The Effect of Operating Variables on Compression Temperature in a Compression Ignition Engine

The Effect of Operating Variables on Compression Temperature in a Compression Ignition Engine
Title The Effect of Operating Variables on Compression Temperature in a Compression Ignition Engine PDF eBook
Author Keh C. Tsao
Publisher
Pages 324
Release 1961
Genre Diesel motor
ISBN

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Effects of Operating Variables on Peak Pressure, Pressure Rise and Rate of Pressure Rise in Compression-ignition Engine

Effects of Operating Variables on Peak Pressure, Pressure Rise and Rate of Pressure Rise in Compression-ignition Engine
Title Effects of Operating Variables on Peak Pressure, Pressure Rise and Rate of Pressure Rise in Compression-ignition Engine PDF eBook
Author Maung San Tun
Publisher
Pages 232
Release 1962
Genre
ISBN

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Assessment of Fuel Economy Technologies for Light-Duty Vehicles

Assessment of Fuel Economy Technologies for Light-Duty Vehicles
Title Assessment of Fuel Economy Technologies for Light-Duty Vehicles PDF eBook
Author National Research Council
Publisher National Academies Press
Pages 373
Release 2011-06-03
Genre Science
ISBN 0309216389

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Various combinations of commercially available technologies could greatly reduce fuel consumption in passenger cars, sport-utility vehicles, minivans, and other light-duty vehicles without compromising vehicle performance or safety. Assessment of Technologies for Improving Light Duty Vehicle Fuel Economy estimates the potential fuel savings and costs to consumers of available technology combinations for three types of engines: spark-ignition gasoline, compression-ignition diesel, and hybrid. According to its estimates, adopting the full combination of improved technologies in medium and large cars and pickup trucks with spark-ignition engines could reduce fuel consumption by 29 percent at an additional cost of $2,200 to the consumer. Replacing spark-ignition engines with diesel engines and components would yield fuel savings of about 37 percent at an added cost of approximately $5,900 per vehicle, and replacing spark-ignition engines with hybrid engines and components would reduce fuel consumption by 43 percent at an increase of $6,000 per vehicle. The book focuses on fuel consumption-the amount of fuel consumed in a given driving distance-because energy savings are directly related to the amount of fuel used. In contrast, fuel economy measures how far a vehicle will travel with a gallon of fuel. Because fuel consumption data indicate money saved on fuel purchases and reductions in carbon dioxide emissions, the book finds that vehicle stickers should provide consumers with fuel consumption data in addition to fuel economy information.

A Correlation of the Effects of Compression Ratio and Inlet-air Temperature on the Knock Limits of Aviation Fuels in a CFR Engine - 2

A Correlation of the Effects of Compression Ratio and Inlet-air Temperature on the Knock Limits of Aviation Fuels in a CFR Engine - 2
Title A Correlation of the Effects of Compression Ratio and Inlet-air Temperature on the Knock Limits of Aviation Fuels in a CFR Engine - 2 PDF eBook
Author Henry E. Alquist
Publisher
Pages 48
Release 1946
Genre Airplanes
ISBN

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The knock-limited performance of nine fuels, comprising isolated members of four classes of hydrocarbons, paraffins, cycloparaffins, and olefins), is presented in the form of three-dimensional plots of fuel-air ratio, compression temperature, and compression-air density. The plots are based on a correlation that is shown to apply for these fuels over a wide range of compression that is shown to apply for these fuels over a wide range of compression ratios and inlet-air temperatures. The significance of the term "temperature sensitivity" is sketched, and it is emphasized that no generalized number such as octane number can be applied even to members of a given class of hydrocarbons when broad ranges of engine severity are encountered.

Calculations of the Performance of a Compression-ignition Engine-compressor Turbine Combination

Calculations of the Performance of a Compression-ignition Engine-compressor Turbine Combination
Title Calculations of the Performance of a Compression-ignition Engine-compressor Turbine Combination PDF eBook
Author J. C. Sanders
Publisher
Pages 28
Release 1945
Genre Airplanes
ISBN

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Small high-speed single-cylinder compression-ignition engines were tested to determine their performance characteristics under high supercharging. Calculations were made on the energy available in the exhaust gas of the compression-ignition engines. The maximum power at any given maximum cylinder pressure was obtained when the compression pressure was equal to the maximum cylinder pressure. Constant-pressure combustion was found possible at an engine speed of 2200 rpm. Exhaust pressures and temperatures were determined from an analysis of indicator cards. The analysis showed that, at rich mixtures with the exhaust back pressure equal to the inlet-air pressure, there is excess energy available for driving a turbine over that required for supercharging. The presence of this excess energy indicates that a highly supercharged compression-ignition engine might be desirable as a compressor and combustion chamber for a turbine.

Cost, Effectiveness, and Deployment of Fuel Economy Technologies for Light-Duty Vehicles

Cost, Effectiveness, and Deployment of Fuel Economy Technologies for Light-Duty Vehicles
Title Cost, Effectiveness, and Deployment of Fuel Economy Technologies for Light-Duty Vehicles PDF eBook
Author National Research Council
Publisher National Academies Press
Pages 812
Release 2015-09-28
Genre Science
ISBN 0309373913

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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.

Effect of Fuel-impingement-surface Temperature on Noise, Smoke, and Power of a Compression-ignition Engine

Effect of Fuel-impingement-surface Temperature on Noise, Smoke, and Power of a Compression-ignition Engine
Title Effect of Fuel-impingement-surface Temperature on Noise, Smoke, and Power of a Compression-ignition Engine PDF eBook
Author Lawrence Richard Daniel
Publisher
Pages 270
Release 1958
Genre Diesel fuels
ISBN

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