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Energies,2019年

Apostolos Pesyridis, Amin Mahmoudzadeh Andwari, Alireza Hajialimohammadi, Ali Salavati-Zadeh, Vahid Esfahanian

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Energies,2019年

Samira Sayad Saravi, Constantinos Panayides, Apostolos Pesyridis

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Energies,2019年

Samira Sayad Saravi, Constantinos Panayides, Apostolos Pesyridis

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Applied Sciences,2019年

Glen Walsh, Gregory Guarda, Marco Berchiolli, Apostolos Pesyridis

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This paper proposes a preliminary design algorithm for application of a turbocharger axial turbine, based on turbine thermodynamic analysis and the Ainley-Mathieson performance model that converges to the optimal design based on a set of input parameters and engine boundary conditions. A design space sweep was conducted, and a preliminary design was generated with a predicted total to static efficiency of 74.94%. CFD (computational fluid dynamics) was used to successfully validate the algorithm and show the preliminary design had a total to static efficiency of 73.98%. The design also produces the required power to support steady-state operation of the compressor in both free flow conditions and with a constrained pressure outlet.