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Thermodynamic, energy consumption and economic analyses of the novel cogeneration heating system based on condensed waste heat recovery

机译:基于冷凝废热回收的新型热电联供系统的热力学,能耗和经济分析

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摘要

In order to utilize the condensed waste heat of multi turbine units of cogeneration plant efficiently and simultaneously, a novel cogeneration heating system is proposed. Comparative analyses are made among the conventional cogeneration heating system, the absorption heat pump cogeneration heating system, the high backpressure cogeneration heating system and the novel cogeneration heating system from the aspects of thermodynamics, energy consumption and economy. The research objects are 2 x 300 MW water-cooling turbine units. The aim of the work is to point out the optimization direction of system integration for the novel cogeneration heating system by the thermodynamic analysis, and to reveal the actual heating energy consumption and the unit heating cost of the systems based on the method of equivalent electricity of heating. The study results show that the novel cogeneration heating system reasonably matches the extraction steam, the exhaust steam and the heating network water with each other at different energy levels. Therefore, it has evident advantages in the aspects of the thermodynamic perfection, the actual heating energy consumption and the economy. Compared with other systems, the novel cogeneration heating system increases the total exergy efficiency by 6.1-14.1%, reduces the equivalent electricity of heating by 11.1-29.4% and reduces the unit heating cost by 8.7-23.9%.
机译:为了有效并同时利用热电联产厂多台机组的冷凝余热,提出了一种新型的热电联产供热系统。从热力学,能耗和经济性等方面对常规热电联供供热系统,吸收式热泵热电联供供热系统,高背压热电联供供热系统和新型热电联供供热系统进行了比较分析。研究对象是2 x 300 MW水冷式涡轮机。本文的工作目的是通过热力学分析指出新型热电联供系统的系统集成优化方向,并基于等值电法揭示系统的实际加热能耗和单位加热成本。加热。研究结果表明,新型热电联产供热系统在不同的能量水平下合理地匹配了抽汽,排汽和供热网络中的水。因此,在热力学完善,实际加热能耗和经济性方面具有明显的优势。与其他系统相比,新型热电联产供暖系统的总火用效率提高了6.1-14.1%,加热当量电减少了11.1-29.4%,单位供热成本降低了8.7-23.9%。

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