CNG喷油时机对柴油机性能及排放的影响

Moch. Aziz Kurniawan, Dori Yuvenda, B. Sudarmanta
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引用次数: 6

摘要

以压缩天然气(CNG)为燃料的柴油双燃料发动机序贯燃烧过程复杂。柴油与CNG双燃料的问题是热效率降低,导致一氧化碳和未燃烧碳氢化合物排放高。正确设置燃烧空气、柴油先导燃料和CNG气体燃料可以改善性能和排放。实验采用常规柴油和双燃料模式,以CNG燃料在单缸、四冲程、恒转速(1500转/分)的金刚石DI 800型柴油机进行。在Vemstune软件ECU可编程的70CA、90CA、110CA、130CA和150CA ATDC的5种喷射定时(SOI) CNG启动工况下,确定了热效率和比油耗(SFC)等性能参数、CO、HC和烟雾密度等排放参数。结果表明,压缩天然气喷射正时延迟改善了发动机性能和柴油双燃料排放。在130CA ATDC下启动CNG喷射时间优化,热效率提高了14.35%,比油耗(SFC)降低了8.83%。此外,CO排放量减少21.35%,HC排放量减少17.93%,PM排放量减少34.98%。但是,双燃料柴油发动机的性能低于传统柴油发动机。关键词柴油双燃料,CNG启动喷射正时,发动机性能,排放
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects CNG Injection Timing on Engine Performance and Emissions Of A Diesel Dual Fuel Engine
 Sequential combustion process on diesel dual fuel engine with compressed natural gas (CNG) fuel was complex. The problems of diesel dual fuel with CNG gas are reduced thermal efficiency and resulting in high carbon monoxide (CO) and unburned hydrocarbon (HC) emissions. The right setting between combustion air, diesel pilot fuel, and CNG gas fuel can improvement the performance and emissions. The experiment was conducted with diesel fuel conventional and dual fuel mode with CNG fuel in a single cylinder, four strokes, constant speed (1500 rpm) diesel engine type diamond DI 800. Performance parameters such as thermal efficiency and specific fuel consumption (SFC), emissions such as CO, HC, and smoke density are determined at five starts of injection timing (SOI) CNG of 70CA, 90CA, 110CA, 130CA, dan 150CA ATDC with ECU programmable of Vemstune software. The results indicated that retarded CNG injection timings improved engine performance and emissions diesel dual fuel. Start of CNG injection timing optimization at 130CA ATDC with increased thermal efficiency 14,35% and decreased specific fuel consumption (SFC) 8,83 % . in addition, it decreased CO emissions 21,35%, HC emissions 17,93%, and PM emissions lower 34,98%. However, engine performance diesel dual fuel lower than a conventional diesel engine. KeywordsDiesel Dual Fuel, the Start of CNG Injection Timing, Engine Performance, Emissions.
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