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Investigation of discharge characteristics of a tri-generative system based on advanced adiabatic compressed air energy storage

机译:基于先进绝热压缩空气储能的三联产系统的排放特性研究

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摘要

The tri-generative system based on advanced adiabatic compressed air energy storage can simultaneously provide cooling energy, heating energy and mechanical energy. In order to study the discharge characteristics, three operation modes of expanders, which contain constant pressure, constant-sliding and sliding pressure, are proposed in this paper. By utilizing the numerical simulation method, the performance difference of three modes is compared with each other. The results show that four performance indexes of constant-sliding mode are all the biggest, which are respectively cycle efficiency 40.55%, thermal efficiency 80.06%, exergy efficiency 48.45% and exergy density 4.071 x 10(6) Jm(-3), and cooling capacity of it is also the strongest, 8.386 x 10(9) J, among the three operation modes. Air storage chamber has the largest exergy destruction. Operation process of air storage chamber is similar for three operation modes. Meanwhile, the effects of heat exchanger effectiveness, ambient pressure and air storage chamber model on system performance are also investigated.
机译:基于先进的绝热压缩空气储能的三发电系统可以同时提供冷却能,热能和机械能。为了研究排气特性,提出了膨胀机的三种工作模式,分别为恒压,恒滑和滑压。利用数值模拟方法,将三种模式的性能差异进行了比较。结果表明,恒定滑模的四个性能指标均最大,分别为循环效率40.55%,热效率80.06%,火用效率48.45%和火用密度4.071 x 10(6)Jm(-3),以及在三种运行模式中,它的制冷能力也最强,为8.386 x 10(9)J。储气室的最大火用破坏力。三种操作模式下储气室的操作过程相似。同时,研究了换热效率,环境压力和储气室模型对系统性能的影响。

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