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Performance and emissions of a direct injection internal combustion engine devised for joint operation with a high-pressure thermochemical recuperation system

机译:专为与高压热化学回收系统联合运行而设计的直喷内燃发动机的性能和排放

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This paper presents the results of an experimental study on performance and pollutant emissions of a direct-injection spark-ignition engine devised for joint operation with a high-pressure thermochemical recuperation system based on methanol steam reforming. A comparison with gasoline and ethanol decomposition is performed. Engine feeding with methanol steam reforming products shows an 18% -39% increase in the indicated efficiency and a reduction of 73-94%, 90-96%, 85-97%, and 10-25% in NOx, CO, HC and CO2 emissions, respectively, compared to gasoline within a wide power range. Efficiency improvement and emissions reductions are obtained compared to ethanol decomposition products as well. The possibility of an unthrottled engine operating with a substantially lower cycle-to-cycle variation compared to both gasoline and ethanol decomposition is demonstrated. At high loads, the injector flow area was insufficient for a low injection pressure of 40 bar, leading to late injection and reduced engine efficiency for methanol steam reforming products. In the case of ethanol decomposition, the problem was less severe due to the higher energy content of ethanol decomposition products per mole. The concept of a direct-injection internal combustion engine with high-pressure methanol steam reforming shows good potential, while additional research on injection strategies and gaseous reformate combustion is required. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种直接喷射式火花点火发动机的性能和污染物排放的实验研究结果,该发动机设计用于与基于甲醇蒸汽重整的高压热化学回收系统联合运行。进行了汽油和乙醇分解的比较。装有甲醇蒸汽重整产品的发动机进料的指示效率提高了18%-39%,而NOx,CO,HC和NOx的降低了73-94%,90-96%,85-97%和10-25%。在较宽的功率范围内,与汽油相比,二氧化碳的排放量分别较高。与乙醇分解产物相比,还可以提高效率并减少排放。证明了与汽油和乙醇分解相比,无节气门发动机以明显更低的循环变化运行的可能性。在高负载下,对于40 bar的低喷射压力,喷射器的流动面积不足,导致喷射延迟,降低了甲醇蒸汽重整产品的发动机效率。在乙醇分解的情况下,由于每摩尔乙醇分解产物的能量含量较高,问题不那么严重。具有高压甲醇蒸汽重整的直喷式内燃机的概念显示出良好的潜力,同时还需要对喷射策略和气态重整油燃烧进行更多研究。 (C)2017 Elsevier Ltd.保留所有权利。

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