Characterization Of The Scavenging Efficiency In A Direct Injection Two Stroke Engine
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Two-Stroke Cycle Engine
Author | : JohnB. Heywood |
Publisher | : Routledge |
Total Pages | : 425 |
Release | : 2017-11-01 |
Genre | : Technology & Engineering |
ISBN | : 1351406450 |
This book addresses the two-stroke cycle internal combustion engine, used in compact, lightweight form in everything from motorcycles to chainsaws to outboard motors, and in large sizes for marine propulsion and power generation. It first provides an overview of the principles, characteristics, applications, and history of the two-stroke cycle engine, followed by descriptions and evaluations of various types of models that have been developed to predict aspects of two-stroke engine operation.
Scavenging Measurements in a Direct-injection Two-stroke Engine
Author | : Hickory Zachariah Foudray |
Publisher | : |
Total Pages | : 246 |
Release | : 2002 |
Genre | : Internal Combustion Engines |
ISBN | : |
Cost, Effectiveness, and Deployment of Fuel Economy Technologies for Light-Duty Vehicles
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 812 |
Release | : 2015-09-28 |
Genre | : Science |
ISBN | : 0309373913 |
The light-duty vehicle fleet is expected to undergo substantial technological changes over the next several decades. New powertrain designs, alternative fuels, advanced materials and significant changes to the vehicle body are being driven by increasingly stringent fuel economy and greenhouse gas emission standards. By the end of the next decade, cars and light-duty trucks will be more fuel efficient, weigh less, emit less air pollutants, have more safety features, and will be more expensive to purchase relative to current vehicles. Though the gasoline-powered spark ignition engine will continue to be the dominant powertrain configuration even through 2030, such vehicles will be equipped with advanced technologies, materials, electronics and controls, and aerodynamics. And by 2030, the deployment of alternative methods to propel and fuel vehicles and alternative modes of transportation, including autonomous vehicles, will be well underway. What are these new technologies - how will they work, and will some technologies be more effective than others? Written to inform The United States Department of Transportation's National Highway Traffic Safety Administration (NHTSA) and Environmental Protection Agency (EPA) Corporate Average Fuel Economy (CAFE) and greenhouse gas (GHG) emission standards, this new report from the National Research Council is a technical evaluation of costs, benefits, and implementation issues of fuel reduction technologies for next-generation light-duty vehicles. Cost, Effectiveness, and Deployment of Fuel Economy Technologies for Light-Duty Vehicles estimates the cost, potential efficiency improvements, and barriers to commercial deployment of technologies that might be employed from 2020 to 2030. This report describes these promising technologies and makes recommendations for their inclusion on the list of technologies applicable for the 2017-2025 CAFE standards.
Emissions from Two-stroke Engines
Author | : Marco P. Nuti |
Publisher | : SAE International |
Total Pages | : 310 |
Release | : 1998 |
Genre | : Technology & Engineering |
ISBN | : |
""In the design of new CI engines, it is of paramount importance to reduce the pollutants and fuel consumption,"" writes author Marco Nuti. In this, the first book devoted entirely to exhaust emissions from two-stroke engines, Nuti examines the technical design issues that will determine how long the two-stroke engine survives into the twenty-first century. Dr. Nuti, director of Technical Innovation at Piaggio, thoroughly explores pollutant formation and control from unburned hydrocarbon emissions, carbon monoxide emissions, catalytic aftertreatment, and secondary air addition.
Internal Flow
Author | : E. M. Greitzer |
Publisher | : Cambridge University Press |
Total Pages | : 739 |
Release | : 2007-02-26 |
Genre | : Technology & Engineering |
ISBN | : 1139451111 |
This book describes the analysis and behaviour of internal flows encountered in propulsion systems, fluid machinery (compressors, turbines and pumps) and ducts (diffusers, nozzles and combustion chambers). The focus is on phenomena that are important in setting the performance of a broad range of fluid devices. The authors show that even for complex processes one can learn a great deal about the behaviour of such devices from a clear understanding and rigorous use of basic principles. Throughout the book they illustrate theoretical principles by reference to technological applications. The strong emphasis on fundamentals, however, means that the ideas presented can be applied beyond internal flow to other types of fluid motion. The book equips students and practising engineers with a range of new analytical tools. These tools offer enhanced interpretation and application of both experimental measurements and the computational procedures that characterize modern fluids engineering.
Direct Injection Systems
Author | : Cornel C Stan |
Publisher | : SAE International |
Total Pages | : 126 |
Release | : 2002-11-05 |
Genre | : Technology & Engineering |
ISBN | : 0768030498 |
Direct Injection Systems: The Next Decade in Engine Technology explores potentials that have been recognized and successfully applied, including fuel direct injection, fully variable valve control, downsizing, operation within hybrid scenarios, and use of alternative fuels.
Emissions from Two-Stroke Engines
Author | : Marco Nuti |
Publisher | : SAE International |
Total Pages | : 300 |
Release | : 1998-10-01 |
Genre | : Technology & Engineering |
ISBN | : 0768027853 |
"In the design of new CI engines, it is of paramount importance to reduce the pollutants and fuel consumption," writes author Marco Nuti. In this, the first book devoted entirely to exhaust emissions from two-stroke engines, Nuti examines the technical design issues that will determine how long the two-stroke engine survives into the twenty-first century. Dr. Nuti, director of Technical Innovation at Piaggio, thoroughly explores pollutant formation and control from unburned hydrocarbon emissions, carbon monoxide emissions, catalytic aftertreatment, and secondary air addition.