Study of the possibilities of using natural gas for cooling various coolant flows at combined heat and power plant

M. E. Orlov, E. S. Lytyakov, A. V. Kuz’min
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Abstract

The article discusses the application of two technologies for cooling different coolant flows at the CHP and makes a comparative assessment of their impact on the energy efficiency of the turbine plant. The first technology consists in cooling the feed water flow of the heating system, and the second technology is implemented by cooling the additional feed water of boilers. The technology of cooling the make-up water of the heating system provides for introducing a heat exchanger that would cool the make-up water before mixing it with the water of the heating system. The technology of cooling the additional feed water of boilers is implemented by introducing a heat exchanger downstream the deaerator, before feeding the water into the main condensate path. In both cases, in the heat exchanger, the cooling medium is natural gas supplied to the burners of boilers, and the heating medium is make-up or additional feed water. A comparative calculation of the energy efficiency indicators of technologies is performed using the method of specific electricity generation based on thermal consumption. During the calculations, the data obtained at an operating CHP plant and the temperature schedule of a heating network for the 2021 – 2022 heating season were used. Calculations were performed for a thermal power plant with a T-100-130 turbine. For the most accurate comparison of the effectiveness of the technologies under consideration, the source data were taken as close as possible, and the value of the make-up water and additional feed water consumption correspond to each other — for this reason, the heating season period was considered. The outdoor temperature values for the specified period were taken from the weather archive of a weather station. Comparative results of calculations of the efficiency indicators of the use of these technologies are presented, expressed in additional heating generation of electricity, in the economy of conventional fuel and in monetary terms over the heating period.
利用天然气冷却热电联产厂各种冷却剂流的可能性研究
本文讨论了两种冷却技术在热电联产中不同冷却流量的应用,并对其对汽轮电厂能效的影响进行了比较评估。第一种技术包括冷却加热系统的给水流量,第二种技术是通过冷却锅炉的附加给水来实现的。冷却加热系统的补给水的技术提供了一种热交换器,该热交换器在将补给水与加热系统的水混合之前将其冷却。在给水进入主冷凝水通道之前,通过在除氧器下游引入热交换器来实现锅炉附加给水的冷却技术。在这两种情况下,在热交换器中,冷却介质是供应给锅炉燃烧器的天然气,加热介质是补充或附加给水。采用基于热耗的特定发电量法,对各技术的能效指标进行了比较计算。在计算过程中,使用了在运行的热电联产厂获得的数据和供热网络2021 - 2022采暖季的温度表。对T-100-130型汽轮机的热电厂进行了计算。为了对所考虑的技术的有效性进行最准确的比较,源数据尽可能接近,并且补充水和额外给水消耗的值相互对应-因此,考虑了采暖季节。指定时段的室外温度值取自某气象站的天气档案。提出了使用这些技术的效率指标计算的比较结果,以额外的发热发电、传统燃料的经济性和在供暖期间的货币计算来表示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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