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Implementation of active noise control in a multi-modal spray dryer exhaust stack

机译:在多模式喷雾干燥器排气烟囱中实现主动噪声控制

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Tonal noise emitted from large-diameter spray dryer exhaust stacks used in the dairy industry can give rise to complaints from nearby communities. In many cases, the tone at the fan blade passing frequency is characterized by a frequency above the first mode cut on frequency of the exhaust stack and both its amplitude and the frequency are time varying. The variation in amplitude is a result of turbulence and temperature variations in the duct which cause angular variations in the nodal plane of modes with diametrical nodes. This in turn results in large fluctuations in sound pressure with time at any specified location in the duct, thus presenting a significant challenge for an ANC system with fixed control source and error sensor locations. In many food processing industries, the use of sound absorptive materials in silencers is not acceptable and, particularly when the fan speed is variable, it is difficult to achieve an acceptable passive solution at a reasonable cost. Here, the design and implementation of an active noise control system for tonal noise propagating above the cut-on frequency of the first higher order mode in large size cylindrical industrial exhaust stack is discussed, where the frequency and amplitude vary significantly and relatively rapidly with time. Physical system design principles and control algorithm optimization for a practical active noise control system are presented. Finally, real time control results which were achieved by a prototype installation on a large-diameter, in-service exhaust stack are given. Significant noise reductions were achieved in the community.
机译:乳制品行业使用的大直径喷雾干燥机排气烟囱发出的音调噪声可能引起附近社区的抱怨。在许多情况下,风扇叶片通过频率处的音调的特征在于高于烟囱的第一模式截止频率的频率,并且其幅度和频率均随时间变化。振幅的变化是管道中湍流和温度变化的结果,这些变化会导致带有直径节点的模的节点平面中的角度变化。这继而导致在管道中任何指定位置的声压随时间的较大波动,因此对于具有固定控制源和误差传感器位置的ANC系统提出了重大挑战。在许多食品加工业中,在消音器中使用吸音材料是不可接受的,尤其是当风扇速度可变时,很难以合理的成本获得可接受的无源解决方案。在此,讨论了用于在大型圆柱形工业排气烟囱中以一阶高阶模态的截止频率传播的音调噪声的有源噪声控制系统的设计和实现,其中频率和幅度随时间变化较大且相对较快。介绍了一种实用的主动噪声控制系统的物理系统设计原理和控制算法的优化。最后,给出了通过在大直径,运行中的排气烟囱上安装原型获得的实时控制结果。社区实现了显着的降噪。

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