首页> 外文期刊>International journal of hydrogen energy >Analysis of the behaviour of a 4-stroke Si engine fuelled with ammonia and hydrogen
【24h】

Analysis of the behaviour of a 4-stroke Si engine fuelled with ammonia and hydrogen

机译:氨和氢为燃料的四冲程硅发动机的性能分析

获取原文
获取原文并翻译 | 示例
       

摘要

The use of hydrogen as fuel represents a possible solution to reduce greenhouse gas emission from vehicles. Although proper engine running with hydrogen has been widely demonstrated, hydrogen storage onboard of the vehicle is a major problem. A promising solution is storing hydrogen in the form of ammonia that is liquid at roughly 9 bar at environmental temperature and therefore involves relatively small volumes and requires light and low-cost tanks. Ammonia can be burned directly in IC engines, however a combustion promoter is necessary to support combustion. As a matter of fact, the best (and carbon-free) promoter is hydrogen, which has very high combustion velocity and wide flammability range, whereas ammonia combustion is characterised by low flame speed and temperature, narrow flammability range and high ignition energy.The experimental activity shown in this paper is focused on analysing the behaviour of a 4-stroke twin-cylinder SI engine of 505 cm~3 fuelled ammonia-plus-hydrogen. This engine was expressly chosen and modified to be placed in a range extended vehicle where hydrogen is obtained from ammonia by means of on-board catalytic reforming. The experimental results confirm that it is necessary to add hydrogen to air-ammonia mixture to improve ignition and to increase combustion velocity, with ratios that depend mainly on load and less on engine speed. Owing to intake air dilution and to lower flame speed of the ammonia-hydrogen-air mixture, a general decrement in engine performances has been detected in respect to the original gasoline version.
机译:使用氢作为燃料是减少车辆温室气体排放的一种可行解决方案。尽管已经广泛地证明了用氢气运行的适当发动机,但是车辆上的氢气存储是主要问题。一种有前途的解决方案是以氨的形式存储氢气,该氢气在环境温度下约为9 bar,呈液态,因此体积相对较小,需要使用轻便,低成本的储罐。氨可以在内燃机中直接燃烧,但是燃烧助燃剂对于支持燃烧是必需的。实际上,最好的(无碳)助催化剂是氢气,它具有极高的燃烧速度和较宽的可燃范围,而氨燃烧的特点是火焰速度和温度低,可燃范围较窄且点火能量高。本文显示的实验活动集中于分析505 cm〜3燃料加氨加氢的四冲程双缸SI发动机的性能。明确选择并改装了该发动机,以将其放置在增程车辆中,在该车辆中,通过车载催化重整从氨中获得氢气。实验结果证实,有必要向空气-氨气混合物中添加氢气以改善点火性能并提高燃烧速度,其比例主要取决于负载,而较少取决于发动机转速。由于进气稀释和氨-氢-空气混合物的火焰速度降低,相对于原始汽油版本,已经发现发动机性能普遍下降。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号