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Study on the spray and combustion characteristics of water-emulsified diesel

机译:水乳化柴油的喷雾燃烧特性研究

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摘要

Emulsified fuel remains a potential solution to meet the increasingly stringent emission regulations for internal combustion engines due to its capability of simultaneously reducing NO_x and particular matter (PM). In this study, emulsified diesels with 10% and 20% water by volume were studied. The stability of the water emulsified diesel was first investigated in terms of the hydrophilic-lipophilic-balance (HLB) value. Based on the stability test, a suitable surfactant composition for the diesel/water interfacial condition was given and the separation tendency of the fuel with different water volumetric ratio was analyzed. The emulsions were later injected and combusted in a pre-burn type constant volume chamber, which is able to provide high ambient temperature and pressure to mimic real engine operation conditions. High speed imaging was used to capture the spray and combustion process under various conditions. Results show longer initial liquid penetration for emulsified diesel under low ambient temperatures. Longer ignition delay of emulsified diesel also provided more air/fuel mixing time, thus significantly lowering the soot luminosity. Although droplet micro-explosion has been intensively studied, its behavior in a burning spray is much less reported. This study in particular focused on micro-explosion in a burning spray. Broadband natural flame images were recorded with intentional overall over-exposure such that the central lift-off region could be illuminated by soot incandescence. Puffing and disruptive droplet combustion was consistently observed at high ambient temperature in the central lift-off region with emulsified diesel indicating the occurrence of micro-explosion in a burning spray flame. It is demonstrated that micro-explosion is not only able to enhance the secondary breakup, but also affect the primary breakup under certain conditions, which to the author's awareness has not been reported in any previous literature. Lower injection pressure and higher ambient temperature favor the occurrence of micro-explosion before primary breakup as a competition between the micro explosion delay time and the primary breakup time.
机译:乳化燃料由于具有同时还原NO_x和特殊物质(PM)的能力,因此仍然是满足日益严格的内燃机排放法规的潜在解决方案。在这项研究中,研究了乳化柴油中水的体积百分比为10%和20%。首先根据亲水亲脂平衡(HLB)值研究了水乳化柴油的稳定性。根据稳定性试验,给出了适合柴油/水界面条件的表面活性剂组成,并分析了不同水体积比的燃料的分离趋势。随后将乳液注入预燃烧型恒容室中并在其中燃烧,该室能够提供高的环境温度和压力,以模拟真实的发动机运行条件。高速成像用于捕获各种条件下的喷雾和燃烧过程。结果表明,在低环境温度下,乳化柴油的初始液体渗透时间更长。乳化柴油的更长的点火延迟也提供了更多的空气/燃料混合时间,从而显着降低了烟灰的光度。尽管已对液滴微爆炸进行了深入研究,但在燃烧喷雾中的行为却鲜有报道。该研究特别关注燃烧喷雾中的微爆炸。记录的宽带自然火焰图像带有故意的总体过度曝光,以便可以通过煤烟白炽灯照亮中央抬起区域。在中央提离区域中,在高环境温度下始终观察到膨化和破坏性液滴燃烧,其中乳化柴油表明在燃烧的喷射火焰中发生了微爆炸。事实证明,微爆炸不仅能够增强二次破裂,而且在一定条件下也会影响一次破裂,而作者的认识在以前的任何文献中都没有报道过。较低的注射压力和较高的环境温度有利于在一次破碎之前发生微爆炸,这是微爆炸延迟时间和一次破碎时间之间的竞争。

著录项

  • 来源
    《Fuel》 |2014年第1期|218-229|共12页
  • 作者单位

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

    Center of General Education, Cheng Shiu University, Kaohsiung 83347, Taiwan,Super Micro Mass Research and Technology Center, Cheng Shiu University, Kaohsiung 83347, Taiwan;

    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 and State Key Laboratory of Automotive Safety and 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

    Water emulsified fuel; Micro-explosion; Spray; Combustion;

    机译:水乳化燃料;微爆炸;喷雾;燃烧;

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