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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Investigation of a tripropylene-glycol monomethyl ether and diesel blend for soot-free combustion in an optical direct-injection diesel engine
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Investigation of a tripropylene-glycol monomethyl ether and diesel blend for soot-free combustion in an optical direct-injection diesel engine

机译:三丙二醇单甲醚和柴油共混物在光学直喷柴油机中无烟燃烧的研究

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摘要

Natural luminosity and chemiluminescence imaging diagnostics were employed to investigate if a 50/50 blend by volume of tripropylene-glycol monomethyl ether (TPGME) and ultra-low sulfur #2 diesel certification fuel (CF) could enable leaner-lifted flame combustion (LLFC), a non-sooting mode of mixing controlled combustion associated with equivalence ratios below approximately 2. The experiments were performed in a single-cylinder heavy-duty optical compression-ignition engine at three injection pressures and three dilution levels. Results indicate that TPGME addition effectively eliminated engine-out smoke emissions by curtailing soot production and/or increasing soot oxidation during and after the end of fuel injection. TPGME greatly reduced soot luminosity when compared with neat CF, but did not enable LLFC because the equivalence ratios at the lift-off length, phi(H), never reached the non-sooting limit and incandescence from hot soot within the combustion chambered remained visible. Concerning other engine out emissions, injection pressure influenced the effects of TPGME addition on NO. emissions. HC and CO emissions were higher compared to the baseline fuel, likely due to the lower net heat of combustion of TPGME and the need to limit fuel-injection duration for valid optical measurements. (C) 2016 Elsevier Ltd. All rights reserved.
机译:采用自然光度和化学发光成像诊断技术来研究按体积计50/50的三丙二醇单甲醚(TPGME)和超低硫#2柴油认证燃料(CF)的掺混物能否实现更稀薄的火焰燃烧(LLFC) ,这是当量比低于约2时的混合控制燃烧的非吸气模式。在单缸重型光学压缩点火发动机中,在三种喷射压力和三种稀释水平下进行了实验。结果表明,TPGME的添加可通过减少燃料喷射期间和之后的烟尘产生和/或增加烟尘氧化来有效消除发动机排出的烟尘。与纯CF相比,TPGME大大降低了烟尘的发光度,但由于在提升长度phi(H)上的当量比从未达到非吸油极限,并且燃烧室内热烟尘的白炽现象仍然可见,因此无法实现LLFC 。关于其他发动机熄火排放物,喷射压力影响了TPGME添加对NO的影响。排放。与基准燃料相比,HC和CO排放较高,这可能是由于TPGME的燃烧净热较低,并且需要限制燃料喷射持续时间以进行有效的光学测量。 (C)2016 Elsevier Ltd.保留所有权利。

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