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The performance of a spark-ignited, stratified-charge, two-stroke engine operating on a kerosene-based aviation fuel

机译:在基于煤油的航空燃料上运行的火花点燃,分层电荷,两冲程发动机的性能

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This study examines the feasibility of broadening the fuel capabilities of a direct-injected, two-stroke engine with stratified combustion. A three-cylinder, direct-injected, two-stroke engine was modified to operate on JP-5, a kerosene-based jet fuel that is heavier, more viscous, and less volatile than gasoline. Demonstration of engine operation with such a fuel after appropriate design modifications would significantly enhance the utilization of this engine in a variety of applications. Results have indicated that the performance characteristics of this engine with jet fuel are similar to that of gasoline with respect to torque and power output at low speeds and loads, but the engine's performance is hampered at the higher speeds and loads by the occurrence of knock. Although full load engine operation was never achieved with JP-5 without knock present, the severity of such a limitation was decreased or eliminated through much of its operating range with minor changes in engine design and operating variables.
机译:本研究探讨扩大与分层燃烧直喷,二冲程发动机的燃油性能的可行性。三缸,直喷,二冲程发动机被修改,以在JP-5,煤油基喷气燃料是更重,更粘性的,并且比汽油挥发性较低的操作。与经过适当的设计修改,例如燃料发动机示范运行将显著提升这台发动机的利用在各种应用中。结果表明,该发动机与喷气燃料的性能特征是类似于相对于转矩和功率输出在低转速和负荷的汽油,但发动机的性能受到阻碍在由爆震的发生的更高的速度和负载。尽管满负荷发动机运转用JP-5不存在爆震从未实现的,这种限制的严重程度与在发动机设计小的变化和操作变量的减小或消除通过其大部分工作范围内的。

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