首页> 外文期刊>Energy Reports >6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Active regulation for improving the off-design conditions of distributed combined cooling, heat and power system
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6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Active regulation for improving the off-design conditions of distributed combined cooling, heat and power system

机译:第六次国际能源与环境研究会议,ICEER 2019年7月22日至25日,Aveiro大学,葡萄牙主动调节,用于改善分布式综合冷却,热电系统的偏航条件

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This paper briefly introduces the characteristics of Distributed Combined?Cooling, Heating?and?Power (CCHP) System, and indicates that the off-design conditions are the root cause of the performance reduction of system. An active regulation method based on system performance improvement is proposed in this paper, including component regulation method at the unit equipment level and unit equipment regulation method at system level. In addition, the study focusing on the impact of energy storage active regulation at system level on system performance is performed on the 100?kW experimental platform. The experimental results show that: the active regulation method in all conditions of system, compared with conventional generation system, has a primary energy saving rate of 76%, and a relative energy saving rate of 29.5%, and the system performance is significantly improved.
机译:本文简要介绍了分布式组合的特点?冷却,加热?和?功率(CCHP)系统,并表示偏离设计条件是系统性能降低的根本原因。本文提出了一种基于系统性能改进的主动调节方法,包括在系统级别的单位设备水平和单位设备调节方法的组件调节方法。此外,在100 kW实验平台上进行了专注于在系统性能下系统级别的能量存储主动调节的影响。实验结果表明:与常规发电系统相比,系统的所有系统条件的主动调节方法,主要节能率为76%,相对节能率为29.5%,系统性能显着提高。

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