467.600 PEOPLE
People | Locations | Statistics |
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Serhiienko, Serhii |
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Schmalz, Ulrike |
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Oliveira, Marisa |
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Ribeiro Pereira, Maria Teresa |
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Bellér, Gábor |
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Araujo, M. |
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Frey, Michael | Karlsruhe |
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Coutinho-Rodrigues, João | Coimbra |
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Wouters, Christian Guillaume Louise | Aachen |
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Kessel, Paul J. Van Van |
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Árpád, István |
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Fontul, Simona |
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Kocsis, Dénes |
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Cigada, Alfredo | Milan |
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Oort, Neils Van | Delft |
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Agárdi, Anita | Miskolc |
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Andrews, Gordon E. |
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Sousa, Nuno |
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Witlox, Frank Jacomina Albert | Ghent |
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Dobruszkes, Frederic |
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Kiss, Judit T. |
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Hadachi, Amnir | Saint-Étienne-du-Rouvray |
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Hamilton, Carl J. | Kunovice |
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Misiura, Serhii |
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Schimpf, Marina |
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Burke, Richard D.
University of Bath
in Cooperation with on an Cooperation-Score of 37%
Topics
- electric vehicle
- engine
- optimisation
- accumulator
- motor
- combustion
- internal combustion engine
- design
- simulation
- turbine
- turbocharger
- pressure
- compressor
- surging
- modeling
- heat flow
- heat transfer
- fluid
- fluid dynamic
- capacitance
- vehicle
- contaminant
- survey
- carbon
- gas
- exhaust gas
- carbon monoxide
- sulfur
- fuel
- sensor
- chemical
- metal
- hydrogen
- rock crystal
- carbon dioxide
- sensitivity
- oxygen
- hydrocarbon
- chemical composition
- sulfur dioxide
- water vapor
- steam
- gas detector
- air void
- factory
- hydrogen sulfide
- ammonia
- porous material
- sulfide
- behavior
- transient
- show 21 more
Publications
- 2022The influence of the battery technology choice on motor optimisation for electric vehicles
- 2022Methods for constrained optimization of expensive mixed-integer multi-objective problems, with application to an internal combustion engine design problem
- 2019Attempt to correlate simulations and measurements of turbine performance under pulsating flows for automotive turbochargerscitations
- 2018Compressor pressure investigation of surge onset at steady and unsteady operations of an automotive turbocharger
- 2017Compressor surge for fully and semi fluctuating flows in automotive turbochargers
- 2016Lumped capacitance and three-dimensional computational fluid dynamics conjugate heat transfer modelling of an automotive turbochargercitations
- 2015Investigation into the benefits of reduced oil flows in internal combustion enginescitations
- 2015Lumped Capacitance and 3D CFD Conjugate Heat Transfer Modelling of an Automotive Turbochargercitations
- 2015Gas sensing using porous materials for automotive applicationscitations
- 2015Dynamic Identification of Thermodynamic Parameters for Turbocharger Compressor Modelscitations
- 2014Analysis and modeling of the transient thermal behavior of automotive turbochargerscitations
- 2014Modelling of turbocharger heat transfer under stationary and transient engine operating conditions
- 2014Towards Next-Generation Automotive Exhaust Gas Sensors
- 2014Porous Materials for Next Generation Automotive Gas Sensors: Suitability and Application
- 2013Analysis and modelling of the transient thermal behaviour of automotive turbochargerscitations
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