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Analysis of quasi-steady combustion of Jatropha bio-diesel

机译:麻疯树生物柴油准稳态燃烧分析

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Quasi-steady gas-phase combustion of Jatropha bio-diesel in a mixed convective air environment is studied bothrnexperimentally and numerically. Porous sphere experiments have been conducted to measure the mass burning rates and observe the flame shapes of spherical particles fed with bio-diesel. A numerical model has been developed to simulate the experiments. The Jatropha bio-diesel has been considered as a single component fuel (C_(18)H_(34)O_2). Transient governing equations in the gas-phase alone are solved through the finite volume approach employing non-orthogonal control volumes in a semi-collocated mesh. Thermo-physical properties are evaluated based on the local temperature and the species concentrations. A single step global reaction with five species (C_(18)H_(34)O_2, O_2, N_2, CO_2 and H_2O) is employed to model the finite rate kinetics. Results have been obtained for a range of mixed convective flow conditions. Comparisons of the results with those of diesel combustion have been made in few cases. It is observed that the burning rate of bio-diesel is less by about 11% than those for diesel for the same air velocity and sphere size.
机译:对麻风树生物柴油在混合对流空气环境中的准稳态气相燃烧进行了实验和数值研究。已经进行了多孔球实验以测量质量燃烧速率并观察用生物柴油进料的球形颗粒的火焰形状。已经开发了数值模型来模拟实验。麻风树生物柴油已被视为单组分燃料(C_(18)H_(34)O_2)。仅通过气相的瞬态控制方程是通过有限体积方法求解的,该方法在半共置网格中采用了非正交控制体积。根据局部温度和物质浓度评估热物理性质。采用五种物质(C_(18)H_(34)O_2,O_2,N_2,CO_2和H_2O)的单步全局反应来模拟有限速率动力学。已获得一系列混合对流流动条件的结果。在少数情况下,已将结果与柴油机燃烧的结果进行了比较。可以看出,在相同的风速和球体尺寸下,生物柴油的燃烧率比柴油的燃烧率低约11%。

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