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The Ultra Low Emissions Potential of the Recuperated Split Cycle Combustion System

机译:恢复循环燃烧系统的超低排放电位

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The recuperated split cycle engine is a fundamentally new class of internal combustion engine that offers a step change in thermal efficiency over conventional Otto and Diesel cycle engines. In a split cycle engine, the compression and combustion strokes are performed in different cylinders. Intensive cooling of the compression stroke by the injection of liquid nitrogen directly into the chamber enables the recovery of waste heat from the exhaust between the compression and combustion cylinders. Brake efficiencies of over 50% have been reported without compression cooling, rising to 60% where the compression stroke is cooled by the injection of liquid nitrogen. The technology targets the heavy duty, long-haul sector where electrification is ineffective. In this paper, results from an experimental program conducted on a single cylinder research engine, representing the combustor cylinder of a recuperated split cycle engine are reported. The effect of fuel injection timing, valve timing and injection pressure were studied at 1200rpm at a range of loads. Experiments using oxygen depleted air to represent the effect of the injection of liquid nitrogen in the compression cylinder are also reported. Engine out NO_x emissions of less than 110ppm at mid speed and loads typical of motorway cruise conditions for a truck engine were observed. The low NO_x emissions suggest a significant contribution of cool, pre-mixed combustion. A conceptual modeling is proposed that describes the mixing process inside the combustion chamber to explain the low NO_x emissions. It is proposed an air jet is formed during the induction of charge air which interacts with the liquid fuel jet, enhancing mixing. This together with the lower charge temperatures used account for the low NO_x emissions. The impact of fitting an SCR based aftertreatment catalyst on final vehicle emissions is presented, demonstrating the potential of achieving very low levels of NO_x emissions. With aftertreatment, NO_x emissions below 5ppm were predicted, meaning the recuperated split cycle engine has the potential of meeting the SULEV NO_x standard.
机译:恢复的分裂循环发动机是一类基本上新的内燃机,可以在传统的奥托和柴油循环发动机上提供热效率的步骤变化。在分裂循环发动机中,压缩和燃烧冲程在不同的汽缸中进行。通过将液氮直接注入腔室的压缩冲程的强化冷却使得能够从压缩和燃烧缸之间的排气回收废热。已经报道了超过50%的制动效率而不会压缩冷却,上升至60%,其中通过注射液氮来冷却压缩冲程。该技术针对了电气化无效的重型型长期扇区。本文报道了在单个汽缸研究发动机上进行的实验程序的结果,表示代表恢复的分裂循环发动机的燃烧缸。在1200rpm处,在一系列载荷下,研究了燃料喷射正时,气门正时和注射压力的影响。还报道了使用氧气耗尽空气的实验来表示在压缩缸中注射液氮的效果。从MED速度下发动机出发动机NO_X排放量小于110ppm,并且典型的卡车发动机的高速公路巡航条件典型的载荷。低NO_X排放表明阴凉预混燃烧的显着贡献。提出了一种描述燃烧室内的混合过程以解释低NO_X排放的概念建模。在诱导电荷空气期间形成空气射流,其与液体燃料射流相互作用,增强混合。这与较低的电荷温度一起用于低NO_X排放。介绍了拟合SCR基后处理催化剂对最终车辆排放的影响,展示了实现极低水平的NO_X排放的潜力。随着后处理,预测5ppm以下的NO_X排放,意味着恢复的分裂循环发动机具有满足SULEV NO_X标准的可能性。

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