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Measurement of the Mass Flow and Velocity Distributions of Pulverized Fuel in Primary Air Pipes Using Electrostatic Sensing Techniques

机译:使用静电感应技术测量一次风管道中粉状燃料的质量流量和速度分布

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摘要

On-line measurement of pulverized fuel (PF) distribution between primary air pipes on a coal-fired power plant is of great importance to achieve balanced fuel supply to the boiler for increased combustion efficiency and reduced pollutant emissions. An instrumentation system using multiple electrostatic sensing heads are developed and installed on 510 mm bore primary air pipes on the same mill of a 600 MW coal-fired boiler unit for the measurement of PF mass flow and velocity distributions. An array of electrostatic electrodes with different axial widths is housed in a sensing head. An electrode with a greater axial width and three narrower electrodes are used to derive the electrostatic signals for the determination of PF mass flow rate and velocity, respectively. The PF velocity is determined by multiple cross-correlation of the electrostatic signals from the narrow electrodes. The measured PF velocity is applied on the root-mean-square magnitude of the measured electrostatic signal from the wide electrode for the calibration of PF mass flow rate. On-plant comparison trials of the developed system were conducted under five typical operating conditions after a system calibration test. Isokinetic sampling equipment is used to obtain reference data to evaluate the performance of the developed system. Experimental data demonstrate that the developed system is effective and reliable for the on-line continuous measurement of the mass flow and velocity distributions between the primary air pipes of the same mill.
机译:在线测量燃煤电厂一次空气管道之间的粉状燃料(PF)分布对于实现锅炉平衡燃料供应以提高燃烧效率和减少污染物排放至关重要。开发了一种使用多个静电感应头的仪器系统,并将其安装在600 MW燃煤锅炉机组同一工厂的510毫米口径一次空气管道上,用于测量PF质量流量和速度分布。具有不同轴向宽度的静电电极阵列容纳在感测头中。使用具有较大轴向宽度的电极和三个较窄的电极分别导出静电信号,以确定PF质量流量和速度。 PF速度由来自窄电极的静电信号的多重互相关确定。将测得的PF速度应用于来自宽电极的测得的静电信号的均方根值,以校准PF质量流量。经过系统校准测试后,在五个典型操作条件下进行了开发系统的工厂内比较试验。等速采样设备用于获取参考数据,以评估所开发系统的性能。实验数据表明,所开发的系统对于在线连续测量同一磨机的一次空气管道之间的质量流量和速度分布是有效且可靠的。

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