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首页> 外文期刊>International journal of hydrogen energy >Extending the lean operation limit of a gasoline Wankel rotary engine using hydrogen enrichment
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Extending the lean operation limit of a gasoline Wankel rotary engine using hydrogen enrichment

机译:利用氢富集扩展汽油Wankel旋转发动机的稀薄运行极限

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摘要

In this paper, an experimental investigation of the effect of hydrogen enrichment on a gasoline Wankel engine's Lean Operation Limit (LOL) was performed. A monorotor Wankel engine operating at 3000 rpm and wide open throttle was modified to run on gasoline and hydrogen blends. Excess air ratio varying from stoichiometric mixtures to the engine lean burn limit with 0%, 3% and 6% of hydrogen energy fractions in the intake were investigated. The experimental results proved that adding hydrogen to gasoline extends the original engine LOL while improving the engine stability. An increased thermal efficiency and reduced burn duration, brake specific energy consumption, and HC, CO and CO2 emissions were observed with hydrogen enrichment. Furthermore, the extension of the engine LOL with hydrogen addition could potentially control the NOx emissions of a gasoline Wankel engine to very low levels without using a three-way catalytic converter. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,进行了富氢对汽油Wankel发动机的稀薄运行极限(LOL)影响的实验研究。修改了以3000 rpm和全开节气门运行的单转子Wankel发动机,使其可以在汽油和氢气混合气下运行。研究了从化学计量混合物到发动机稀薄燃烧极限变化的过量空气比率,其中进气中氢能的比例分别为0%,3%和6%。实验结果证明,向汽油中添加氢气可以扩展原始发动机的LOL,同时提高发动机的稳定性。随着氢气的富集,观察到了热效率的提高,燃烧时间的减少,制动器的比能耗以及HC,CO和CO2的排放。此外,在不使用三元催化转化器的情况下,通过添加氢来扩展发动机的LOL可能会将汽油Wankel发动机的NOx排放控制在非常低的水平。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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