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某柴油机相继增压系统切换策略研究

Research on switching strategy of sequential turbocharging system for a diesel engine
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摘要 为了对某三增压器相继增压柴油机切换策略进行研究,可以基于GT-POWER建立仿真模型,分别在急加速和稳态工况下进行STC(Sequential Turbo Charging)切换,并由仿真图像分析切换后的运行稳定性及空气阀延迟时间对柴油机性能的影响。研究表明,该STC切换策略下柴油机在急加速工况下响应迅速,运行参数稳定且处于合理范围;同时,空气阀开启延迟时间会显著影响柴油机稳态运行性能,在1TC~2TC以及2TC~3TC的切换过程中,当空气阀延迟2 s开启,在切换点有效燃油消耗率相较于延迟0 s时分别增大了6.42%和4.59%;而延迟1 s开启时,在切换点分别增大了2.12%和1.7%,而值得注意的是,0 s延迟开启会影响柴油机运行的稳定性。因此,可知当延迟开启时间在0~1 s时,能够实现最佳TC切换,并以此为同类柴油机提供切换过程案例分析。 This study investigates the switching strategy of a triple-turbocharger sequential turbocharging system for diesel engines through GT-POWER simulations,evaluating performance under both transient acceleration and steady-state conditions with particular focus on operational stability and air valve delay timing effects.The results demonstrate that the proposed strategy ensures rapid response while maintaining stable operating parameters during acceleration,with air valve delay timing significantly impacting steady-state performance-specifically,during first to second turbocharger stage transitions,2-second and 1-second delays increase effective fuel consumption by 6.42%and 2.12%respectively compared to immediate opening,while second to third stage transitions show corresponding increases of 4.59%and 1.7%,with immediate opening adversely affecting engine stability.These findings conclusively establish that optimal turbocharger switching performance is achieved within the 0-1 second delay window,providing valuable insights for similar diesel engine applications.
作者 刘昊喆 王贺春 牛晓晓 胡登 杨传雷 张祥臣 滕帅平 王政远 LIU Haozhe;WANG Hechun;NIU Xiaoxiao;HU Deng;YANG Chuanlei;ZHANG Xiangchen;TENG Shuaiping;WANG Zhengyuan(Yantai Research Institute,Harbin Engineering University,Yantai 265500,China;College of Power and Energy Engineering,Harbin Engineering University,Harbin 150001,China;Henan Diesel Engine Industry Co.,Ltd.,Luoyang 471003,China)
出处 《舰船科学技术》 北大核心 2026年第1期120-126,共7页 Ship Science and Technology
关键词 相继增压 仿真研究 切换策略 sequential turbocharging simulation study switching strategy
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