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CFD Modeling of Tailpipe NOx Sensor Accuracy

机译:尾管NOx传感器精度的CFD建模

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In a modern diesel aftertreatment system, a sensor for nitrogen oxides (NOx) placed downstream of the selective catalytic reduction (SCR) catalyst is necessary to determine if the tailpipe NOx concentration remains below the applicable On-board diagnostic (OBD) threshold. Typically the same NOx sensor also provides feedback to the dosing control module to adjust diesel exhaust fluid (DEF) dosing rate thereby controlling tailpipe NOx and ammonia emissions. However, feedback signal sent by the tailpipe NOx sensor may not always be accurate due to reasons including non- uniformity in NOx and ammonia distributions at SCR outlet. Flow based metrics from computational fluid dynamics (CFD) analyses, that are typically used to qualitatively assess NOx sensor accuracy in different designs are often inadequate. In this work, an improved CFD analysis procedure has been developed for assessing NOx sensor accuracy. This approach enables a direct comparison of NOx sensor accuracy between different sampling probe and sensor designs. This improved modeling approach was first validated against test data without spray effects by injecting gaseous NOx in a 5" pipe. The impact of various numerical and geometrical sensitivities on model predictions was considered. Afterwards, studies were conducted to study the impact of non-uniformity of NOx and velocity distribution on sensor accuracy. Species distribution index (SDI) and hole and hole mass flow gamma (γ) were found to be useful metrics directly affecting NOx sensor accuracy. Lastly, the modeling approach was validated against test data on a representative aftertreatment system. Model predictions of sensor accuracy error were in agreement with test data (<5% error) at multiple operating points for two different sensor designs.
机译:在现代柴油后处理系统中,需要置于选择性催化还原(SCR)催化剂下游的氮氧化物(NOx)的传感器,以确定尾管NOx浓度是否保留在适用的车载诊断(OBD)阈值以下。通常,相同的NOx传感器还提供给定量控制模块的反馈,以调整柴油排气流体(DEF)给药速率,从而控制尾管NOx和氨排放。然而,由于在SCR出口处的NOx和氨分布中包括在NOx和氨分布中的原因,尾管NOx传感器发送的反馈信号可能并不总是准确。来自计算流体动力学(CFD)分析的流动度量,通常用于在不同设计中定性地评估NOx的传感器精度通常不足。在这项工作中,已经开发了一种改进的CFD分析程序,用于评估NOx传感器精度。这种方法能够直接比较不同采样探头和传感器设计之间的NOx传感器精度。这种改进的建模方法首先通过在5“管道中注入气态NOx而没有喷涂的测试数据进行验证。考虑了各种数值和几何敏感性对模型预测的影响。之后,进行研究以研究不均匀性的影响在传感器精度上的NOx和速度分布。物种分布指数(SDI)和孔和孔和空穴质量流γ(γ)是有用的指标,直接影响NOx传感器精度。最后,验证了模拟方法对代表的测试数据进行了验证后处理系统。传感器精度误差的模型预测与两个不同传感器设计的多个操作点的测试数据(<5%误差)一致。

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