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A modal analysis technique for the on-line particle size measurement of pneumatically conveyed pulverized coal

机译:气力输送煤粉在线粒度测量的一种模态分析技术

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The knowledge of the particle size distribution of the pulverized coal used to fuel a fossil fuel power station is an important and useful parameter in the control and efficiency of power generation. However, to put this parameter to its most effective use, it is necessary to measure it on-line. An investigation conducted into techniques used for the on-line measurement of particle size distribution revealed a cost effective technique to achieve this goal. In short, it entails the measurement of the resonant vibrations or modes evoked in a structure when pneumatically conveyed particles collide with it. By analyzing the frequency spectra of these evoked vibrations or modes, variations in the size distribution of the particles colliding with the structure can be observed. The method is based on the principle that particles colliding with a structure cause that structure to start vibrating at its natural or resonant frequencies. Different sized particles cause different resonant frequencies of the structure to be exited or evoked. Thus, a variation in particle size distribution, will cause a variation in the amplitudes of the different resonant vibration peaks of the structure. By analyzing these peaks, variations in the particle size distribution can be monitored. Experimental testing and evaluation of the technique on a pilot plant proved it to be a very cost effective solution to the measurement problem. Extraction of the absolute particle size information from the complex vibration signals was accomplished using special parameter back-calculation techniques. A numerical/model-oriented approach using vector decomposition and a knowledge-based approach using neural networks allowed absolute particle size distribution to be determined.
机译:用于为化石燃料发电站提供燃料的煤粉粒度分布的知识是控制和提高发电效率的重要和有用的参数。但是,为了使该参数最有效地使用,必须对其进行在线测量。对用于在线测量粒度分布的技术进行的调查显示,实现该目标的成本有效的技术。简而言之,当气动输送的颗粒与其碰撞时,它需要测量结构中产生的共振振动或模态。通过分析这些诱发的振动或模式的频谱,可以观察到与结构碰撞的颗粒尺寸分布的变化。该方法基于这样的原理,即粒子与结构碰撞会导致该结构开始以其固有或共振频率振动。不同大小的粒子会导致结构的不同共振频率退出或诱发。因此,粒度分布的变化将导致结构的不同共振振动峰的振幅变化。通过分析这些峰,可以监测粒度分布的变化。在中试装置上对该技术进行的实验测试和评估证明,它是解决测量问题的非常经济有效的解决方案。使用特殊的参数反算技术可以从复杂的振动信号中提取绝对粒度信息。使用矢量分解的面向数值/模型的方法和使用神经网络的基于知识的方法可以确定绝对粒度分布。

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