首页> 外文期刊>Journal of Nanoelectronics and Optoelectronics >Exergy Analysis of Different Blends of Hydrogen and Octane for Combustion Conditions of Internal Combustion Engine
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Exergy Analysis of Different Blends of Hydrogen and Octane for Combustion Conditions of Internal Combustion Engine

机译:内燃机燃烧条件的氢和辛烷不同共混物的漏洞分析

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In this paper, exergy analysis was performed under both complete and partial incomplete combustion conditions for stoichiometric (phi = 1) fuel/air mixture ratios including different mole blends of octane and hydrogen in an internal combustion engine. In exergy analysis, temperature and pressure of exhaust gases was accepted as 500 degrees C and 1 atm respectively, and temperature and pressure of ambient as reference conditions was taken 25 degrees C, 1 atm respectively. 1 kmol fuel that consist different mole blends of octane and hydrogen was taken as total fuel amount. As the mole fuel blends were being prepared, the reduction in the amount of octane as percent in the mixture were completed with % hydrogen as percent, and the total fuel amount for each mixture rates was completed to 100%. From the results, it is observed that the exergetic efficiency is approximately 26% for 1 kmol of fuel containing 100% octane, while approximately 30% for 1 kmol of fuel containing 100% hydrogen. The exergetic efficiency for other hydrogen and octane fuel blends is varied in a parabolic structure between these values for both chemical reactions (complete and partial incomplete combustion).
机译:在本文中,在包括在内燃机中的不同摩尔共混物的化学计量(PHI = 1)燃料/空气混合物比例的完全和部分不完全燃烧条件下进行了Deervy分析。在暴露的分析中,排气的温度和压力分别被接受为500℃和1个atm,分别拍摄25℃,1atm的温度和环境的温度和压力。 1种KMOL燃料,包括不同摩尔辛烷和氢气的摩尔混合物作为总燃料量。当制备摩尔燃料混合物时,用%氢气完成混合物中辛烷值的百分比的百分比作为百分比,并且将每种混合物率的总燃料量完成为100%。从结果中,观察到含有100%辛烷值的1厘米的燃料的淬火效率约为26%,而含有100%氢的燃料约为30%。其他氢和辛烷燃料共混物的辐射效率在这些值之间的抛物面结构中变化,用于化学反应(完全和部分不完全燃烧)。

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