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Fuel Utilization Monitoring Techniques for Large-Capacity Combined-Cycle Power Plants

机译:大容量联合循环发电厂的燃料利用监测技术

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摘要

Abstract— A technique for calculating the standardized indicators characterizing the thermal efficiency of combined-cycle power plants (CCPPs) using correlation equations linking the values of these indicators with different external conditions is proposed. The correlation equations were written using the results from measuring the outdoor air and cooling water temperatures; air barometric pressure and humidity; fuel (natural gas) flowrate, heating value, and density and load in steady-state operation modes of the CCPPs and their equipment. It is usually sufficient to have a sample with three groups each representing 15–20 operating modes: under winter conditions at an outdoor air temperature of –20 to –30°С, under summer conditions at an outdoor air temperature of above 20 to 30°С, and at an intermediate temperature of ±5 to ±7°С. In each group, it is sufficient to have two operating modes each with loads close to 0.5, 0.6, 0.7, 0.8, and 0.9 of the maximal value, and 5–10 operating modes with a close-to-nominal load. It is shown, taking a single-shaft 400 MW CCPP as an example, that the correlation equations adequately (with errors equal to approximately 1%) describe the results obtained experimentally in the normal operation modes. The developed technique opens the possibility to determine, in a more accurate and simple manner, the standardized heat rates and other technical-economic indicators of fuel utilization without using an excessive number of corrections able to distort the result. The technique can also be used for estimating the changes of CCPP indicators as a result of taking some or other measures in them.
机译:摘要—提出了一种利用相关方程将这些指标的值与不同外部条件联系起来的,用于计算联合循环电厂热效率的标准化指标的技术。使用测量室外空气和冷却水温度的结果来编写相关方程。大气气压和湿度; CCPP及其设备稳态运行模式下的燃料(天然气)流量,热值以及密度和负荷。通常,具有三个代表15-20个工作模式的样本组就足够了:在室外温度为–20至–30°С的冬季条件下,在室外温度为20至30°C以上的夏季条件下的样品С,且中间温度为±5到±7°С。在每个组中,有两个工作模式,每个工作模式的负载接近最大值的0.5、0.6、0.7、0.8和0.9,以及接近名义负载的5-10个工作模式就足够了。以单轴400 MW CCPP为例,可以看出,相关方程式(误差大约等于1%)足以描述在正常运行模式下通过实验获得的结果。所开发的技术使人们有可能以更准确,更简单的方式确定标准化的热效率以及燃料利用的其他技术经济指标,而无需使用过多的校正方法,而不会使结果失真。由于在其中采取了一些措施或其他措施,该技术还可用于估计CCPP指标的变化。

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