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Energy- and Exergy-Based Analysis for Reducing Energy Demand in Heat Processes for Aluminum Casting

机译:基于能量和火用的分析,以减少铸铝热过程中的能源需求

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In this paper, energy- and exergy-based analysis is used to analyze a factory with high energy demand for the production of aluminum discs. The analysis is focused on heat processes that take place in a melting furnace, a casting machine, a heat treatment oven, and a drying oven. Energy and exergy efficiencies are computed to assess the room for the improvement of the energy efficiency processes. The analysis shows that a large amount of energy is lost due to heat losses to the environment, and solutions for reducing energy demand and emissions have been identified. Instead of changing the equipment of a factory, significant improvements and consequent reduction of fossil fuels consumption can be obtained by increasing the thermal insulation of some components and by means of waste heat recovery performed by heat exchangers, with a consequent energy demand reduction of 15%.
机译:在本文中,基于能量和火用的分析被用于分析一家生产铝盘的能源需求很高的工厂。分析的重点是在熔化炉,铸造机,热处理炉和干燥炉中进行的热处理。计算能效和火用效率以评估改善能效过程的空间。分析表明,由于热量向环境的损失,大量的能量损失了,并且已经确定了减少能源需求和排放的解决方案。通过提高某些组件的隔热性以及通过热交换器进行废热回收,可以显着改善并减少化石燃料的消耗,而无需更换工厂的设备,从而使能源需求减少了15% 。

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