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Latest concepts for combustion and waste heat recovery systems being considered for hydrogen engines

机译:氢发动机正在考虑燃烧和废热回收系统的最新概念

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A more sustainable transportation calls for the use of alternative and renewable fuels, a further increase of the fuel energy conversion efficiency of internal combustion engines as well as the reduction of the thermal engine energy supply by recovering the braking energy. The paper presents two concepts being developed to improve the fuel conversion efficiency of internal combustion engines for transport applications. The first concept works on the combustion evolution to increase the amount of fuel energy transformed in piston work within the cylinder. The second concept works on the waste exhaust and coolant energies to be recovered through a power turbine downstream of the turbocharger turbine on the exhaust line and a steam turbine feed with the steam produced by a boiler/ super heater made of the coolant passages and a heat exchanger on the exhaust line. The concepts work with hydrogen (and in this case a water injector is also necessary) as well as lower alkanes (methane, propane, butane). Preliminary simulations show improvement of top fuel conversion efficiencies to above 50% in the high power density operation. The waste heat recovery system also permits faster warm-up during cold start driving cycles.
机译:更具可持续性的运输要求使用替代燃料和可再生燃料,进一步提高内燃机的燃料能量转换效率,以及通过回收制动能量来减少热机能量供应。本文介绍了两个概念,这些概念正在开发中,以提高用于运输应用的内燃机的燃料转换效率。第一个概念在燃烧过程中起作用,以增加气缸内活塞工作中转化的燃料能量。第二个概念是通过废气管路上涡轮增压器涡轮机下游的动力涡轮机和蒸汽涡轮机提供的废气和冷却剂能量进行回收,该涡轮机通过由冷却剂通道构成的锅炉/过热器产生的蒸汽和热量排气管路上的热交换器。该概念适用于氢气(在这种情况下也需要注水器)以及低级烷烃(甲烷,丙烷,丁烷)。初步模拟显示,在高功率密度运行中,最高燃油转换效率提高到50%以上。废热回收系统还允许在冷启动行驶周期中更快地进行预热。

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