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Effect of retarded injection timing and EGR on performance, combustion and emission characteristics of a CRDi diesel engine fueled with WHDPE oil/diesel blends

机译:延迟注射时序和EGR对CRDI柴油机的性能,燃烧和排放特性的影响,用WHDPE油/柴油混合燃料

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In the present study, the effects of late injection timings and EGR rates on combustion, performance and emission characteristics were evaluated in a single cylinder diesel engine that utilizes oil extracted from waste HDPE which was blended with diesel at 30% by vol. (called as D70H30 blend). The experiments were conducted by delaying the injection timing viz., 23 degrees bTDC, 18 degrees bTDC, and 13 degrees bTDC at various bmep. Later the effects of increasing EGR rates viz., 0%, 10% and 20% were studied at late injection timings at peak load condition. The results reveal that the peak cylinder pressure decreases and combustion duration gets shorter with delayed injection timing. For the same SoI timing escalating the EGR rates reduced the mean gas temperature which is reflected in lower HRR peaks. The BTE of the engine deteriorated by 4.6% when the injection timing is retarded from 23 degrees bTDC to 13 degrees bTDC and 3.2% when the EGR rate was escalated from 0% to 20% at peak load. NOx emission significantly decreased by 80% with retarded injection timing and further decreased with the application of EGR. On the other hand, smoke emission aggravated by 22% with retarded injection timing and 24.5% with maximum EGR addition. The HC and CO emissions followed the same trend of smoke emission. It can be concluded that, utilizing 30% waste HDPE oil blend with minimal modification like retarding injection timing and low EGR rates was beneficial in effectively reducing NOx emission with a slight drop in performance.
机译:在本研究中,在单个气缸柴油发动机中评估了晚注射定时和EGR速率对燃烧,性能和排放特性的影响,该发动机利用废物HDPE中提取的油,其与柴油混合在30%的Vol。 (称为D70H30混合物)。通过延迟注射定时viz进行实验,在各种BMEP下延迟23摄氏度,18度BTDC和13摄氏度BTDC。后来在峰值负荷条件下,在晚期注射定时研究了0%,10%和20%的效果。结果表明,峰筒压力降低,燃烧持续时间越短,延迟注射正时。对于升级EGR速率的相同SOI定时,降低了在较低的HRR峰值中反映的平均气体温度。当喷射正时从23摄氏度延迟到13度BTDC时,发动机的BTE劣化4.6%,当EGR速率在峰值负载下从0%升高到20%时3.2%。 NOx排放随着延迟注射正时显着降低80%,随着EGR的应用进一步降低。另一方面,烟雾发射加剧了22%,延迟注射时间和24.5%,最大EGR加入。 HC和CO排放遵循相同的烟雾排放趋势。可以得出结论,利用30%的废物HDPE油混合物,具有延迟注射时序的最小修饰,低EGR率有利于有效地降低NOx排放,随着性能略有下降。

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