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首页> 外文期刊>Environmental Progress & Sustainable Energy >Experimental and numerical engine cycle setup for a dual fuel hydrogen, methane, and hythane with diesel to assess the effect of water injection and nozzle geometry
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Experimental and numerical engine cycle setup for a dual fuel hydrogen, methane, and hythane with diesel to assess the effect of water injection and nozzle geometry

机译:双燃料氢气、甲烷和氢乙烷与柴油的实验和数值发动机循环设置,以评估注水和喷嘴几何形状的影响

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摘要

Abstract In this study, the potential of gaseous fuels such as hydrogen, methane, and hythane in combination with diesel fuel is assessed in a closed loop thermodynamic framework. An experimental test is conducted with basic diesel fuel and then the model is configured based on the realistic one‐cylinder diesel engine to evaluate the robustness and reliability of the simulation. The model is accurate in terms of in‐cylinder pressure, temperature, and heat release rate within the 3% error band. In principle, three blend cases of diesel50%—methane50%, diesel50%—hydrogen50%, and diesel50%—hythane50% are compared with baseline neat diesel from engine performance to emissions characteristics. For hythane and hydrogen‐involved fuels, the 10% water injection effect is analyzed as well to damp the high flammability and ignition intensity of hydrogen. The findings indicate that the entropy generation in hythane and hydrogen is markedly higher than in diesel case, while water injection can slightly decrease the entropy amount. It is shown that D50H50 has more fuel consumption in higher nozzle diameter (28% at 1 mm hole diameter), while in lower nozzle size range pure diesel fuel consumption dominates. The results revealed that D50Hy40W10 is particularly effective for elevated torque at lower nozzle hole values since the steam contributes toward maximized pressure and the exerted force. The increase of the nozzle number resulted in the CO content increase in the exhaust with the burning temperature reduction.
机译:摘要在这项研究中,气态的潜力燃料如氢气、甲烷和hythane结合柴油是一个评估闭环热力学框架。实验测试进行基本的柴油燃料,然后基于配置的模型现实的特色缸柴油发动机评估的健壮性和可靠性模拟。在检测气缸压力、温度、和热释放率在3%的误差范围内。原则,三个混合的情况diesel50%-methane50% diesel50%-hydrogen50%,diesel50%-hythane50%与基线相比整齐排放的柴油发动机的性能特征。氢量涉及燃料,10%的注水效果分析以及抑制高氢的可燃性和点火强度。研究结果表明,熵的一代在明显高于hythane和氢在柴油中,注水稍微减少熵。在高D50H50有更多的燃料消耗喷嘴直径在1毫米孔直径(28%),而在低纯柴油喷嘴尺寸范围消费占主导地位。对高架D50Hy40W10尤为有效自从转矩较低的喷嘴孔值蒸汽对最大压力和贡献施加的力。数量增加导致公司的内容减少废气和燃烧的温度。

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