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Design and comparative exergy and exergo-economic analyses of a novel integrated Kalina cycle improved with fuel cell and thermoelectric module

机译:用燃料电池和热电模块改进了一种新型集成的Kalina循环的设计和比较且exergo-经济分析

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Combined cooling, heating, and power systems (CCHP) have attracted a lot of attention due to their distinctive advantages of high system and economic efficiencies in addition to less greenhouse gas emissions. The current study investigates the performance of a Kalina cycle-based CCHP system in which geothermal energy is utilized as the low temperature source of prime energy. A thermoelectric generator is used in the system for retrieving wasted heat and producing extra amount of electricity thereby leading to higher overall efficiency. Two types of fluids, i.e. geothermal water and mixture of water-ammonia, are employed for the steam cycle and Kalina cycle, respectively. A comparative performance analysis is carried out on three system configurations, namely; basic Kalina cycle system, Kalina cycle with a thermoelectric generator (TEG), and Kalina cycle integrated with TEG and a Proton Exchange Membrane Fuel Cell (PEMFC). The results demonstrated that employing TEG increases the output power by 25.1 kW and improves cycle efficiency by 1.7%. Moreover, integrating both TEG and PEMFC increases the net output power of the proposed system to 1101 kW, which is 993.2 kW and 971.7 kW higher than the basic Kalina cycle system and the Kalina cycle system coupled with the TEG respectively. In addition, the exergy analysis of each component in the system showed that the condenser has the most exergy destruction. Multi-criteria optimization is applied to seek the optimum operation condition of the proposed system. The net output power and electricity cost were used as two critical optimization targets. An optimum condition of the system is suggested using the concept of ideal point on the Pareto front plot.
机译:除了温室气体排放量较少的温室气体排放之外,由于它们的独特优势,较低的冷却,加热和动力系统(CCHP)也引起了很多关注。目前的研究调查了基于Kalina循环的CCHP系统的性能,其中地质能量被用作隆起的低温源。在系统中使用热电发电机用于检索浪费的热量并产生额外的电量,从而导致更高的整体效率。两种类型的液体,即水氨的地热水和水混合物,分别用于蒸汽循环和Kalina循环。在三种系统配置中进行了比较性能分析,即;基本Kalina循环系统,Kalina循环与热电发电机(TEG)和与TEG集成的Kalina循环和质子交换膜燃料电池(PEMFC)。结果表明,采用TEG将输出功率提高25.1kW,并提高循环效率1.7%。此外,整合TEG和PEMFC将所提出的系统的净输出功率增加到1101千瓦,其比基本Kalina循环系统高993.2千瓦和971.7千瓦,分别与TEG耦合的Kalina循环系统。此外,系统中每个组件的漏洞分析表明,冷凝器具有最大的破坏。应用多标准优化来寻求所提出的系统的最佳运行条件。净输出功率和电力成本用作两个关键优化目标。建议使用Pareto前图上理想点的概念来建议系统的最佳条件。

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