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Pumped thermal energy storage with heat pump-ORC-systems:Comparison of latent and sensible thermal storages for various fluids

机译:用热泵 - 兽人泵送热储能:各种流体潜伏和明智的热储存比较

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摘要

To compensate for the recurring daily fluctuations of the power generation of renewable energies, energy storage systems are necessary that are able to adjust the time shift of the power generation to the required load profiles with high numbers of cycles and high capacity. Due to their independence from geographical and geological requirements, Pumped Thermal Energy Storages (PTES) are a possible form of energy storage in system-relevant orders of magnitude for these requirements. Compared to electric resistance heaters, the round trip efficiency can be significantly improved by using a heat pump in the PTES. A further improvement occurs when low temperature waste heat from other processes or sources (such as solar or geothermal energy) is used for the heat pump. The use of most components of the heat pump for an Organic Rankine Cycle (ORC) for heat to power conversion drastically increases the cost efficiency of the storage concept, but requires both cycles to run on the same fluid. The goal of this work is to identify optimal fluids and operating parameters for the combined cycle. Both latent and sensible storage systems are considered for different fluids and are examined for their suitability for different operating conditions with a focus on the behaviour of cyclopentane, R1233zd(E), Novec 649 and R365mfc. The fluids and storage systems are evaluated by defining a reference case and by varying different parameters of this reference case. The simulations were performed using a custom Matlab (R) model and fluid data provided by REFPROP. With general conditions for small applications in the size of a demonstration plant with 20 kW electrical input power, power to power (eta(P2P)) efficiencies of over 80% are demonstrated. With simple sensible storage media, eta(P2P) efficiencies of 62% are achieved.
机译:为了弥补可再生能量的发电的经常性日常波动,能够将发电的时间转移调整为具有高循环和高容量的所需负载曲线的时间偏移。由于其独立性从地理和地质要求,泵送的热能存储(PTE)是这些要求的系统相关级的可能形式的能量存储。与电阻加热器相比,通过在PTE中使用热泵,可以显着提高往返效率。当来自其他过程或源(如太阳能或地热能)的低温废热用于热泵时,发生进一步的改进。使用大多数用于热泵的热泵组件用于有机朗肯循环(ORC)的热量转换大大增加了储存概念的成本效率,但需要循环在同一流体上运行。这项工作的目标是为组合循环识别最佳流体和操作参数。考虑潜伏和明智的储存系统,考虑不同的流体,并针对不同的操作条件检查它们的适用性,重点是环戊烷,R1233ZD(E),Novec 649和R365MFC的行为。通过限定参考案例并通过改变该参考案例的不同参数来评估流体和存储系统。使用自定义MATLAB(R)模型和由REFPROP提供的流体数据进行仿真。对于具有20千瓦电气输入功率的演示设备大小的小型应用的一般条件,对电源(ETA(P2P))效率超过80%的功率。通过简单的明智的存储介质,实现62%的ETA(P2P)效率。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|115940.1-115940.18|共18页
  • 作者单位

    Friedrich Alexander Univ Erlangen Nurnberg FAU Lehrstuhl Tech Thermodynam LTT Weichselgarten 8 D-91058 Erlangen Germany|Energie Campus Nurnberg Further Str 250 D-90429 Nurnberg Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Lehrstuhl Tech Thermodynam LTT Weichselgarten 8 D-91058 Erlangen Germany|Energie Campus Nurnberg Further Str 250 D-90429 Nurnberg Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Lehrstuhl Energieverfahrenstech EVT Further Str 244f D-90429 Nurnberg Germany|Energie Campus Nurnberg Further Str 250 D-90429 Nurnberg Germany;

    Friedrich Alexander Univ Erlangen Nurnberg FAU Lehrstuhl Tech Thermodynam LTT Weichselgarten 8 D-91058 Erlangen Germany|Energie Campus Nurnberg Further Str 250 D-90429 Nurnberg Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pumped thermal energy storage (PTES); Heat pump (HP); Organic Rankine Cycle (ORC); Fluid variation; Latent; Sensible;

    机译:泵送热能存储(PTES);热泵(HP);有机兰汀循环(ORC);流体变异;潜伏;明智的;

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