A Thermal Response Analysis on the Transient Performance of Active Diesel Aftertreatment

M. Zheng, G. Reader, Dong Wang, J. Zuo, Raj Kumar, M. Mulenga, U. Asad, D. Ting, Meiping Wang
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引用次数: 11

Abstract

Diesel fueling and exhaust flow strategies are investigated to control the substrate temperatures of diesel aftertreatment systems. The fueling control includes the common-rail post injection and the external supplemental fuel injection. The post injection pulses are further specified at the early, mid, or late stages of the engine expansion stroke. In comparison, the external fueling rates are moderated under various engine loads to evaluate the thermal impact. Additionally, the active-flow control schemes are implemented to improve the overall energy efficiency of the system. In parallel with the empirical work, the dynamic temperature characteristics of the exhaust system are simulated one-dimensionally with in-house and external codes. The dynamic thermal control, measurement, and modeling of this research intend to improve the performance of diesel particulate filters and diesel NOx absorbers.
活性柴油机后处理瞬态性能热响应分析
研究了控制柴油后处理系统基材温度的柴油加注和排气策略。燃油控制包括共轨后喷和外补喷。后喷射脉冲在发动机膨胀冲程的早期、中期或后期阶段进一步指定。相比之下,在不同的发动机负载下,外部燃料速率被缓和,以评估热影响。此外,为了提高系统的整体能源效率,采用了主动流量控制方案。在进行经验工作的同时,利用内部和外部代码对排气系统的动态温度特性进行了一维模拟。本研究的动态热控制、测量和建模旨在改善柴油微粒过滤器和柴油氮氧化物吸收器的性能。
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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