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An Investigation Into Turbocharging a High-speed Two-cycle Diesel Engine

An Investigation Into Turbocharging a High-speed Two-cycle Diesel Engine PDF Author: James Weston Massey
Publisher:
ISBN:
Category :
Languages : en
Pages : 158

Book Description


An Investigation Into Turbocharging a High-speed Two-cycle Diesel Engine

An Investigation Into Turbocharging a High-speed Two-cycle Diesel Engine PDF Author: James Weston Massey
Publisher:
ISBN:
Category :
Languages : en
Pages : 158

Book Description


An Experimental Investigation Into Two-stage Turbocharging of a Four-stroke Diesel Engine

An Experimental Investigation Into Two-stage Turbocharging of a Four-stroke Diesel Engine PDF Author: F. V. Svetnicka
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Experimental and Analytical Investigation Into the Two Stage Turbocharging Systems for Diesel Engines

Experimental and Analytical Investigation Into the Two Stage Turbocharging Systems for Diesel Engines PDF Author: Qingning Zhang
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Diesel Engine Transient Operation

Diesel Engine Transient Operation PDF Author: Constantine D. Rakopoulos
Publisher: Springer Science & Business Media
ISBN: 1848823754
Category : Technology & Engineering
Languages : en
Pages : 408

Book Description
Traditionally, the study of internal combustion engines operation has focused on the steady-state performance. However, the daily driving schedule of automotive and truck engines is inherently related to unsteady conditions. In fact, only a very small portion of a vehicle’s operating pattern is true steady-state, e. g. , when cruising on a motorway. Moreover, the most critical conditions encountered by industrial or marine engines are met during transients too. Unfortunately, the transient operation of turbocharged diesel engines has been associated with slow acceleration rate, hence poor driveability, and overshoot in particulate, gaseous and noise emissions. Despite the relatively large number of published papers, this very important subject has been treated in the past scarcely and only segmentally as regards reference books. Merely two chapters, one in the book Turbocharging the Internal Combustion Engine by N. Watson and M. S. Janota (McMillan Press, 1982) and another one written by D. E. Winterbone in the book The Thermodynamics and Gas Dynamics of Internal Combustion Engines, Vol. II edited by J. H. Horlock and D. E. Winterbone (Clarendon Press, 1986) are dedicated to transient operation. Both books, now out of print, were published a long time ago. Then, it seems reasonable to try to expand on these pioneering works, taking into account the recent technological advances and particularly the global concern about environmental pollution, which has intensified the research on transient (diesel) engine operation, typically through the Transient Cycles certification of new vehicles.

Technical Data Digest

Technical Data Digest PDF Author:
Publisher:
ISBN:
Category : Aeronautics, Military
Languages : en
Pages : 804

Book Description


Applied Mechanics Reviews

Applied Mechanics Reviews PDF Author:
Publisher:
ISBN:
Category : Mechanics, Applied
Languages : en
Pages : 796

Book Description


Confidential Documents

Confidential Documents PDF Author: United States. Army Air Forces
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 800

Book Description


An Investigation Into the Turbocharging of an Automotive Diesel Engine

An Investigation Into the Turbocharging of an Automotive Diesel Engine PDF Author: A. E. Dodd
Publisher:
ISBN:
Category :
Languages : en
Pages : 24

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.

Two-stage Turbocharging of Diesel Engines

Two-stage Turbocharging of Diesel Engines PDF Author: R. S. Benson
Publisher:
ISBN:
Category : Diesel motor
Languages : en
Pages : 18

Book Description