On the possibility of generation of cold and additional electric energy at thermal power stations


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A layout of a cogeneration plant for centralized supply of the users with electricity and cold (ECCG plant) is presented. The basic components of the plant are an expander-generator unit (EGU) and a vapor-compression thermotransformer (VCTT). At the natural-gas-pressure-reducing stations, viz., gas-distribution stations and gas-control units, the plant is connected in parallel to a throttler and replaces the latter completely or partially. The plant operates using only the energy of the natural gas flow without burning the gas; therefore, it can be classified as a fuelless installation. The authors compare the thermodynamic efficiencies of a centralized cold supply system based on the proposed plant integrated into the thermal power station scheme and a decentralized cold supply system in which the cold is generated by electrically driven vapor-compression thermotransformers installed on the user’s premises. To perform comparative analysis, the exergy efficiency was taken as the criterion since in one of the systems under investigation the electricity and the cold are generated, which are energies of different kinds. It is shown that the thermodynamic efficiency of the power supply using the proposed plant proves to be higher within the entire range of the parameters under consideration. The article presents the results of investigating the impact of the gas heating temperature upstream from the expander on the electric power of the plant, its total cooling capacity, and the cooling capacities of the heat exchangers installed downstream from the EGU and the evaporator of the VCTT. The results of calculations are discussed that show that the cold generated at the gas-control unit of a powerful thermal power station can be used for the centralized supply of the cold to the ventilation and conditioning systems of both the buildings of the power station and the neighboring dwelling houses, schools, and public facilities during the summer season.

作者简介

A. Klimenko

Moscow Power Engineering Institute (MPEI, National Research University)

Email: agababovvs@yandex.ru
俄罗斯联邦, Moscow, 111250

V. Agababov

Moscow Power Engineering Institute (MPEI, National Research University)

编辑信件的主要联系方式.
Email: agababovvs@yandex.ru
俄罗斯联邦, Moscow, 111250

P. Borisova

Moscow Power Engineering Institute (MPEI, National Research University)

Email: agababovvs@yandex.ru
俄罗斯联邦, Moscow, 111250

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