城市地区CHCP系统的发展:提高发电效率和减少二氧化碳排放的机会

M. Mobini, M. Bahrami, M. Zandi, R. Gavagsaz, A. Payman, M. Phattanasak, B. Nahid-Mobarakeh, S. Pierfederici
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引用次数: 1

摘要

全球变暖,能源需求的增加,化石燃料资源的枯竭,因此,更高的能源成本是明智的利用系统,这是更可靠和环保的关键因素。与此同时,分布式发电(DG),如可再生能源系统和热冷电联产系统(CHCP)工厂,在这方面发挥着重要作用。与传统发电厂的集中发电(CG)相比,DG网络中的CHCP系统提供更高效的能源发电,更少的燃料消耗,从而减少温室气体(GHG)排放。由于这些优点和产生各种高可靠性的副产品,热电联产系统在商业,工业和住宅领域等不同应用中受到赞赏。本文简要介绍了具有可用技术的CHCP系统作为DG的一种形式。此外,根据德黑兰某居民区的现状和未来扩建情况,对其电力需求进行了分析。然后,利用TRNSYS (Transient System Simulation Tool)软件对可用于空间加热或海水淡化过程的可回收余热进行建模。最后,根据仿真结果对节油效果和CO2减排效果进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of CHCP systems in urban areas: An opportunity to increase power generation efficiency and mitigate CO2 emission
Global warming, increasing of energy demand, depletion of fossil fuel resources and therefore, higher energy costs are the key factors that make wise utilizing systems, which are more reliable and environmentally friendly. Meanwhile distributed generation (DG), such as renewable energy systems and combined heating, cooling and power system (CHCP) plants, play an important role in this context. Compare to centralized generation (CG) in conventional power plants, CHCP systems in DG networks offer more efficient energy generation, less fuel consumption and thus, less greenhouse gases (GHG) emission. Due to these advantages and generating a variety of by-products with high reliability, cogeneration systems are appreciated in different applications such as commercial, industrial and residential areas. In this paper, CHCP systems with available technologies are briefly presented as a form of DG. In addition, electrical demand of a residential district of Tehran is analyzed according to the current status and future augmentation. Then, the recoverable waste heat which can be used in space heating or desalination process is modeled using TRNSYS (Transient System Simulation Tool) software. At last, the fuel saving and the CO2 abatement are evaluated according to the simulation results.
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