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An energy and exergy analysis of a high-efficiency engine trigeneration system for a hospital: A case study methodology based on annual energy demand profiles

机译:医院高效发动机三联发电系统的能量和火用分析:基于年度能源需求概况的案例研究方法

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The efficient use of natural resources is an important contribution to the creation of a more sustainable world. Decentralized electricity production through trigeneration systems can save primary energy if these systems operate with a high energy utilization factor (EUF). A high EUF is obtained when the system produces electricity and a substantial amount of the energy rejected by the prime mover is used to meet on-site thermal demands. Energy consumption in buildings varies as the activity, climate and occupancy change at different hours of the day, days of the week, weather conditions and seasons. In this study an annual analysis of an engine trigeneration system is developed as an integrated thermal system (ITS) through a computational simulation program. The ITS simulation uses the characteristics of the system, characteristics of the individual pieces of equipment, design assumptions and parameters, off-design operating conditions, energy demands profiles of the site and climatic data to evaluate the system performance. The obtained results revealed an EUF between 58 and 77% and an exergy efficiency between 35 and 41 % for the system. The primary energy savings (PES) analysis showed that the proposed trigeneration system is better than the best available technology used in centralized thermal plants.
机译:有效利用自然资源是建立更可持续世界的重要贡献。如果三联发电系统以高能源利用率(EUF)运行,则分散发电可以节省一次能源。当系统发电并且原动机所排斥的大量能量用于满足现场热需求时,可以获得很高的EUF。建筑物的能耗随一天中的不同时段,一周中的几天,天气条件和季节的活动,气候和居住情况的变化而变化。在这项研究中,通过计算仿真程序将发动机三代发电系统的年度分析开发为集成热系统(ITS)。 ITS仿真使用系统的特性,单个设备的特性,设计假设和参数,非设计运行条件,现场的能源需求概况以及气候数据来评估系统性能。获得的结果表明该系统的EUF在58%到77%之间,火用效率在35%到41%之间。一次能源节省(PES)分析表明,建议的三代发电系统优于集中式热电厂中使用的最佳可用技术。

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