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首页> 外文期刊>Combustion Science and Technology >Laminar Burning Velocities of Fuels for Advanced Combustion Engines (FACE) Gasoline and Gasoline Surrogates with and without Ethanol Blending Associated with Octane Rating
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Laminar Burning Velocities of Fuels for Advanced Combustion Engines (FACE) Gasoline and Gasoline Surrogates with and without Ethanol Blending Associated with Octane Rating

机译:带有和不带有乙醇混合的辛烷值等级的高级燃烧发动机(FACE)汽油和汽油代用品的燃料的层流燃烧速度

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摘要

Laminar burning velocities of fuels for advanced combustion engines (FACE) C gasoline and of several blends of surrogate toluene reference fuels (TRFs) (n-heptane, iso-octane, and toluene mixtures) of the same research octane number are presented. Effects of ethanol addition on laminar flame speed of FACE-C and its surrogate are addressed. Measurements were conducted using a constant volume spherical combustion vessel in the constant pressure, stable flame regime at an initial temperature of 358 K and initial pressures up to 0.6 MPa with the equivalence ratios ranging from 0.8 to 1.6. Comparable values in the laminar burning velocities were measured for the FACE-C gasoline and the proposed surrogate fuel (17.60% n-heptane + 77.40% iso-octane + 5% toluene) over the range of experimental conditions. Sensitivity of flame propagation to total stretch rate effects and thermo-diffusive instability was quantified by determining Markstein length. Two percentages of an oxygenated fuel of ethanol as an additive, namely, 60 vol% and 85 vol% were investigated. The addition of ethanol to FACE-C and its surrogate TRF-1 (17.60% n-heptane + 77.40% iso-octane + 5% toluene) resulted in a relatively similar increase in the laminar burning velocities. The high-pressure measured values of Markstein length for the studied fuels blended with ethanol showed minimal influence of ethanol addition on the flame's response to stretch rate and thermodiffusive instability.
机译:给出了具有相同研究辛烷值的高级内燃机(FACE)C汽油和几种甲苯替代参考燃料(TRF)(正庚烷,异辛烷和甲苯混合物)的混合物的层流燃烧速度。解决了乙醇添加对FACE-C层流火焰速度及其替代物的影响。使用恒定体积的球形燃烧容器,在恒定压力,稳定的火焰状态下,于358 K的初始温度和高达0.6 MPa的初始压力下进行测量,当量比为0.8至1.6。在实验条件范围内,测量了FACE-C汽油和拟议的替代燃料(17.60%正庚烷+ 77.40%异辛烷+ 5%甲苯)的层流燃烧速度的可比值。通过确定马克斯坦长度来量化火焰传播对总拉伸速率效应和热扩散不稳定性的敏感性。研究了乙醇作为添加剂的含氧燃料的百分之二,即60%(体积)和85%(体积)。向FACE-C及其替代物TRF-1(17.60%正庚烷+ 77.40%异辛烷+ 5%甲苯)中添加乙醇会导致层流燃烧速度的增加相对相似。所研究的与乙醇混合的燃料的马克斯坦长度的高压测量值显示,乙醇添加对火焰对拉伸速率和热扩散不稳定性的响应影响最小。

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