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The operational mixture limits in engines fueled with alternative gaseous fuels

机译:使用替代气态燃料的发动机的工作混合气限值

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The operation of engines whether spark ignition or compression ignition on a wide range of alternative gaseous fuels when using lean mixtures can offer in principle distinct advantages. These include better economy, reduced emissions, and improved engine operational life. However there are distinct operational mixture limits below which acceptable steady engine performance cannot be sustained. These mixture limits are usually described as the "lean operational limits, " or loosely as the ignition limits which are a function of various operational and design parameters for the engine and fuel used. Relatively simple approximate procedures are described for predicting the operational mixture limits for both spark ignition and dual fuel compression ignition engines when using a range of common gaseous fuels such as natural gas/methane, propane, hydrogen, and some of their mixtures. It is shown that good agreement between predicted and corresponding experimental values can be obtained for a range of operating conditions for both types of engines.
机译:原则上,使用稀薄混合气时,在多种替代气体燃料上进行火花点火或压缩点火的发动机运行均可提供明显的优势。其中包括更好的经济性,减少的排放量以及更长的发动机使用寿命。但是,存在明显的混合运行极限,在这些极限之下,无法维持可接受的稳定发动机性能。这些混合极限通常被描述为“稀薄运行极限”,或宽松地称为点火极限,其是所用发动机和所用燃料的各种运行和设计参数的函数。描述了一种相对简单的近似程序,用于在使用一系列常见气体燃料(例如天然气/甲烷,丙烷,氢气及其混合物)时,预测火花点火和双燃料压缩点火发动机的混合气限值。结果表明,对于两种类型的发动机,在一定范围的工作条件下都可以在预测值和相应的实验值之间取得良好的一致性。

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