水乳状燃料稳定性实验研究

Gurjap Singh, E. Lopes, Nicholas Hentges, A. Ratner
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引用次数: 1

摘要

水乳化液体燃料的燃烧长期以来引起了内燃机研究界的兴趣。通常,这些燃料由少量的水组成,用超声波或其他机械方法乳化成纯的或多组分的碳氢化合物燃料。与基础液体燃料相比,这些乳化液燃料具有显著的优势,如更好的燃油经济性、更低的燃烧温度、更少的氮氧化物排放等。然而,这些燃料的一个明显的实际缺点是,它们在制备后容易发生相分离。迄今为止,还没有一种客观而经济的方法来鉴别不同的相分离程度。本研究提出了这种方法,并展示了它在不添加化学稳定剂的情况下分析水和碳氢化合物燃料乳剂随时间变化的稳定性的应用。期望本研究能为建立这种方法来研究其他专用多组分流体的稳定性奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of Water Emulsion Fuel Stability
The combustion of liquid fuels emulsified with water have long generated interest in the internal combustion engine research community. Typically, these fuels consist of small quantities of water emulsified with ultrasonification or other mechanical methods into a pure or multicomponent hydrocarbon fuel. These emulsion fuels promise significant advantages over base liquid fuels, such as better fuel economy, colder combustion temperatures, less NOx emissions, and so on. However, a significant practical disadvantage of these fuels is that they are prone to phase separation after they have been prepared. Till date, an objective but economical method of identifying the various degrees of phase separation has not been identified. Present research presents such a method and shows its utilization in analyzing the stability of water and hydrocarbon fuel emulsions over time without the addition of chemical stabilizers. It is expected that present research will pave the way in establishing this method to study the stability of other specialized multicomponent fluids.
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