The Influence of Throughput on Thermodynamic Efficiencies of a Thermal Power Plant

A. Anozie, P. Ayoola
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引用次数: 7

Abstract

This study carried out energy and exergy analyses of a thermal power plant in order to evaluate the energetic and exergetic efficiencies and irreversibilities of units, sections and the overall sys tem. It was also, to determine the optimu m fuel-air rat io and optimu m co mbustion temperature at different throughputs. The thermal p lant consisting of 23 units and 4 sections was simulated using HYSYS simu lation software and EXCEL spreadsheet. The EXCEL spreadsheet was used for the energy and exergy analyses. It was found that throughput did not influence the energy efficiencies of the units but the exergy efficiencies. Throughput did not influence the energy and exergy efficiencies of the sections. The overall energetic efficiencies of the p lant were 18.17, 19.79, 21.42, and 21.45% and the overall exergetic efficiencies were 10.26, 11.22, 11.58, and 11.61% for throughputs of 50, 75, 100 and 110%, respectively. The overall irreversibilities of the plant increased as the throughput increased. The optimu m fuel-to-air ratio which gave the optimu m co mbustion temperature in the furnace was found to be 1:12.6 for all the throughputs which was an improvement over the current practice of 1:19.8. Throughput did not influence the maximu m co mbustion temperature in the fu rnace.
火力发电厂吞吐量对热力效率的影响
本研究对某火电厂进行了能量和火用分析,以评估机组、部分和整个系统的能量和火用效率和不可逆性。确定了不同排量下的最佳燃料空气比和最佳燃烧温度。采用HYSYS仿真软件和EXCEL电子表格对由23个机组、4个工段组成的热电厂进行了模拟。使用EXCEL电子表格进行能量和用能分析。研究发现,吞吐量对机组的能量效率没有影响,但对火用效率有影响。吞吐量不影响能量和火用效率的部分。在吞吐量为50、75、100和110%时,植物的总能效率分别为18.17、19.79、21.42和21.45%,总能效率分别为10.26、11.22、11.58和11.61%。工厂的总体不可逆性随着产量的增加而增加。最佳的燃料-空气比使炉内的最佳燃烧温度为1:12.6,这比目前1:19.8的做法有所改进。产量对炉内最高燃烧温度没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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