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Spark Ignited Direct Injection Natural Gas Combustion in a Heavy Duty Single Cylinder Test Engine - Nozzle Included Angle Effects

机译:火花点燃直喷天然气燃烧在重型单缸试验机中 - 喷嘴包括角度效果

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The increased availability of natural gas (NG) in the United States (US) and its relatively low cost versus diesel fuel has increased interest in the conversion of medium duty (MD) and heavy duty (HD) engines to NG fueled combustion systems. The aim for development for these NG engines is to realize fuel cost savings and increase operating range while reduce harmful emissions and maintaining durability. Traditionally, port-fuel injection (PFI) or premixed NG spark-ignited (SI) combustion systems have been used for light duty LD, and MD engines with widespread use in the US and Europe [1]. However, this technology exhibits poor thermal efficiency and is load limited due to knock phenomenon that has prohibited its use for HD engines. Spark Ignited Direct Injection (SIDI) can be used to create a partially stratified combustion (PSC) mixture of NG and air during the compression stroke. PSC promises to deliver improved thermal efficiency by avoiding excessive premixing and extending the lean limits which helps to extend the knock and load limit. In this work, a CAT 3401 SCOTE single cylinder engine with 14:1 compression ratio (CR) was used to investigate SIDI NG combustion using an integrated spark injector-igniter. The injector nozzle included angle (NIA) was varied from 80 degrees to 150 degrees to determine the impact on fuel consumption, combustion stability, phasing, and emissions. Start of injection (SOI) and spark ignition (SPK) timings were determined from previous work for a near stoichiometric operation (AFR 16 to 20:1). The nozzle included angle of 100 degrees resulted in up to 43% indicated thermal efficiency across a part-load operating range 3 to 11 bar and provided the best trade-off between fuel economy, emissions and combustion stability. This work demonstrated the optimization potential of a 100 degree NIA for high thermal efficiency of a heavy duty engine over the low load operating conditions.
机译:在美国(美国)的天然气(NG)的可用性增加及其相对较低的成本与柴油燃料对中等占(MD)和重型(HD)发动机转换为NG燃料燃烧系统的兴趣增加。这些NG发动机的发展的目的是实现燃料成本节约和增加工作范围,同时减少有害排放和保持耐用性。传统上,端口 - 燃料喷射(PFI)或预混的NG火花点火(SI)燃烧系统已被用于轻型LD,以及美国和欧洲广泛使用的MD发动机[1]。然而,该技术具有较差的热效率,并且由于禁止使用HD发动机的爆震现象,负载有限。火花被点燃的直喷(SIDI)可用于在压缩冲程期间产生部分分层的燃烧(PSC)和空气的燃烧(PSC)混合物。 PSC承诺通过避免过度预混合并延长贫局来提供改善的热效率,这有助于延长爆震和负荷限制。在这项工作中,使用具有14:1压缩比(Cr)的Cat 3401 Scote单缸发动机使用集成的火花喷射器 - 点火器来研究Sidi Ng燃烧。将喷射器喷嘴包括角度(Nia)从80度到150度变化,以确定对燃料消耗,燃烧稳定性,阶段和排放的影响。注射的开始(SOI)和火花点火(SPK)定时由以前的工作确定近的化学计量操作(AFR 16至20:1)。喷嘴包括100度的角度导致额负荷工作范围3至11巴之间的高达43%的热效率,并提供了燃料经济性,排放和燃烧稳定性之间的最佳权衡。这项工作证明了在低负荷操作条件下为100度NIA的优化电位,用于高负荷运行条件的重型发动机的高热效率。

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