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Full operating conditions optimization study of new co-generation heating system based on waste heat utilization of exhausted steam

机译:基于余热利用的新型热电联产供热系统全工况优化研究

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Utilizing the waste heat of exhausted steam in power plant as a new type of heat source is a key direction to achieve both energy-saving and clean urban heating. In order to recycle all the exhausted steam waste heat of multiple turbine units in designing condition, the authors' research group proposed a new cascade heating system with multi-heat source and applied it in several air cooling power plants in China. This paper focused on the system integration improving and operation strategy formulating, the main studies included: (1) Established the calculation model of system heating characteristics, and analyzed the problems about energy efficiency of system and safety of air cooled condenser in full operating conditions. (2) Introduced the "equivalent electricity of heating" as the evaluation method of comprehensive energy efficiency of the new co-generation heating system. (3) Improved the integration of heating system to further realize energy cascade utilization between turbine units. (4) Aiming at the improved heating system, the comprehensive optimization ideas of operational parameters in full operating conditions were put forward. By above methods, on one hand the "equivalent electricity of heating" of the new co-generation heating system is decreased by 16%, the comprehensive energy efficiency of system is improved, on the other the freezing risk of air cooled condenser is relieved, the operation safety of system is improved.
机译:利用电厂排汽余热作为新型热源,是实现节能和清洁城市供热的关键方向。为了在设计条件下回收多台涡轮机组的所有废蒸汽余热,作者的研究小组提出了一种新的具有多热源的级联供热系统,并将其应用于中国的几座空冷电厂。本文着眼于系统集成的改进和运行策略的制定,主要研究内容包括:(1)建立了系统供暖特性的计算模型,分析了系统在全运行条件下的能源效率和空冷冷凝器的安全性问题。 (2)引入了“热当量”作为新型热电联产供热系统综合能效的评价方法。 (3)改进了加热系统的集成,进一步实现了涡轮机组之间的能量级联利用。 (4)针对改进的供热系统,提出了在全工况下运行参数的综合优化思路。通过上述方法,一方面将新型热电联供系统的“加热当量”降低了16%,提高了系统的综合能效,另一方面减轻了风冷冷凝器的冻结风险;提高了系统的运行安全性。

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