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Preliminary assessment of waste heat recovery solution (ORG) to enhance the performance of Liquid Air Energy Storage system

机译:废热回收溶液(ORG)的初步评估增强液体空气储能系统的性能

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Liquid Air Energy Storage (LAES) is a novel energy storage system that stocks up energy by means of air liquefaction and recovers the cryogenic energy when required. The performance of LAES is actually limited both by the inefficiencies of liquefaction and discharge section leading to lower value of round trip efficiency compared to other energy storage solutions. This work investigates the thermodynamic feasibility of an integrated energy system consisting of a LAES system and Organic Rankine Cycle (ORC) in order to recover the waste heat released by the compression phase. To further improve the round trip efficiency of LAES. different integrated LAES-ORC system configurations have been modelled by means of the numerical software EES-Engineering Equation Solver v. 10, which allows to compute the thermo-physical properties of the working fluids throughout the whole cycles. The LAES-ORC integrated systems are compared in terms of different performance indices such electric power output, round trip efficiency of stand-alone and integrated systems and recover efficiency of ORC. Moreover, since the potential benefits of waste heat recovery by means of ORC introduces a new capital and operative cost, an economic analysis has been carried out in order to determine the impact of ORC introduction in LAES economy. The results show that a tight integration between LAES and ORC allows to significantly improve the round efficiency (up to 20%) and reduce the payback period of stand-alone LAES as high as 6 %.
机译:液体空气储能(Laes)是一种新型储能系统,可通过空气液化储存能量,并在需要时恢复低温能量。与其他能量存储解决方案相比,Laes的性能实际上受到液化和排出部分的低效率,导致往复跳闸效率的值较低。该工作调查了由Laes系统和有机朗肯循环(ORC)组成的集成能量系统的热力学可行性,以便回收压缩阶段释放的废热。进一步提高Laes的往返效率。通过数值软件EES-Engineering oquitation Solver v.10允许使用不同的集成Laes-Orc系统配置.10,其允许在整个周期中计算工作流体的热物理性质。在不同的性能指标如不同的电力输出,独立和集成系统的往复跳闸效率和兽人的恢复效率方面,比较了Laes-Orc集成系统。此外,由于废热恢复的潜在益处通过兽人引入了新的资本和手术成本,因此进行了经济分析,以确定兽人介绍在Laes经济中的影响。结果表明,Laes和ORC之间的紧密集成允许显着提高圆形效率(高达20%),并降低独立Laes的回收期高达6%。

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