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首页> 外文期刊>Heat and mass transfer >Experimental investigation on the availability, performance, combustion and emission distinctiveness of bael oil/ diesel/ diethyl ether blends powered in a variable compression ratio diesel engine
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Experimental investigation on the availability, performance, combustion and emission distinctiveness of bael oil/ diesel/ diethyl ether blends powered in a variable compression ratio diesel engine

机译:可变压缩比柴油机驱动的贝油/柴油/乙醚混合物的可用性,性能,燃烧和排放特性的实验研究

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摘要

The present work aims at experimental investigation on the combined effect of injection timing (IT) and injection pressure (IP) on the performance and emissions characteristics, and exergy analysis of a compression-ignition (CI) engine powered with bael oil blends. The tests were conducted using ternary blends of bael oil, diethyl ether (DEE) and neat diesel (D) at various engine loads at a constant engine speed (1500 rpm). With B2 (60%D + 30%bael oil+10%DEE) fuel, the brake thermal efficiency (BTE) of the engine is augmented by 3.5%, reduction of 4.7% of oxides of nitrogen (NO~(x)) emission has been observed at 100% engine load with 250 bar IP. B2 fuel exhibits 7% lower scale of HC emissions compared to that of diesel fuel at 100% engine load in 23_(°)bTDC IT. The increment in both cooling water and exhaust gas availabilities lead to increasing exergy efficiency with increasing load. The exergy efficiency of about 62.17% has been recorded by B2 fuel at an injection pressure of 230 IP bar with 100% load. On the whole, B2 fuel displays the best performance and combustion characteristics. It also exhibits better characteristics of emissions level in terms of lower HC, smoke opacity and NOx.
机译:目前的工作旨在对喷射正时(IT)和喷射压力(IP)对性能和排放特性的综合影响进行实验研究,以及对掺有贝尔油混合物的压燃(CI)发动机进行的火用分析。测试是在不同的发动机负载下以恒定的发动机转速(1500 rpm)使用贝氏油,乙醚(DEE)和纯柴油(D)的三元共混物进行的。使用B2(60%D + 30%贝尔油+ 10%DEE)燃料,发动机的制动热效率(BTE)提高3.5%,氮氧化物(NO〜(x))排放量减少4.7%。在250 bar IP的100%发动机负载下观察到。在23_(°)bTDC IT中,在100%发动机负荷下,B2燃料的HC排放量比柴油低7%。随着负载的增加,冷却水和废气利用率的增加都导致了火用效率的提高。 B2燃料在注入压力为230 IP bar,负载为100%的情况下,记录了大约62.17%的火用效率。总体而言,B2燃料表现出最佳的性能和燃烧特性。从较低的HC,烟的不透明度和NOx的角度来看,它还具有更好的排放水平特征。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第7期|2023-2044|共22页
  • 作者单位

    Department of Mechanical Engineering, Government College of Technology;

    Department of Mechanical Engineering, Government College of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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