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Diagnosis and Improvement of Combustion Characteristics of Methanol Miniature Reciprocating Piston Internal Combustion Engine

机译:甲醇微型往复活塞式内燃机燃烧特性的诊断与改进

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摘要

A micro-reciprocating piston internal combustion engine with liquid hydrocarbon fuel has the potential to supply ultrahigh density energy to micro electro mechanical system because of its high-density energy, simple structure, and mature energy conversion principle. However, the diagnostic test of the combustion characteristics of the micro reciprocating piston internal combustion engine shows that its combustion characteristics are poor, and the combustion rate was lower with the combustion duration of more than 50 °CA. The mean indicated pressure (Pmi) value was only 0.137 MPa, the combustion stability was very poor, and the cycle variation rate of the Pmi was up to 60%. To improve its combustion performance, the method to enhance combustion in micro-space is explored then. Mechanism studies have shown that the pyrolysis reaction of nitromethane and hydrogen peroxide can produce amounts of free radicals OH, with the possibility of improving the combustion of methanol. Therefore, a method for adjusting the composition of methanol fuel to enhance combustion is proposed, and the method is theoretically confirmed. Finally, based on this method, the test was carried out. The results showed that the combustion rate increased and the combustion duration decreased by 6% after adding nitromethane. The power performance was enhanced, and the Pmi value was increased by 30%. The combustion stability was enhanced, and the cycle variation rate of the Pmi was reduced to 16.9%. Nitromethane has a significant effect on improving the combustion characteristics of methanol, and the enhancement of the latter was mainly reflected in the ignition phase of the combustion process. This study indicates that exploring the fuel additive that can increase the concentration of OH radical in the reaction is an effective method to improve the micro-space combustion, which will facilitate the development of micro-piston internal combustion engine to supply energy to a micro electro mechanical system.
机译:具有液态烃燃料的微往复活塞式内燃机由于其高密度能量,结构简单和成熟的能量转换原理,具有向微机电系统提供超高密度能量的潜力。然而,对微型往复活塞式内燃机的燃烧特性的诊断测试表明,其燃烧特性较差,且燃烧持续时间超过50°CA时燃烧速率较低。平均显示压力(Pmi)值仅为0.137 MPa,燃烧稳定性非常差,Pmi的循环变化率高达60%。为了提高其燃烧性能,探讨了增强微空间燃烧的方法。机理研究表明,硝基甲烷和过氧化氢的热解反应可产生大量的自由基OH,并有可能改善甲醇的燃烧。因此,提出了一种调节甲醇燃料的成分以增强燃烧的方法,并且该方法在理论上得到了证实。最后,基于这种方法,进行了测试。结果表明,加入硝基甲烷后,燃烧速率提高,燃烧持续时间降低了6%。功率性能得到增强,Pmi值增加了30%。燃烧稳定性增强,Pmi的循环变化率降低到16.9%。硝基甲烷对改善甲醇的燃烧特性具有显著作用,而后者的增强主要体现在燃烧过程的着火阶段。这项研究表明,探索能够增加反应中OH自由基浓度的燃料添加剂是改善微空间燃烧的有效方法,这将有助于微活塞内燃机的发展,从而为微电子发动机提供能量。机械系统。

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