首页|Validation of an Emission Model for a Marine Diesel Engine with Data from Sea Operations

Validation of an Emission Model for a Marine Diesel Engine with Data from Sea Operations

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In this study, a model is developed to simulate the dynamics of an internal combustion engine, and it is calibrated and validated against reliable experimental data, making it a tool that can effectively be adopted to conduct emission predictions. In this work, the Ricardo WAVE software is applied to the simulation of a particular marine diesel engine, a four-stroke engine used in the maritime field. Results from the bench tests are used for the calibration of the model. Finally, the calibration of the model and its validation with full-scale data measured at sea are presented. The prediction includes not only the classic engine operating parameters for a comparison with surveys but also an estimate of nitrogen oxide emissions, which are compared with similar results obtained with emission factors. The calibration of the model made it possible to obtain an overlap between the simulation results and real data with an average error of approximately 7% on power, torque, and consumption. The model provides encouraging results, suggesting further applications, such as in the study on transient conditions, coupling of the engine model with the ship model for a complete simulation of the operating conditions, and optimization studies on consumption and emissions. The availability of the emission data during the sea trial and validated simulation results are the strengths and novelties of this work.

SimulationMarine diesel engine modelFour-stroke engineExhaust emissionsNitrogen oxide emissionsSea trials

Luigia Mocerino、C.Guedes Soares、Enrico Rizzuto、Flavio Balsamo、Franco Quaranta

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Department of Industrial Engineering,University of Naples Federico Ⅱ,80125 Naples,Italy

Centre for Marine Technology and Ocean Engineering(CENTEC),Instituto Superior Técnico,Universidade de Lisboa,Lisbon,Portugal

Department of Electrical,Electronic,Telecommunications Engineering&Naval Architecture,University of Genoa,Genoa,Italy

Open access funding provided by Università degli Studi di Napoli FedericoⅡwithin the CRUI-CARE Agreement

2021

哈尔滨工程大学学报(英文版)
哈尔滨工程大学

哈尔滨工程大学学报(英文版)

CSTPCDCSCD
影响因子:0.381
ISSN:1671-9433
年,卷(期):2021.20(3)
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