An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine

The marine diesel engine combustion process is discontinuous and unsteady, resulting in complicated simulations and applications. When the diesel engine is used in the system integration simulation and investigation, a suitable combustion model has to be developed due to compatibility to the other c...

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Main Authors: Yu Ding, Congbiao Sui, Jincheng Li
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/8/12/2489
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spelling doaj-cf65062c3e2b44b1b2198baeb72bca602020-11-25T00:55:44ZengMDPI AGApplied Sciences2076-34172018-12-01812248910.3390/app8122489app8122489An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel EngineYu Ding0Congbiao Sui1Jincheng Li2College of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaCollege of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, ChinaThe marine diesel engine combustion process is discontinuous and unsteady, resulting in complicated simulations and applications. When the diesel engine is used in the system integration simulation and investigation, a suitable combustion model has to be developed due to compatibility to the other components in the system. The Seiliger process model uses finite combustion stages to perform the main engine combustion characteristics and using the cycle time scale instead of the crank angle shortens the simulation time. Obtaining the defined Seiliger parameters used to calculate the engine performance such as peak pressure, temperature and work is significant and fitting process has to be carried out to get the parameters based on experimental investigation. During the combustion fitting, an appropriate mathematics approach is selected for root finding of non-linear multi-variable functions since there is a large amount of used experimental data. A direct injection marine engine test bed is applied for the experimental investigation based on the combustion fitting approach. The results of each cylinder and four-cylinder averaged pressure signals are fitted with the Seiliger process that is shown separately to obtain the Seiliger parameters, and are varied together with these parameters and with engine operating conditions to provide the basis for engine combustion modeling.https://www.mdpi.com/2076-3417/8/12/2489seiliger process modelcombustion fittingmarine diesel enginepressure signalexperimental investigation
collection DOAJ
language English
format Article
sources DOAJ
author Yu Ding
Congbiao Sui
Jincheng Li
spellingShingle Yu Ding
Congbiao Sui
Jincheng Li
An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
Applied Sciences
seiliger process model
combustion fitting
marine diesel engine
pressure signal
experimental investigation
author_facet Yu Ding
Congbiao Sui
Jincheng Li
author_sort Yu Ding
title An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
title_short An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
title_full An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
title_fullStr An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
title_full_unstemmed An Experimental Investigation into Combustion Fitting in a Direct Injection Marine Diesel Engine
title_sort experimental investigation into combustion fitting in a direct injection marine diesel engine
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-12-01
description The marine diesel engine combustion process is discontinuous and unsteady, resulting in complicated simulations and applications. When the diesel engine is used in the system integration simulation and investigation, a suitable combustion model has to be developed due to compatibility to the other components in the system. The Seiliger process model uses finite combustion stages to perform the main engine combustion characteristics and using the cycle time scale instead of the crank angle shortens the simulation time. Obtaining the defined Seiliger parameters used to calculate the engine performance such as peak pressure, temperature and work is significant and fitting process has to be carried out to get the parameters based on experimental investigation. During the combustion fitting, an appropriate mathematics approach is selected for root finding of non-linear multi-variable functions since there is a large amount of used experimental data. A direct injection marine engine test bed is applied for the experimental investigation based on the combustion fitting approach. The results of each cylinder and four-cylinder averaged pressure signals are fitted with the Seiliger process that is shown separately to obtain the Seiliger parameters, and are varied together with these parameters and with engine operating conditions to provide the basis for engine combustion modeling.
topic seiliger process model
combustion fitting
marine diesel engine
pressure signal
experimental investigation
url https://www.mdpi.com/2076-3417/8/12/2489
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