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Performance characteristics of a direct injection diesel engine operating on methyl soyoil and methyl tallow esters.

机译:在甲基豆油和甲基牛脂酯上运行的直喷柴油机的性能特征。

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摘要

Effects of increased injection pressure and advanced injection timing on the performance, combustion characteristics, and exhaust emission properties of a direct injection, naturally aspirated diesel engine operating on methyl soyoil ester (IV = 125 to 135) and methyl tallow ester (IV = 47 to 53) were investigated. A 3-way factorial (2 x 2 x 3) experimental design was employed in this engine performance test. The whole experiment consisted of two levels of injection pressure (18.6 MPa and 24.1 MPa), two levels of injection timing (19 deg. BTDC and 14 deg. BTDC), and three different test fuels (Phillips No. 2 diesel, methyl soyoil ester and methyl tallow ester), The Phillips No. 2 diesel fuel was used as the reference (baseline) fuel in this test. The physical and chemical properties of the test fuels were determined in accordance to the standards established by the ASTN and AOCS.; Results of this investigation indicated lower exhaust emissions, despite a slight increase in the brake specific fuel consumption, with the engine operating on the ester fuels as compared to No. 2 diesel fuel at the manufacturer's injection pressure-timing setting (18.6 MPa-14 deg. BTDC). The overall performance and exhaust emission properties of the engine operating on the ester fuels at advanced injection timing were improved and better than when operating at increased injection pressure. Poor fuel combustion near the maximum operating power level was observed with the engine operating on ester fuels at increased injection pressure. Increased injection pressure resulted in a spray of smaller cone angle but greater penetration and better atomization. The occurrence of complete combustion was suppressed at the condition of high fuel flow due to the lack of oxygen within the spray envelope. Fuels in some locations within the spray envelope that were too rich to burn escaped as unburned hydrocarbons, or burned incompletely causing high carbon monoxide and smoke levels in the exhaust emissions.
机译:喷射压力增加和提前喷射正时对以甲基豆油酸酯(IV = 125至135)和牛脂甲基酯(IV = 47至400)运行的自然喷射柴油机直接喷射的性能,燃烧特性和废气排放特性的影响53)进行了调查。在此发动机性能测试中采用了三向析因(2 x 2 x 3)实验设计。整个实验包括两个级别的喷射压力(18.6 MPa和24.1 MPa),两个级别的喷射正时(19度BTDC和14度BTDC)以及三种不同的测试燃料(菲利普斯2号柴油,甲基豆油酯)和二甲基牛脂酯),在本次测试中,使用Phillips 2号柴油作为参考(基准)燃料。测试燃料的物理和化学性质是根据​​ASTN和AOCS建立的标准确定的;该调查的结果表明,尽管制动比油耗略有增加,但废气排放量仍较低,与酯化燃油相比,在制造商的喷射压力正时设置(18.6 MPa-14度)下,酯类燃油发动机运行时与酯类燃油相比运行BTDC)。与在升高的喷射压力下运行时相比,在提前喷射正时下使用酯燃料运行的发动机的整体性能和废气排放特性得到了改善和改善。当发动机在增加的喷射压力下使用酯燃料运行时,观察到接近最大运行功率水平的燃油燃烧不良。增加的注射压力导致喷雾的锥角更小,但穿透力更大,雾化效果更好。在高燃料流量的情况下,由于喷雾包壳中缺少氧气,完全燃烧的发生受到了抑制。喷雾外壳内某些位置的燃料太浓而无法燃烧,它们作为未燃烧的碳氢化合物逃逸,或燃烧不完全,导致废气中的一氧化碳和烟气含量高。

著录项

  • 作者

    Yahya, Azmi Bin.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 303 p.
  • 总页数 303
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;
  • 关键词

  • 入库时间 2022-08-17 11:50:57

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