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首页> 外文期刊>Drying technology: An International Journal >Energy and exergy analyses of a lignite-fired power plant integrated with a steam dryer at rated and partial loads
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Energy and exergy analyses of a lignite-fired power plant integrated with a steam dryer at rated and partial loads

机译:在额定电压和部分载荷的蒸汽干燥器中集成的褐煤发电厂的能量和暴风分析

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摘要

Lignite is a reliable raw energy material with abundant supply worldwide. However, the efficient use of lignite to generate power remains challenging, because lignite exhibits undesirable characteristics, including low heating value and high moisture content. Despite these disadvantages, the efficiency of lignite-fired power plants can be increased by predrying lignite. In this study, a predried lignite-fired power plant, which uses steam extracted from steam turbines as a heat source to dry lignite, was simulated using Aspen Plus. This study then analyzed the performance of the predried lignite-fired power plant at rated and partial loads on the basis of the thermodynamics principles. This study also examined the influence of lignite predrying on the exergy losses and destructions of the power plant components. Results indicate that the exergy destructed the combustion process decreases significantly because of lignite predrying, by 5.78 percentage points. The plant thermal efficiency based on the lower heating value of raw lignite relatively increases by 4.35%. The efficiency improvement of the power plant reduces as the load ratio decreases, because exergy is destructed in the admission opening, which is used to control the pressure of the steam leading to the dryer. The integration of the dryer saves energy only when the load ratio is 50%.
机译:褐煤是一种可靠的原料能源材料,全球供应丰富。然而,褐煤的有效利用产生功率仍然具有挑战性,因为褐煤表现出不希望的特征,包括低加热值和高水分含量。尽管存在这些缺点,但可以通过预先磨削褐煤来增加褐煤发电厂的效率。在本研究中,使用Aspen Plus模拟了使用从蒸汽涡轮机中提取的蒸汽涡轮机提取的蒸汽的燃烧的燃烧发电厂。然后,本研究分析了在热力学原理的基础上以额定褐煤发电厂的性能和部分负载的性能。本研究还检测了褐煤预测对电厂组件的漏洞损失和破坏的影响。结果表明,由于褐煤预测,燃烧过程的燃烧过程明显降低了5.78个百分点。基于原料褐煤的较低加热值的植物热效率相对增加4.35%。电厂的效率改善随着负荷比降低而降低,因为在进行中被破坏,用于控制通向干燥器的蒸汽的压力。烘干机的整合只有当负载比为50%时才节省能量。

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