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Thermodynamic feasibility study of a suggested portable personal micro trigeneration system based on micro-gas turbine and micro-absorption chiller

机译:基于微燃气涡轮机和微吸收冷却器的建议便携式个人微粒牵引系统的热力学可行性研究

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摘要

Combined cooling, heating and power (CCHP) which is also called trigeneration can be designed and manufactured in diverse scales and applications. In the present paper a single person portable micro CCHP system based on a micro-gas turbine and micro-absorption chiller is proposed and its performance is analyzed under different operational conditions. People under attack of war or natural disasters such as earthquake can use this system. A thermodynamic model is introduced to evaluate the personal energy demands at different ambient conditions. Then a micro-gas turbine is designed to produce 20 W electricity at speed of 200000 rpm and ambient temperature of 50 degrees C. In the next step the 500 W-class ultra-micro gas turbine (UMGT), is simulated as prime mover to estimate the cycle performance. LPG is the main fuel and the CCHP performance under extremely cold/hot weather is evaluated thermodynamically for three load management strategies. The maximum efficiency and minimum fuel consumption were related to the following hybrid electrical and thermal load strategy. In this case the maximum single-person CCHP efficiency was about 29% and fuel consumption was about 0.0645 gr.s(-1) of LPG at ambient temperature of 50 degrees C. The number of people who their energy demand was provided became maximum when following electrical load. The weight of the CCHP system is estimated to be less than 15 kg that is easily portable by a single grown person.
机译:也可以在不同的尺度和应用中设计和制造也称为TrigeLeration的组合冷却,加热和功率(CCHP)。在本文中,提出了一种基于微燃气涡轮机和微吸收冷却器的单人便携式微型CCHP系统,在不同的操作条件下分析其性能。受战争攻击的人或诸如地震等自然灾害可以使用该系统。引入热力学模型以评估不同环境条件下的个人能量需求。然后,微燃气轮机设计成以200000 rpm的速度和50℃的环境温度产生20W电力。在下一步中,500 W级超微气体涡轮机(UMGT)被模拟为主要动器估计循环性能。 LPG是主要燃料,在极冷/炎热天气下的CCHP性能对于三个负荷管理策略进行热力学地评估。最大效率和最小燃料消耗与以下混合电气和热负荷策略有关。在这种情况下,最大单人CCHP效率约为29%,燃料消耗约为0.0645 Gr.S(-1)LPG,环境温度为50℃。提供其能源需求的人数最大时电负载之后。 CCHP系统的重量估计小于15kg,易于通过单个生长的人携带。

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