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Auto-Ignition Characteristics Study of Gas-to-Liquid Fuel at High Pressures and Low Temperatures

机译:高压和低温下气液燃料的自燃特性研究

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Onset of auto-ignition of premixed gas-to-liquid (GTL)lair mixture has been determined at high pressures and low temperatures over a wide range of equivalence ratios. The GTLfuel used in this study was provided by Air Force Research Laboratory (AFRL), designated by Syntroleum S-8, which is derived from natural gas via the Fischer-Tropsch (F-T) process. A blend of 32% iso-octane, 25% n-decane, and 43% n-dodecane is employed as the surrogates of GTLfuel for chemical kinetics study. A spherical chamber, which can withstand high pressures up to 400 atm and can be heated up to 500 K, was used to collect pressure rise data, due to combustion, to determine the onset of auto-ignition. A gas chromatograph (GC) system working in conjunction with specialized heated lines was used to verify the filling process. A liquid supply manifold was used to allow the fuel to enter and evaporate in a temperature-controlled portion of the manifold using two cartridge heaters. An accurate high-temperature pressure transducer was used to measure the partial pressure of the vaporized fuel. Pressure rise due to combustion process was collected using a high-speed pressure sensor and was stored in a local desktop via a data acquisition system. Measurements for the onset of auto-ignition were done in the spherical chamber for different equivalence ratios of 0.8-1.2 and different initial pressures of 8.6, 10, and 12 atm at initial temperature of 450 K. Critical pressures and temperatures of GTLIair mixture at which auto-ignition takes place have been identified by detecting aggressive oscillation of pressure data during the spontaneous combustion process throughout the unburned gas mixture. To interpret the auto-ignition conditions effectively, several available chemical kinetics mechanisms were used in modeling auto-ignition of GTLIair mixtures. For low-temperature mixtures, it was shown that auto-ignition of GTL fuel is a strong function of unburned gas temperature, and propensity of auto-ignition was increased as initial temperature and pressure increased.
机译:已经在很大的当量比范围内的高压和低温下确定了预混合的气液(GTL)气井混合物自燃的开始。这项研究中使用的GTL燃料由空军研究实验室(AFRL)提供,由Syntroleum S-8指定,该燃料是通过费托(F-T)工艺从天然气中提取的。使用32%的异辛烷,25%的正癸烷和43%的正十二烷的混合物作为GTL燃料的代用品进行化学动力学研究。球形室可以承受高达400 atm的高压,并且可以加热到500 K,用于收集由于燃烧引起的压力升高数据,以确定自燃的开始时间。气相色谱(GC)系统与专门的加热线配合使用,以验证填充过程。使用液体供应歧管,使用两个插装式加热器,使燃料进入歧管的温度控制部分并在其中进行蒸发。使用精确的高温压力传感器测量汽化燃料的分压。使用高速压力传感器收集由于燃烧过程引起的压力升高,并通过数据采集系统将其存储在本地桌面中。在球形腔中,当初始温度为450 K时,在0.8-1.2的不同当量比和8.6、10和12 atm的不同初始压力下,进行了自燃开始的测量。GTLIair混合物的临界压力和温度在通过在整个未燃烧气体混合物的自燃过程中检测压力数据的剧烈波动,可以确定发生了自动点火。为了有效地解释自燃条件,在GTLIair混合物自燃建模中使用了几种可用的化学动力学机理。对于低温混合物,已显示GTL燃料的自动点火是未燃烧气体温度的强函数,并且自动点火的倾向随着初始温度和压力的增加而增加。

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