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Experimental Studies on Burning Characteristics of Methanol, Diesel, and Sunflower Biodiesel Fuels

机译:甲醇,柴油和向日葵生物柴油燃料燃烧特性的实验研究

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摘要

The combustion of liquid fuel droplets provides fundamental information that is relevant to spray combustion. A porous sphere setup has been used to investigate non-premixed combustion experimentally with three different liquid fuels, viz. methanol, diesel, and biodiesel (sunflower oil methyl ester). Experiments have been performed at atmospheric pressure with spheres of different diameters and over a range of free stream air velocities, resulting in different types of flames from envelope flame to wake flame. The measured mass burning rates are compared with the predictions from a theoretical model developed for envelope flames considering mixed convective transport. The model predictions are first validated for methanol and subsequently the model is applied for the other two fuels to evaluate their transfer numbers from the experimental mass burning rate data. A power law variation of nondimensional mass burning rate with effective Reynolds number (with contributions of forced and natural convection) is proposed for each of the fuels irrespective of sphere size and air velocity. The transition air velocities (from envelope to wake flames) for different fuels and the change in mass burning rate on transition are measured.
机译:液体燃料小滴的燃烧提供了与喷雾燃烧有关的基本信息。多孔球体装置已用于研究三种不同液体燃料的非预混燃烧实验。甲醇,柴油和生物柴油(葵花油甲酯)。已经在大气压力下用不同直径的球体和一系列自由气流的速度进行了实验,导致了从包络火焰到尾流火焰的不同类型的火焰。将测得的质量燃烧速率与考虑混合对流传输的包络火焰理论模型的预测结果进行比较。首先针对甲醇验证模型预测,然后将模型应用于其他两种燃料,以根据实验质量燃烧速率数据评估其传递数。提出了每种燃料的无量纲质量燃烧率随有效雷诺数的幂定律变化(有强制对流和自然对流的影响),而与球体大小和空气速度无关。测量了不同燃料的过渡空气速度(从包络线到尾焰)以及过渡时质量燃烧率的变化。

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