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Advanced Energy, Exergy, and Environmental (3E) Analyses and Optimization of a Coal-Fired 400 MW Thermal Power Plant

机译:燃煤400兆瓦火电厂的先进能源,漏极和环境(3E)分析和优化

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摘要

In this article, energy, exergy, and environmental (3E) analysis of a 400 MW thermal power plant is investigated. First, the components of the power plant are examined in terms of energy consumption, and subsequently the energy losses, exergy destruction, and exergetic efficiency are obtained. It is shown that the highest energy losses are in the closedfeedwater heaters Nos. 1 and 5 and the boiler with amounts of 7.6 × 10 J/s and 6.5 × 10~7 J/s, respectively. The highest exergy destruction occurs in the boiler and amounts to 4.13 × 10~8 J/s. The highest exergetic efficiency is 0.98 and is associated with the closed feedwater heaters Nos. 4 and 8. It is observed that the exergetic efficiency and exergy destruction in the boiler are the primarily affected by changes in the environmental temperature. Furthermore, by increasing the main pressure in the turbine, the load on the power plant is increased, and increasing the condenser pressure reduces the load on the power plant. In an environmental analysis, the production of pollutants such as SO_2 production and CO_2 emission has been investigated.
机译:在本文中,研究了400 MW火电厂的能量,漏洞和环境(3E)分析。首先,在能量消耗方面检查发电厂的部件,随后获得能量损失,漏洞破坏和举射效率。结果表明,最高能量损失在闭合水加热器中。锅炉中出现最高的漏斗,其量为4.13×10〜8 J / s。最高的前进效率为0.98,并且与封闭的进给水加热器No.4和8相关。观察到锅炉中的前进效率和高度破坏是受环境温度变化的主要影响。此外,通过增加涡轮机中的主压力,电厂上的负载增加,并且增加了冷凝器压力降低了电厂的负荷。在环境分析中,研究了污染物的生产,如SO_2生产和CO_2排放。

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