE Norwegian Research Centre 2020
Techno-economic feasibility study of a solar-powered distributed cogeneration system producing power and distillate water: Sensitivity and exergy analysis – Renewable Energy 2020
Modelling, Simulation and Analysis – 2020
Foundation and Background for Energy Internet Simulation – 2020
Lessons learned after one-year of use of a highly efficient neighbourhood in Norway – IOP Conference Series: Materials Science and Engineering 2019
Is a distributed system based on a micro gas turbine integrated with renewable energy sources suitable for effective desalination? Sensitivity and exergy analysis – 2018
Energy efficiency measures for offshore oil and gas platforms – Energy 2016
CO2-mitigation options for the offshore oil and gas sector – Applied Energy 2016
CO2-mitigation options for offshore oil and gas sector – Applied Energy 2016
Thermo-economic modelling and process integration of CO2-mitigation options on oil and gas platforms – Chemical Engineering Transactions 2014
Null Emission Policy in Norway? Part 2 – ASME Swiss Section Newsletter 2014
Null Emission Policy in Norway? Part1 – ASME Swiss Section Newsletter 2014
Life performance of oil and gas platforms: Site integration and thermodynamic evaluation – Energy 2014
Oil and gas platforms with steam bottoming cycles: System integration and thermoenvironomic evaluation – Applied Energy 2014
Performance analysis of a biogas-fueled micro gas turbine using a validated thermodynamic model – Applied Thermal Engineering 2014
Micro gas turbine configurations with carbon capture – Performance assessment using a validated thermodynamic model – Applied Thermal Engineering 2014
Thermodynamic analysis of an upstream petroleum plant operated on a mature field – Energy 2014
Experimental evaluation and ANN modeling of a recuperative micro gas turbine burning mixtures of natural gas and biogas – Applied Energy 2014
Exergetic assessment of energy systems on North Sea oil and gas platforms – Energy 2013
Development of an optimized artificial neural network model for combined heat and power micro gas turbines – Applied Energy 2013
Modeling of probability distribution functions for automatic threshold calculation in condition monitoring systems – Measurement 2013
An EU initiative for future generation of IGCC power plants using hydrogen-rich syngas: simulation resuls for the base line configuration – Applied Energy 2012
Modeling of probability distribution functions for automatic threshold calculation in condition monitoring systems – Elsevier IFAC Publications / IFAC Proceedings series 2012
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