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Investigation on combustion and emissions characteristics of a hydrogen-blended n-butanol rotary engine

机译:混合氢正丁醇旋转发动机的燃烧与排放特性研究

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In this paper, a rotary engine equipped with an n-butanol and hydrogen port -injection system was developed to investigate the cOmbustion and emissions characteristics of a hydrogen -blended n-butanol rotary engine at part load and stoichiometric conditions. A self -developed hybrid electronic control unit was adopted to adjust the injection durations of n-butanol and hydrogen. The rotary engine was run under the conditions of 4000 rpm, a manifold absolute pressure of 35 kPa and a fixed spark timing of 45 degrees CA before the top dead center during the whole testing operation. The hydrogen volumetric fraction in the total intake was variedfrom 0% to 6.30%. The test results manifested that the brake thermal efficiency and chamber temperature were simultaneously increased with hydrogen addition. The hydrogen supplement obviously shortened flame development and propagation periods. Both chamber pressure integral heat release fraction versus crank angle were increased when the hydrogen fraction was enhanced. HC emissions were reduced by 54.5% when hydrogen volume fraction was raised from 0% to 6.30%, CO and CO2 emissions were also reduced after increasing hydrogen blending fraction. NOx emissions were mildly elevated due to the improved chamber temperature. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了配备正丁醇和氢气端口注入系统的旋转发动机,以研究混合氢的正丁醇旋转发动机在部分负荷和化学计量条件下的燃烧特性和排放特性。采用自行开发的混合电子控制单元来调节正丁醇和氢气的注入时间。在整个测试过程中,旋转发动机在上止点之前的4000 rpm,歧管绝对压力为35 kPa和固定火花正时为45度CA的条件下运行。总进气中的氢体积分数从0%变化到6.30%。试验结果表明,添加氢气可同时提高制动器的热效率和车厢温度。补充氢气明显缩短了火焰的发展和传播时间。当氢气分数增加时,两个腔室压力积分放热分数相对于曲柄角均增加。当氢气体积分数从0%增加到6.30%时,HC排放量减少了54.5%,在增加氢气混合比例后,CO和CO2排放量也减少了。由于腔室温度的提高,NOx排放量有所增加。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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