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Numerical Modelling and Experimental Characterization of a Pressure-Assisted Multi-Stream Injector for SCR Exhaust Gas After-Treatment

机译:用于SCR废气后处理压力辅助多流注射器的数值建模与实验表征

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Simulations for a pressure-assisted multi-stream injector designed for urea-dosing in a selective catalytic reduction (SCR) exhaust gas system have been carried out and compared to measurements taken in an optically accessible high-fidelity flow test rig. The experimental data comprises four different combinations of mass flow rate and temperature for the gas stream with unchanged injection parameters for the spray. First, a parametric study is carried out to determine the importance of various spray sub-models, including atomization, spray-wall interaction, buoyancy as well as droplet coalescence. Optimal parameters are determined using experimental data for one reference operating condition. The model is subsequently applied to all operating conditions with unaltered parameters and validated by means of the measured droplet velocity fields, droplet diameter distributions and spray-tip propagations which have been characterized by means of Particle Image Velocimetry (PIV), Phase Doppler Anemometry (PDA) and shadow imaging. Finally, the model is used to investigate in detail phenomena characteristic of inclined sprays in cross-flows. Effects such as formation of vortices behind the spray core for low cross flow velocities, greater entrainment of droplets at high flow rates as well as wall film dynamics and the interaction of droplets also with the side walls are discussed in detail, highlighting the importance of the respective phenomena at the different operating conditions.
机译:已经进行了在选择性催化还原(SCR)废气系统中设计用于尿素剂量的压力辅助多流注射器的模拟,并与光学偏转的高保真流量试验台中采取的测量相比。实验数据包括四种不同组合的质量流量和气体流的温度,用于喷射不变的注射参数。首先,进行参数研究以确定各种喷射子模型的重要性,包括雾化,喷射壁相互作用,浮力以及液滴聚结。使用实验数据进行最佳参数进行一个参考操作条件确定。随后将该模型应用于具有未嵌入参数的所有操作条件,并通过测量的液滴速度场,液滴直径分布和喷射尖端传播验证,所述液滴直径分布和喷射尖端传播已经表征了粒子图像速度(PIV),相位多普勒风速术(PDA )和阴影成像。最后,该模型用于详细研究交叉流动倾斜喷雾的特征。用于低交叉流速的喷雾芯背后的涡流形成的效果,在高流量速率下更大的螺母以及壁膜动力学以及液体薄膜动力学以及液滴的相互作用也详细介绍,突出了侧壁的重要性各种操作条件下的各自现象。

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