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Study on energy and economic benefits of converting a combined heating and power system to a tri-generation system for sewage treatment plants in subtropical area

机译:对亚热带地区污水处理厂将热电联产系统转换为三代系统的能源和经济效益的研究

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A feasibility study was conducted on converting an existing combined heat and power (CHP) system into a tri-generation system for sewage treatment plant application. Usually, a biogas-driven CHP is used for both electricity generation and digester heating. However, a huge amount of heat has to be released during the summer in subtropical areas when the heating demand is low. So the tri-generation system, created by enhancing the CHP scheme with an absorption chiller, was proposed to address the defect. In summer, the huge amount of waste heat drives the chiller and produces chilled water for space cooling. Four possible tri-generation retrofitting schemes were proposed with different types of absorption chiller. The hourly dynamic energy performances of the four systems were simulated by the established mathematic models under Hong Kong weather data. Then detailed economic analysis was conducted to the four systems. The results show that the double effect absorption chiller driven by bypass of 450 degrees C flue gas is the optimal retrofitting scheme for its highest thermal efficiency, shortest payback period, better stability and easier control. The annual average thermal efficiency can be improved from 20.8% to 38.3%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了可行性研究,将现有的热电联产(CHP)系统转换为用于污水处理厂的三代系统。通常,沼气驱动的热电联产用于发电和沼气池加热。然而,在夏季,当供热需求低时,在亚热带地区必须释放大量的热量。因此,提出了通过利用吸收式制冷机增强CHP方案而创建的三代系统,以解决该缺陷。在夏季,大量的废热驱使冷却器运转,并产生用于空间冷却的冷冻水。针对不同类型的吸收式制冷机,提出了四种可能的三代改造方案。根据香港天气数据下建立的数学模型,对这四个系统的每小时动态能源性能进行了模拟。然后对这四个系统进行了详细的经济分析。结果表明,以450℃烟气旁路驱动的双效吸收式冷水机具有最佳的热效率,最短的投资回收期,更好的稳定性和易于控制的特点,是一种最佳的改造方案。年平均热效率可以从20.8%提高到38.3%。 (C)2015 Elsevier Ltd.保留所有权利。

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