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Field-scale investigation of pulverized coal mill power consumption

机译:油田规模的调查煤粉磨电力消耗

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Twenty field-scale tests were conducted in a 28 MW pulverized coal power plant in Healy, Alaska, to examine mill power consumption in relation to coal grind size. The intent in this field-scale study was to verify if grind size truly impacted power consumption by a detectable amount. The regression model developed from the data indicates that grind size does impact mill power consumption, with finer grinds consuming significantly more power than coarser grinds. However, other factors such as coal hardness (i. e., the lower the Hardgrove Grindability Index, or the harder the coal, the higher the power consumption) and mill throughput (i.e., the higher the throughput, the higher the power consumption) had to be included before the impact of grind size could be isolated. It was also observed that combining amperage and flow rate into a single parameter, i.e., specific amperage, hurt modeling. Cost analysis based on the regression model indicate a power savings of 19,972 dollars per year if the coal were ground to 50 percent passing 76 mu m rather than the industry standard of 70 percent passing 76 mu m. The study also demonstrated that size reduction constituted a significant portion of the power consumption.
机译:在28 MW二十油田规模进行了测试煤粉在希利电厂,阿拉斯加检查磨机能耗的关系煤磨的大小。研究验证如果磨尺寸真的受到影响能耗检测量。回归模型的数据表明磨尺寸并影响磨机功率消费,细磨消费实力明显多于粗磨。然而,其他因素,如煤炭硬度(我。e,降低Hardgrove可磨性指数煤或困难,功率越高消费)和轧机吞吐量(即更高的吞吐量,功率越高消费)必须包括之前的影响磨的大小可能是孤立的。观察到结合安培数和流量成一个单一的参数,即特定的安培数,伤害建模。回归模型表明权力储蓄每年19972美元如果煤炭通过76μm,而不是50%行业标准的70%通过76μm。研究还表明,规模减少构成了很大一部分的力量消费。

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