A marine turbocharger retrofitting platform

Date

2021-01-11

Supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

ASME

Department

Type

Conference paper

ISSN

Format

Free to read from

Citation

Ntonas K, Aretakis N, Roumeliotis I, Mathioudakis K. (2021) A marine turbocharger retrofitting platform. In: ASME Turbo Expo 2020, 21-25 September 2020, London, Virtual Event. Paper number GT2020-14643

Abstract

A turbocharger retrofitting platform utilizing 1D models for calculating turbomachinery components maps and a fully coupled process for integration with the turbomachinery components and the diesel engine, is presented. The platform has been developed with two modes of operation, allowing the retrofitting process to become fully automatic. In the first mode, available turbo-components are examined, in order to select the one that best matches the entire engine system, aiming to retain or improve the diesel engine efficiency. In the second mode, an optimization procedure is employed, in order to redesign the compressor to match the entire system in an optimum way. Dimensionless parameters are used as optimization variables, for a given compressor mass flow and power. A retrofitting case study is presented, where three retrofitting options are analyzed (compressor retrofit, turbocharger retrofit and compressor redesign). In the first and second option, turbocharger retrofitting is carried out, using available turbo-components. It is shown that initial performance cannot be reconstituted using off-the-self solutions. In the third option, compressor designing is performed, using the optimization mode, in order to provide an improved retrofitting solution, aiming to at least reconstituting the original diesel engine performance. Finally, a CFD analysis is carried out, in order to validate the compressor optimization tool capability to capture the performance trends, based on geometry variation

Description

Software Description

Software Language

Github

Keywords

Geometry, Flow (Dynamics), Engines, Computational fluid dynamics, Turbomachinery, Compressors, Turbochargers

DOI

Rights

Attribution 4.0 International

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Funder/s