Effect of flow area ratio of scrolls to turbine on matching of exhaust pulse energy distribution of an asymmetric twin-scroll turbocharging heavy-duty diesel engine

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Jianjiao Jin, Qiusheng Ru, Chenyun Zhang
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Abstract

The operation mode of an asymmetric twin-scroll turbine is significantly different from that of a steady state under exhaust pulse feeding conditions, which leads to a more complex matching between a turbine with an engine. In this paper, It was first studied that the matching effect of the flow area ratio of asymmetric twin-scroll to turbine wheel on the pulse energy distribution of asymmetric twin-scroll turbocharged engines. Firstly, It was compared that the deviation between turbine average efficiency on time average testing results and turbine cycle average efficiency based high frequency test results under the background of pulse energy distribution in the scheduling of asymmetric twin-scroll turbocharged engines, as well as a matching method based on pulse energy weight distribution was proposed. Furthermore, the impact of the flow area ratio of scrolls to turbine on matching was studied to further optimize turbine matching. Finally, the optimal and original turbines were tested on the engine to further demonstrate the accuracy and rationality of the results. The results showed that the turbine cycle-average efficiency and the engine fuel economy were improved by about 2%–4% and 0.8%, respectively at the middle and high speeds region of the engine with maintaining equivalent NOx emissions.
涡流与涡轮的流通面积比对非对称双涡管涡轮增压重型柴油发动机排气脉冲能量分布匹配的影响
非对称双涡管涡轮的运行模式与排气脉冲进气条件下的稳态运行模式有很大不同,这导致涡轮与发动机之间的匹配更加复杂。本文首先研究了非对称双涡管与涡轮轮毂的流通面积比对非对称双涡管涡轮增压发动机脉冲能量分布的匹配效应。首先,比较了非对称双涡管涡轮增压发动机调度脉冲能量分布背景下,基于时间平均测试结果的涡轮平均效率与基于高频测试结果的涡轮循环平均效率之间的偏差,并提出了基于脉冲能量重量分布的匹配方法。此外,还研究了涡轴与涡轮的流通面积比对匹配的影响,以进一步优化涡轮匹配。最后,在发动机上测试了最优涡轮和原始涡轮,进一步证明了结果的准确性和合理性。结果表明,在保持同等氮氧化物排放量的情况下,发动机中高速区域的涡轮循环平均效率和发动机燃油经济性分别提高了约 2%-4% 和 0.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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