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Estimation of Performance Characteristics of a Split Cycle Based SI Engine

机译:基于分裂周期的SI发动机性能特征的估计

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Increasing fuel efficiency of automobile engines has become a prime motive, as the fossil fuel reserves are limited. This has forced automakers to look into technologies that help utilising the available reserves effectively. A typical three cylinder engine at urban driving speed devours more fuel developing excess power than required. Fuel cutoff is a technique that minimises the excess fuel being burnt. The present work concentrates on performance characteristics obtained by integrating Scuderi Split Cycle concept with Spark Ignited (SI) engine that employs fuel cutoff technology. In the current numerical investigation, performance characteristics of a three cylinder SI engine (used in Volkswagen Polo car) was estimated by extrapolating the results obtained for single cylinder using commercially available Ricardo VECTIS tool. The simulation results are validated against analytical results ascertained in concern to engine working volume and compression ratio. The conceptual model that utilises the abandoned cylinder to supercharge the variable displacement engine is simulated to determine the enhancement in performance characteristics. The variable displacement SI engine of a small sized passenger car was found to reduce 33% of fuel consumption and also satisfied the required road load condition for lower operating speeds. Implementation of the Scuderi split cycle concept in variable displacement SI engine supercharge the quality of intake air and improved the performance characteristics substantially by 5% with the same amount of fuel supplied.
机译:随着化石燃料储量有限的,汽车发动机的燃料效率越来越多。这已强制汽车制造商调查有效利用可用储备的技术。城市驾驶速度的典型三缸发动机吞噬比所需的多余功率更大。燃料切断是一种最大限度地减少燃烧的过剩燃料的技术。本工作集中在通过将Scuderi分开循环概念与采用燃料截止技术的火花点燃(Si)发动机集成来获得的性能特征。在目前的数值调查中,通过推断使用市售的Ricardo Vectis工具来估计三个气缸Si发动机(在大众Polo汽车中使用的Volkswagen Polo Car)的性能特征。模拟结果针对关于发动机工作体积和压缩比确定的分析结果。利用废弃气缸加上可变排量引擎的概念模型被模拟以确定性能特征的增强。发现小型乘用车的可变位移Si发动机减少了33%的燃料消耗,并满足了较低的运行速度的道路负载条件。在可变位移Si发动机中的SCUDERI分体循环概念的实现提高了进气质量,并随着所提供量的燃料量的基本上基本上提高了5%的性能特性。

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