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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermodynamic and economic analysis of a micro-combined polygeneration system coupled with solar energy and fuels for distributed applications
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Thermodynamic and economic analysis of a micro-combined polygeneration system coupled with solar energy and fuels for distributed applications

机译:微综合多结型系统的热力学和经济分析,加上太阳能和分布式应用的燃料

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A novel micro-combined polygeneration system based on solar energy and fuels is designed with aim to simultaneously satisfy energy demands of electricity, heating and cooling in distributed areas. Integration solar radiation with conventional natural gas-fired power systems is conceived to eliminate existing disadvantages of low efficiency and high cost for fuel-only and solar-only plants. Thermodynamic and economic analyses are evaluated to explore performance of proposed systems with three working fluids. Energetic and exergic efficiencies are individually 0.839 and 0.4536, 0.8721 and 0.5852, and 0.8656 and 0.5825 for N-2-, He- and Ar-based micro-combined systems under specified power capacity of 100 kW. Solar collector field, compressor, turbine and combustion chamber exhibit four largest exergy destruction, followed orderly by heat exchanger, generator, condenser, evaporator, throttling valve and pump. Preliminary economic analysis indicates that levelized electricity costs of N-2-, He- and Ar-based micro-combined systems are 0.112, 0.103 and 0.101 $ kWh(-1) with corresponding payback periods of 4.563, 5.090 and 5.138 years. Parametric analysis reveals that five operating parameters (compression ratio, turbine inlet temperature, solar collector field outlet temperature, generator outlet temperature and split ratio) exert noticeable influence on thermal efficiency of micro-combined systems. In conclusion, proposed micro-combined polygeneration system achieves efficient conversation of thermal energy into electricity, heating and cooling at a rational energy utilization for distributed areas.
机译:设计了一种基于太阳能和燃料的新型微联合多联产系统,旨在同时满足分布式区域的电、热、冷能源需求。将太阳辐射与传统的天然气发电系统相结合,旨在消除纯燃料和纯太阳能发电厂效率低、成本高的缺点。通过热力学和经济性分析,探讨了三种工质系统的性能。在规定功率容量为100 kW的情况下,基于N-2-、He-和Ar的微型组合系统的能量效率和(火用)效率分别为0.839和0.4536、0.8721和0.5852,以及0.8656和0.5825。太阳能集热器场、压缩机、涡轮机和燃烧室的火用破坏最大,其次是换热器、发电机、冷凝器、蒸发器、节流阀和泵。初步经济分析表明,基于N-2-、He-和Ar的微型组合系统的平准化电力成本分别为0.112、0.103和0.101美元kWh(-1),相应的投资回收期分别为4.563、5.090和5.138年。参数分析表明,五个运行参数(压缩比、涡轮进口温度、太阳能集热器磁场出口温度、发电机出口温度和分流比)对微组合系统的热效率有显著影响。综上所述,提出的微联合多联产系统在合理利用分布式区域能源的情况下,实现了热能高效转化为电能、供暖和制冷。

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