Simulation and parametric optimisation of thermal power plant cycles

P. Ravindra Kumar , V. Ramachandra Raju , N. Ravi Kumar
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引用次数: 18

Abstract

The objective of the paper is to analyse parametric studies and optimum steam extraction pressures of three different (subcritical, supercritical and ultra-supercritical) coal fired power plant cycles at a particular main steam temperature of 600 °C by keeping the reheat temperature at 537 °C and condenser pressure at 0.09 bar as constant. In order to maximize the heat rate gain possible with supercritical and ultra-supercritical steam conditions, eight stages of feed water heater arrangement with single reheater is considered. The system is optimized in such a way that the percentage exergetic losses are reduced for the increase of the exergetic efficiency and higher fuel utilization. The plant cycles are simulated and optimized by using Cycle Tempo 5.0 simulation software tool. From the simulation study, it is observed that the thermal efficiency of the three different power plant cycles obtained as 41.40, 42.48 and 43.03%, respectively. The specific coal consumption for three different power plant cycles are 0.56, 0.55 and 0.54 Tonnes/MWh. The improvement in feed water temperatures at the inlet of steam generator of respective cycles are 291, 305 and 316 °C.

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火电厂循环仿真与参数优化
本文的目的是通过保持再热温度为537°C,冷凝器压力为0.09 bar恒定,在特定的主蒸汽温度为600°C的情况下,分析三种不同(亚临界、超临界和超超临界)燃煤电厂循环的参数研究和最佳蒸汽萃取压力。为了最大限度地提高超临界和超超临界蒸汽工况下的热速率增益,考虑了单再热器的8级给水加热器布置。该系统经过优化,减少了耗能损失的百分比,从而提高了耗能效率和燃料利用率。利用Cycle Tempo 5.0仿真软件工具对植物周期进行模拟和优化。通过仿真研究可知,三种不同电厂循环的热效率分别为41.40、42.48和43.03%。三种不同电厂循环的具体煤耗分别为0.56、0.55和0.54吨/兆瓦时。各循环蒸汽发生器进口给水温度分别提高291℃、305℃和316℃。
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