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Numerical and thermodynamic study on effects of high and low pressure exhaust gas recirculation on turbocharged marine low-speed engine

机译:高低压排气再循环对涡轮增压船用低速发动机影响的数值和热力学研究

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摘要

Marine low-speed engines are one of the most favorable power devices for oceangoing vessels. However, their energy consumption reduction is currently limited because of applying the exhaust gas recirculation (EGR) to reduce the NOx emission. Consequently, high pressure (HP) and low pressure (LP) EGR are studied in this study to explore the interactive relationship among the EGR, the turbocharger and the engine. The HP EGR reduces the turbine power, causing the deterioration of scavenge air pressure and compressor surge margin. As a solution, the cylinder bypass rate should be kept approximately equivalent to the EGR rate. Moreover, to avoid unfavorable impacts on the NOx emission, it should be decoupled with the exhaust gas receiver. While, the LP EGR has opposite effects on the turbocharger: the turbine power is raised and compressor operating points move to the opposite direction. It could be preliminarily attributed to the better utilization of the increased exhaust gas temperature. From a thermodynamic analysis, the fundamental reason is the difference of compressor inlet composition. Demands of them for the compressor are concluded subsequently: the HP EGR requires a wide high efficiency area at a constant pressure ratio, while the LP EGR needs the high efficiency area as long as possible in its demand direction. Finally, detailed comparisons between them are conducted based on the re-matched turbochargers and optimized engine parameters: the control and the structure of LP EGR are simpler and more effective, but its cost and compactness are inferior to the HP EGR.
机译:船用低速发动机是远洋船舶最有利的动力装置之一。然而,由于采用排气再循环(EGR)以减少NOx排放,因此它们的能量消耗减少目前受到限制。因此,本研究对高压(HP)和低压(LP)EGR进行了研究,以探索EGR,涡轮增压器和发动机之间的相互作用关系。 HP EGR降低了涡轮机的功率,从而导致扫气压力和压缩机喘振裕度的降低。作为解决方案,气缸旁路率应保持近似等于EGR率。此外,为避免对NOx排放产生不利影响,应将其与废气接收器分离。同时,LP EGR对涡轮增压器产生相反的影响:涡轮功率提高,压缩机工作点向相反方向移动。可以将其初步归因于更好地利用增加的废气温度。从热力学分析来看,根本原因是压缩机进气口成分不同。随后得出它们对压缩机的需求:HP EGR在恒定压力比下需要宽阔的高效区域,而LP EGR在需求方向上则需要尽可能长的高效区域。最后,基于重新匹配的涡轮增压器和优化的发动机参数进行了详细的比较:LP EGR的控制和结构更简单,更有效,但其成本和紧凑性不及HP EGR。

著录项

  • 来源
    《Applied Energy》 |2020年第1期|114346.1-114346.18|共18页
  • 作者

  • 作者单位

    Shanghai Jiao Tong Univ Minist Educ Key Lab Power Machinery & Engn Shanghai 200240 Peoples R China;

    China Shipbldg Power Engn Inst Co Ltd Shanghai Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High pressure EGR; Low pressure EGR; Marine low-speed engine; Numerical study; Thermodynamic analysis;

    机译:高压EGR;低压EGR;船用低速发动机;数值研究;热力学分析;

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