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Performance investigation of a cogeneration plant with the efficient and compact heat recovery system

机译:利用高效紧凑的热回收系统对热电联产电厂进行性能研究

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摘要

This paper presents the performance investigation of a cogeneration plant equipped with an efficient waste heat recovery system. The proposed cogeneration system produces four types of useful energy namely: (i) electricity, (ii) steam, (iii) cooling and (iv) dehumidification. The proposed plant comprises a Capstone C30 micro-turbine which generates 24 kW of electricity, a compact and efficient waste heat recovery system and a host of waste heat activated devices namely (i) a steam generator, (ii) an absorption chiller, (iii) an adsorption chiller and (iv) a multi-bed desiccant dehumidifier. The numerical analysis for the host of waste heat recovery system and thermally activated devices using FORTRAN power station linked to powerful IMSL library is performed to investigate the performance of the overall system. A set of experiments, both part load and full load, of micro-turbine is conducted to examine the electricity generation and the exhaust gas temperature. It is observed that energy utilization factor (EUF) could achieve as high as 70% while Fuel Energy Saving Ratio (FESR) is found to be 28%.
机译:本文介绍了配备有高效余热回收系统的热电联产电厂的性能研究。拟议的热电联产系统产生四种有用的能源,即:(i)电力,(ii)蒸汽,(iii)冷却和(iv)除湿。拟建的电厂包括一台可产生24千瓦电力的Capstone C30微型涡轮机,一个紧凑而高效的废热回收系统以及一系列废热激活设备,即(i)蒸汽发生器,(ii)吸收式冷却器,(iii )吸附式冷却器和(iv)多床干燥剂除湿机。使用链接到强大的IMSL库的FORTRAN电站对废热回收系统和热激活设备的主机进行了数值分析,以研究整个系统的性能。进行了一组微型涡轮机的部分负荷和满负荷实验,以检查发电量和废气温度。据观察,能源利用率(EUF)可以达到70%,而燃油节能率(FESR)为28%。

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