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District Heating Mode Analysis Based on an Air-cooled Combined Heat and Power Station

机译:基于风冷热电联产的区域供热模式分析

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As an important research subject, district heating with combined heat and power (CHP) has significant potential for energy conservation. This paper utilised a 200 MW air-cooled unit as an actual case and presented a design scheme and energy consumption analysis of three typical CHP modes, including the low vacuum mode (LVM), the extraction condensing mode (ECM), and the absorbing heat pump mode (AHPM). The advantages and disadvantages of each mode (including their practical problems) were analysed, and suggestions for the best mode were proposed. The energy consumption of the three heating modes changed with the heating load. When the heating load was increased, the net power of the entire system decreased to different degrees. In this paper, the energy conservation effect of the LVM was the most ideal, followed by the ECM and the AHPM. Besides, the LVM and AHPM were able to supply larger heat loads than the ECM, which was limited by the minimum cooling flow of the low pressure cylinder. Furthermore, in order to get a more general conclusion, a similar case with an air-cooled 300 MW unit is studied, showing that the fuel consumption levels of ECM and AHPM have changed.
机译:作为重要的研究课题,热电联产的区域供热在节能方面具有巨大潜力。本文以一个200 MW空冷机组为例,提出了三种典型的CHP模式的设计方案和能耗分析,包括低真空模式(LVM),萃取冷凝模式(ECM)和吸收热量。泵模式(AHPM)。分析了每种模式的优缺点(包括它们的实际问题),并提出了最佳模式的建议。三种加热方式的能耗随加热负荷而变化。当加热负荷增加时,整个系统的净功率会不同程度地降低。在本文中,LVM的节能效果最为理想,其次是ECM和AHPM。此外,LVM和AHPM能够提供比ECM更大的热负荷,这受到低压气缸最小冷却流量的限制。此外,为了得出更一般的结论,研究了一个类似的案例,该案例以风冷的300 MW机组为例,表明ECM和AHPM的燃油消耗量已发生变化。

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