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Dive into the research topics where Charles Stuart is active.

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Featured researches published by Charles Stuart.


ASME TURBOEXPO 2015: Turbine Technical Conference and Expositition | 2015

An Evaluation of Vaneless Diffuser Modelling Methods as a Means of Improving the Off-Design Performance Prediction of Centrifugal Compressors

Charles Stuart; Stephen Spence; Dietmar Filsinger; Andre Starke; Sung In Kim; Peter Harley

An evaluation of existing 1-D vaneless diffuser design tools in the context of improving the off-design performance prediction of automotive turbocharger centrifugal compressors is described. A combination of extensive gas stand test data and single passage CFD simulations have been employed in order to permit evaluation of the different methods, allowing conclusions about the relative benefits and deficiencies of each of the different approaches to be determined. The vaneless diffuser itself has been isolated from the incumbent limitations in the accuracy of 1-D impeller modelling tools through development of a method to fully specify impeller exit conditions (in terms of mean quantities) using only standard test stand data with additional interstage static pressure measurements at the entrance to the diffuser. This method allowed a direct comparison between the test data and 1-D methods through sharing common inputs, thus achieving the aim of diffuser isolation.Crucial to the accuracy of determining the performance of each of the vaneless diffuser configurations was the ability to quantify the presence and extent of the spanwise aerodynamic blockage present at the diffuser inlet section. A method to evaluate this critical parameter using CFD data is described herein, along with a correlation for blockage related to a new diffuser inlet flow parameter ⚡, equal to the quotient of the local flow coefficient and impeller tip speed Mach number. The resulting correlation permitted the variation of blockage with operating condition to be captured.Copyright


SAE International Journal of Commercial Vehicles | 2013

Development and Validation of a Forklift Truck Powertrain Simulation

Martin Murtagh; Robert Kee; Geoffrey McCullough; Charles Stuart; Conor Bradley; Stephen Trimble; Matthew Allen; Chenyao Chen; Alan Kolkemo; Drew Reichenbach


ASME 2018 Turbo Expo | 2018

A Three-Zone Modelling Approach for Centrifugal Compressor Slip Factor Prediction

Charles Stuart; Stephen Spence; Sung Kim; Dietmar Filsinger; Andre Starke


Journal of Turbomachinery-transactions of The Asme | 2017

Characterizing the Influence of Impeller Exit Recirculation on Centrifugal Compressor Work Input

Charles Stuart; Stephen Spence; Dietmar Filsinger; Andre Starke; Sung In Kim


ASME Turbo Expo 2017: Turbomachinery Technical Conference and Exposition | 2017

Characterising the Influence of Impeller Exit Recirculation on Centrifugal Compressor Work Input

Charles Stuart; Stephen Spence; Dietmar Filsinger; Andre Starke; Sung In Kim


ASME Turbo Expo 2017: Turbomachinery Technical Conference & Exposition | 2017

Characterising the influence of impeller trailing edge recirculation on centrifugal compressor work input

Charles Stuart; Stephen Spence; Dietmar Filsinger; Andre Starke; Sung Kim


International Turbocharging Seminar 2015 | 2015

A 1-D radial vaneless diffuser model accounting for the effects of aerodynamic blockage

Charles Stuart; Stephen Spence; Sung Kim; Dietmar Filsinger; Andre Starke


11th International Gas Turbine Congress | 2015

A 1-D Vaneless Diffuser Model Accounting for the Effects of Spanwise Flow Stratification

Charles Stuart; Stephen Spence; Sung In Kim; Dietmar Filsinger; Andre Starke


Turbocharger Seminar 2014 | 2014

An analysis of stage performance in automotive turbocharger centrifugal compressors

Charles Stuart; Peter Harley; Stephen Spence; Sung Kim; Dietmar Filsinger; Andre Starke

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Stephen Spence

Queen's University Belfast

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Peter Harley

Queen's University Belfast

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Conor Bradley

Queen's University Belfast

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Martin Murtagh

Queen's University Belfast

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Robert Kee

Queen's University Belfast

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Dietmar Filsinger

Springer Science+Business Media

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