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Study on a novel co-operated heat and power system for improving energy efficiency and flexibility of cogeneration plants

机译:一种新型合并电力系统,提高能源效率和热电厂的灵活性

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The power adjustment capacity of cogeneration power plants decreases while heating, which severely curtails wind power generation in northern China during winter. This article describes a new system, called the cooperated heat and power system (CoHP), which greatly increases the adjustment capacity while maintaining the maximum heat output and high thermal efficiency of cogeneration plants. The system includes a low-temperature storage tank, high-temperature storage tank, and electric heat pumps. Surplus power during valley hours is used to produce and store high- and low-temperature water; the stored water is released to increase the power output of the generator during peak hours. A model is built for simulation and analysis. The CoHP system is applied to a 300-MW water cooled cogeneration plant. Results show that the system has a power adjustment capacity of 156 MW and storage efficiency of 60.2%. Waste heat from the exhausted steam continues to be fully recovered such that the thermal efficiency has a high value of 87.3%. The electric efficiency is 26.9%, which is lower than the efficiency of the benchmark system (29.2%). The effects of the heating network temperature, temperature difference of heat transfer, and adiabatic efficiency of the compressor are also analyzed. The use of a CoHP system is an effective way of increasing both the energy efficiency and flexibility of cogeneration plants and the system can be widely applied in China.
机译:热电联产电厂的功率调整能力在加热时降低,这在冬季期间严重限制了中国北方风力发电。本文介绍了一种新的系统,称为合作的热量和电力系统(COHP),其大大提高了调节能力,同时保持了热电厂的最大热输出和高热效率。该系统包括低温储罐,高温储罐和电热泵。山谷时间剩余电力用于生产和储存高温和低温的水;释放储存的水以在高峰时段增加发电机的功率输出。建立模型用于仿真和分析。 COHP系统应用于300 MW水冷热电联产厂。结果表明,该系统的功率调节容量为156 MW,储存效率为60.2%。来自耗尽的蒸汽的废热继续完全回收,使得热效率高87.3%。电效率为26.9%,低于基准系统的效率(29.2%)。还分析了加热网络温度,传热温度差和压缩机的绝热效率的影响。使用COHP系统是一种有效的方法,即增加热电联产厂的能效和灵活性,系统可广泛应用于中国。

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