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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Simulation of the Transient Thermal Response of a High Pressure Selective Catalytic Reduction Aftertreatment System for a Tier Ⅲ Two-Stroke Marine Diesel Engine
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Simulation of the Transient Thermal Response of a High Pressure Selective Catalytic Reduction Aftertreatment System for a Tier Ⅲ Two-Stroke Marine Diesel Engine

机译:Ⅲ类二冲程船用柴油机高压选择性催化还原后处理系统的瞬态热响应模拟

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摘要

The IMO tier III legislation, applicable to vessels with a keel laying date from Jan. 1, 2016, has compelled engine builders to apply new technologies for NOx abatement. One of the most promising technologies for tier III compliance is the selective catalytic reduction (SCR) of nitrogen oxides (NOx). Despite that SCR technology has been applied in powerplants and heavy duty truck engines for years, there are challenges that stem from its applications in large two-stroke marine diesel engines. In this paper, an SCR model applicable to large two-stroke marine diesel engines is introduced. The goal of the model is to predict the thermal response of a marine SCR aftertreatment system when the engine undergoes transient loading. The model has been developed and validated using testbed measured data from a large two-stroke marine diesel engine. The output of the model is the SCR outlet temperature. It is shown that the model can accurately predict the transient inertial response of the SCR during engine acceleration, deceleration, and low load operation.
机译:IMO III级立法适用于从2016年1月1日起安放龙骨的船舶,这已迫使发动机制造商采用新技术来减少NOx。符合III级标准的最有前途的技术之一是氮氧化物(NOx)的选择性催化还原(SCR)。尽管SCR技术已在动力装置和重型卡车发动机中应用了多年,但仍存在于大型二冲程船用柴油机中的挑战。本文介绍了适用于大型二冲程船用柴油机的SCR模型。该模型的目的是预测发动机承受瞬态载荷时船用SCR后处理系统的热响应。该模型是使用大型两冲程船用柴油机的试验台测量数据开发并验证的。模型的输出为SCR出口温度。结果表明,该模型可以准确预测SCR在发动机加速,减速和低负荷运行过程中的瞬时惯性响应。

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