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Titlebook: Automotive Engine Alternatives; Robert L. Evans Book 1987 Springer Science+Business Media New York 1987 Stirling engine.combustion.develop

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期刊全稱Automotive Engine Alternatives
影響因子2023Robert L. Evans
視頻videohttp://file.papertrans.cn/167/166656/166656.mp4
圖書封面Titlebook: Automotive Engine Alternatives;  Robert L. Evans Book 1987 Springer Science+Business Media New York 1987 Stirling engine.combustion.develop
影響因子This book contains the proceedings of the International Symposium on Alternative and Advanced Automotive Engines, held in Vancouver, B.C., on August 11 and 12, 1986. The symposium was sponsored by EXPO 86 and The University of British Columbia, and was part of the specialized periods program of EXPO 86, the 1986 world‘s fair held in Vancouver. Some 80 attendees were drawn from 11 countries, representing the academic, auto- motive and large engine communities. The purpose of the symposium was to provide a critical review of the major alternatives to the internal combustion engine. The scope of the symposium was limited to consideration of combustion engines, so that electric power, for example, was not considered. This was not a reflec- tion on the possible contribution which electric propulsion may make in the future, but rather an attempt to focus the proceedings more sharply than if all possible propulsion systems had been considered. In this way all of the contributors were able to participate in the sometimes lively discussion sessions following the presentation of each paper.
Pindex Book 1987
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Automotive Applications of Stirling Engines,n to work and rejecting the remainder as waste heat at low temperature..They operate without noise, have low exhaust emissions, can operate on any liquid or solid fuel, have low cycle torque variation, a flat part-load characteristic and can be made as efficient and compact as internal combustion en
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Low Heat Rejection Diesel Engines,ent in turbocharged engines, or 9 to 15 percent with turbocompounding. Power is reduced by up to 25 percent in naturally-aspirated engines, but this loss can be recovered by pressure boosting. NO. emissions data vary widely, but it is concluded that they will be increased by an average value of 15 p
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Turbo-Compound Diesel Engines,rime mover at our disposal. Furthermore, unlike the gas turbine which is in difficulty at the lower end of the power spectrum because of inherent aerodynamic losses, and the Stirling engine which would seem to suffer from a severe weight disadvantage, the Diesel engine successfully covers the full a
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