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H2-Engine Operation with EGR Achieving High Power and High Efficiency Emission-Free Combustion

机译:H2发动机运行与EGR实现高功率和高效无排放燃烧

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Using hydrogen as a fuel to power internal combustion engines is a practical and effective solution to achieve zero impact mobility. The product of hydrogen combustion is water vapour. It does not emit climate-damaging greenhouse gas CO_2 and health-damaging pollutants such as CO, HC or NO_x. The impact into the environment is negligible. This allows therefore zero impact mobility, as long as hydrogen fuel being produced from renewable energies and water. Hydrogen combustion strategies take the avoidance of NO_x formation is a priority parameter to control. The idea of using hydrogen in combustion engines to power vehicles is not new and has been successfully demonstrated in the recent past by companies such as BMW, MAN and Ford. The Start-up company KEYOU is bringing hydrogen engines technology to a new level now by presenting a new combustion concept that is applied ‘add-on’ to existing Diesel engines. The result is an attractive clean engine solution to power clean vehicles, especially in the heavy-duty vehicle sector, where current clean solutions (such as battery electric or fuel cell electric) penalize customers with too high cost and low durability. KEYOU has developed an approach to convert conventional Diesel engines into hydrogen engines that meets today's customer requirements with minor necessary adaptations. The technology contains four basic components: 1. Lean-burn combustion with exhaust gas recirculation; 2. Efficient injection strategy; 3. Optimized turbocharging; and 4. H2-SCR catalyst. The result is a highly powerful and efficient engine with ultra-low NO_x emissions. The use of EGR in modern Diesel engines is state-of-the-art to reduce NO_x emissions while simultaneously improve efficiency. However, the impact of these benefits is considerably augmented in hydrogen combustion. The positive effects of optimizing a cooled high pressure EGR system operation for hydrogen engines are presented in this paper.
机译:使用氢气作为电力内燃机的燃料是实现零冲击迁移率的实用且有效的解决方案。氢燃烧的产物是水蒸气。它不会发出气候损坏的温室气体CO_2和健康损害污染物,如CO,HC或NO_X。对环境的影响可以忽略不计。因此,这允许零冲击流动性,只要由可再生能量和水生产的氢燃料。氢燃烧策略采取避免NO_X的形成是控制的优先参数。在燃烧发动机到电力车辆中使用氢气的想法并不是新的,并且在最近的公司之类的公司中成功地证明了BMW,Man和Ford的公司。初始公司Keyou正在通过呈现将“加载项”应用于现有的柴油发动机的新燃烧概念,将氢引擎技术带入新的水平。结果是一种有吸引力的清洁发动机解决方案,可以用清洁车辆,特别是在重型车辆领域,其中当前清洁解决方案(如电池电气或燃料电池电气)以太高的成本和低耐用性惩罚客户。 Keyou开发了一种将常规柴油发动机转换为氢发动机的方法,符合当今客户要求的较小必要的适应。该技术含有四种基本组件:1。用废气再循环稀燃燃烧; 2.高效的注射策略; 3.优化涡轮增压;和4. H2-SCR催化剂。结果是一种高度强大而有效的发动机,具有超低的NO_X排放。在现代柴油发动机中使用EGR是最先进的,以减少NO_X排放,同时提高效率。然而,这些益处的影响在氢燃烧中会显着增强。本文提出了优化用于氢发动机的冷却高压EGR系统操作的正效应。

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