太阳能和生物质混合可再生能源系统中以沼气-氢混合燃料为燃料的火花点火发动机运行参数优化

V. G. Bui, Thi Minh Tu Bui, Hwai Chyuan Ong, V. Bui, Thi Thanh Xuan Nguyen, A. Atabani, Le Hoang Phu Pham, A. Hoang
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引用次数: 1

摘要

为了提高混合可再生能源系统的整体能源效率,需要对沼气-氢发动机进行智能控制。本文重点研究了生物气氢发动机的最优控制参数,以实现生物气氢发动机性能与污染物排放的折衷。在纯沼气加注模式下,随着沼气中CH4组成由60%增加到80%,最佳等效比由1.05增加到1.01。在沼气中加入20%的氢气,无论CH4浓度如何变化,最佳当量比基本达到化学计量值。在相同的操作条件和氢气含量下,沼气中CH4浓度每增加10%,在最佳提前点火角下CA降低2°。然而,在一定的发动机转速和沼气成分下,当沼气中加入10%的氢气时,最佳提前点火角降低了3°CA。最佳点火角与载荷无关。在最佳运行条件下,在沼气中添加20%的氢气可使发动机的指示循环工作效率提高6%,将CO和HC排放量减少5-10倍;然而,与纯沼气燃料模式相比,它增加了10-15%的氮氧化物排放。
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Optimizing Operation Parameters of a Spark-Ignition Engine Fueled with Biogas-Hydrogen Blend in Hybrid Renewable Energy System Working on Solar and Biomass
The smart control of the biogas-hydrogen engine is needed to improve the overall energy efficiency of the hybrid renewable energy system. The paper focuses on studying the optimal control parameters of the engine aiming to achieve the compromise between performance and pollutant emissions of the biogas-hydrogen engine. In neat biogas fueling mode, the optimal equivalence ratio changes from 1.05 to 1.01 as the CH4 composition in biogas increases from 60% to 80%. By adding 20% hydrogen into biogas, the optimal equivalence ratio practically reaches the stoichiometric value, despite the variation of CH4 concentration. At the same operating condition and hydrogen content, an increase of 10% CH4 in biogas leads to a decrease of 2°CA in the optimal advanced ignition angle. However, at a given engine speed and biogas composition, the optimal advanced ignition angle decreased by 3°CA when adding 10% hydrogen into biogas. The optimal ignition angle is independent of the load regime. Under optimal operating conditions, the addition of 20% hydrogen content into biogas is found to improve the indicated engine cycle work by 6%, to reduce CO and HC emissions by 5-10 times; however, it increases NOx emission by 10-15% compared to neat biogas fueling mode.
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