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Modeling the Influence of Fuel Injection Parameters on Diesel Engine Emissions

Modeling the Influence of Fuel Injection Parameters on Diesel Engine Emissions PDF Author: D. K. Mather
Publisher:
ISBN:
Category : Diesel motor
Languages : en
Pages : 11

Book Description


Modeling the Influence of Fuel Injection Parameters on Diesel Engine Emissions

Modeling the Influence of Fuel Injection Parameters on Diesel Engine Emissions PDF Author: D. K. Mather
Publisher:
ISBN:
Category : Diesel motor
Languages : en
Pages : 11

Book Description


Modeling the Effects of Fuel Injection on Heavy-duty Diesel Engine Performance and Emissions

Modeling the Effects of Fuel Injection on Heavy-duty Diesel Engine Performance and Emissions PDF Author: David D.. Wickman
Publisher:
ISBN:
Category :
Languages : en
Pages : 390

Book Description


Modelling Diesel Combustion

Modelling Diesel Combustion PDF Author: P. A. Lakshminarayanan
Publisher: Springer Science & Business Media
ISBN: 904813885X
Category : Technology & Engineering
Languages : en
Pages : 313

Book Description
Phenomenology of Diesel Combustion and Modeling Diesel is the most efficient combustion engine today and it plays an important role in transport of goods and passengers on land and on high seas. The emissions must be controlled as stipulated by the society without sacrificing the legendary fuel economy of the diesel engines. These important drivers caused innovations in diesel engineering like re-entrant combustion chambers in the piston, lower swirl support and high pressure injection, in turn reducing the ignition delay and hence the nitric oxides. The limits on emissions are being continually reduced. The- fore, the required accuracy of the models to predict the emissions and efficiency of the engines is high. The phenomenological combustion models based on physical and chemical description of the processes in the engine are practical to describe diesel engine combustion and to carry out parametric studies. This is because the injection process, which can be relatively well predicted, has the dominant effect on mixture formation and subsequent course of combustion. The need for improving these models by incorporating new developments in engine designs is explained in Chapter 2. With “model based control programs” used in the Electronic Control Units of the engines, phenomenological models are assuming more importance now because the detailed CFD based models are too slow to be handled by the Electronic Control Units. Experimental work is necessary to develop the basic understanding of the pr- esses.

Modeling the Effects of Fuel Injection Characteristics on Diesel Combustion and Emissions

Modeling the Effects of Fuel Injection Characteristics on Diesel Combustion and Emissions PDF Author: Mark Andrew Patterson
Publisher:
ISBN:
Category :
Languages : en
Pages : 474

Book Description


Modeling the Effects of Auxiliary Gas Injection and Fuel Injection Rate Shape on Diesel Engine Combustion and Emissions

Modeling the Effects of Auxiliary Gas Injection and Fuel Injection Rate Shape on Diesel Engine Combustion and Emissions PDF Author: Daniel K. Mather
Publisher:
ISBN:
Category :
Languages : en
Pages : 538

Book Description


Engine Modeling and Simulation

Engine Modeling and Simulation PDF Author: Avinash Kumar Agarwal
Publisher: Springer Nature
ISBN: 9811686181
Category : Technology & Engineering
Languages : en
Pages : 368

Book Description
This book focuses on the simulation and modeling of internal combustion engines. The contents include various aspects of diesel and gasoline engine modeling and simulation such as spray, combustion, ignition, in-cylinder phenomena, emissions, exhaust heat recovery. It also explored engine models and analysis of cylinder bore piston stresses and temperature effects. This book includes recent literature and focuses on current modeling and simulation trends for internal combustion engines. Readers will gain knowledge about engine process simulation and modeling, helpful for the development of efficient and emission-free engines. A few chapters highlight the review of state-of-the-art models for spray, combustion, and emissions, focusing on the theory, models, and their applications from an engine point of view. This volume would be of interest to professionals, post-graduate students involved in alternative fuels, IC engines, engine modeling and simulation, and environmental research.

Modeling the Effects of Fuel Injection Characteristics on Diesel Engine Soot and NOx Emissions

Modeling the Effects of Fuel Injection Characteristics on Diesel Engine Soot and NOx Emissions PDF Author: M. A. Patterson
Publisher:
ISBN:
Category : Automobiles
Languages : en
Pages : 18

Book Description


Experiments and Modeling of Fuel Composition Effects on Diesel Engine Performance and Emissions

Experiments and Modeling of Fuel Composition Effects on Diesel Engine Performance and Emissions PDF Author: Cathy Youngmi Choi
Publisher:
ISBN:
Category :
Languages : en
Pages : 610

Book Description


Diesel Engine Modeling

Diesel Engine Modeling PDF Author: Society of Automotive Engineers
Publisher: SAE International
ISBN: 9780768003826
Category : Diesel motor
Languages : en
Pages : 0

Book Description


Modeling and Control of EGR on Marine Two-Stroke Diesel Engines

Modeling and Control of EGR on Marine Two-Stroke Diesel Engines PDF Author: Xavier Llamas
Publisher: Linköping University Electronic Press
ISBN: 9176853683
Category :
Languages : en
Pages : 48

Book Description
The international marine shipping industry is responsible for the transport of around 90% of the total world trade. Low-speed two-stroke diesel engines usually propel the largest trading ships. This engine type choice is mainly motivated by its high fuel efficiency and the capacity to burn cheap low-quality fuels. To reduce the marine freight impact on the environment, the International Maritime Organization (IMO) has introduced stricter limits on the engine pollutant emissions. One of these new restrictions, named Tier III, sets the maximum NOx emissions permitted. New emission reduction technologies have to be developed to fulfill the Tier III limits on two-stroke engines since adjusting the engine combustion alone is not sufficient. There are several promising technologies to achieve the required NOx reductions, Exhaust Gas Recirculation (EGR) is one of them. For automotive applications, EGR is a mature technology, and many of the research findings can be used directly in marine applications. However, there are some differences in marine two-stroke engines, which require further development to apply and control EGR. The number of available engines for testing EGR controllers on ships and test beds is low due to the recent introduction of EGR. Hence, engine simulation models are a good alternative for developing controllers, and many different engine loading scenarios can be simulated without the high costs of running real engine tests. The primary focus of this thesis is the development and validation of models for two-stroke marine engines with EGR. The modeling follows a Mean Value Engine Model (MVEM) approach, which has a low computational complexity and permits faster than real-time simulations suitable for controller testing. A parameterization process that deals with the low measurement data availability, compared to the available data on automotive engines, is also investigated and described. As a result, the proposed model is parameterized to two different two-stroke engines showing a good agreement with the measurements in both stationary and dynamic conditions. Several engine components have been developed. One of these is a new analytic in-cylinder pressure model that captures the influence of the injection and exhaust valve timings without increasing the simulation time. A new compressor model that can extrapolate to low speeds and pressure ratios in a physically sound way is also described. This compressor model is a requirement to be able to simulate low engine loads. Moreover, a novel parameterization algorithm is shown to handle well the model nonlinearities and to obtain a good model agreement with a large number of tested compressor maps. Furthermore, the engine model is complemented with dynamic models for ship and propeller to be able to simulate transient sailing scenarios, where good EGR controller performance is crucial. The model is used to identify the low load area as the most challenging for the controller performance, due to the slower engine air path dynamics. Further low load simulations indicate that sensor bias can be problematic and lead to an undesired black smoke formation, while errors in the parameters of the controller flow estimators are not as critical. This result is valuable because for a newly built engine a proper sensor setup is more straightforward to verify than to get the right parameters for the flow estimators.