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Time-resolved spray, flame, soot quantitative measurement fueling n-butanol and soybean biodiesel in a constant volume chamber under various ambient temperatures

机译:时间分辨的喷雾,火焰,烟灰定量测量,在各种环境温度下的恒定容积室内为正丁醇和大豆生物柴油供油

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摘要

The spray, flame natural luminosity and soot quantitative measurement by fueling n-butanol and soybean biodiesel were investigated on a constant volume chamber using multi laser diagnostics with high temporal resolution of 15,037 frames per second. The ambient temperature ranged from 700 K to 1000 K was applied to mimic the diesel in-cylinder environment covering both conventional and low temperature combustion conditions. Results demonstrate that the transient liquid penetration lengths gradually decrease with the development of injection in a burning spray. The transient liquid penetration length of n-butanol is less affected by the downstream flame and is shorter than that of biodiesel under similar conditions. The two fuels also present drastically different flame dynamics and emission characteristics during the combustion process. n-Butanol displays higher normalized combustion pressure indicating higher potential thermal efficiency. The flame can be observed at reacting spray jet and near wall region for biodiesel, while the main n-butanol flame is concentrated on reacting spray jet. Compared to biodiesel, the flame luminosity of n-butanol is lower and its propagation and distribution is less sensitive to ambient temperatures. Ambient temperature is confirmed as the dominant impact on the soot emissions as the net soot increases for both tested fuels with elevated ambient temperature. No soot emission is detected for either n-butanol or biodiesel at low ambient temperature of 700 K. The soot starts to appear at both downstream of the jet and near wall regions from 800 K for biodiesel whereas the soot do not emerge until 900 K for n-butanol. The soot concentration of n-butanol is also much lower and restricted within the downstream of the spray jet even at high ambient temperatures. A particular interesting observation is that the normalized time integrated soot mass for B50D50 (50% n-butanol and 50% low-sulfur diesel fuel in volume) is 20-30% lower than that of neat biodiesel fuel at different ambient temperatures even though the oxygen content in both fuels is nearly the same. The higher soot formation for biodiesel is explained by the fact that fuel-bound oxygen is less effective in reducing soot production and that higher viscosity and boiling point results in more local high equivalence-ratio region in mixing process. In this regard, n-butanol is more effective in suppressing the soot formation and shows stronger soot reduction capability than that of biodiesel.
机译:通过使用多激光诊断技术在恒容室上研究了通过向正丁醇和大豆生物柴油供油进行的喷雾,火焰自然光度和烟灰定量测量,其每秒时间分辨率为15,037帧。施加700 K至1000 K的环境温度以模拟涵盖常规燃烧条件和低温燃烧条件的柴油缸内环境。结果表明,瞬态液体渗透长度随着燃烧喷雾中注入的发展而逐渐减小。在相似条件下,正丁醇的瞬态液体渗透长度受下游火焰的影响较小,并且比生物柴油短。在燃烧过程中,两种燃料还呈现出截然不同的火焰动力学和排放特性。正丁醇显示更高的归一化燃烧压力,表明更高的潜在热效率。可以在生物柴油的反应喷雾和壁附近区域观察到火焰,而正丁醇的主要火焰则集中在反应喷雾上。与生物柴油相比,正丁醇的火焰发光度较低,其传播和分布对环境温度的敏感性较低。随着环境温度的升高,两种测试燃料的净烟灰均增加,环境温度被确认为对烟尘排放的主要影响。在700 K的低环境温度下,未检测到正丁醇或生物柴油的烟灰排放。从800 K(对于生物柴油)开始,在喷射器下游和壁附近区域开始出现烟灰,而直到900 K时,烟灰才出现。正丁醇。即使在较高的环境温度下,正丁醇的烟灰浓度也要低得多,并限制在喷射流的下游。一个特别有趣的观察结果是,即使在不同的环境温度下,B50D50(体积分数为50%的正丁醇和50%的低硫柴油燃料)的标准化时间积分烟灰质量也比纯生物柴油燃料低20-30%。两种燃料中的氧含量几乎相同。对于生物柴油而言,较高的烟灰形成是由于以下事实:与燃料结合的氧气在减少烟灰产生方面不太有效,并且较高的粘度和沸点导致混合过程中出现更多的局部高当量比区域。在这方面,正丁醇比生物柴油更有效地抑制烟灰形成并且显示出更强的烟灰还原能力。

著录项

  • 来源
    《Fuel》 |2014年第1期|317-325|共9页
  • 作者单位

    State Key Laboratory of Engines, Tianjin University, Tianjin 300072, China;

    Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, IL 61801, USA;

    State Key Laboratory of Automobile Dynamic Simulation, Jilin University, Jilin 130012, China;

    State Key Laboratory of Engines, Tianjin University, Tianjin 300072, China;

    Engine Research Center, University of Wisconsin-Madison, Madison, WI 53705, USA;

    State Key Laboratory of Engines, Tianjin University, Tianjin 300072, China;

    Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, IL 61801, USA,Center for Combustion Energy, Tsinghua University, Beijing 100084, China;

  • 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

    n-Butanol; Soybean biodiesel; Constant volume chamber; Quantitative high time-resolved soot; measurement; Low temperature combustion;

    机译:正丁醇;大豆生物柴油;恒容室;定量高时间分辨烟灰;测量;低温燃烧;

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