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Efficient simulation strategy for PCM-based cold-energy storage systems

机译:基于PCM的冷能量存储系统的高效仿真策略

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摘要

This paper proposes a computationally efficient simulation strategy for cold thermal energy storage (TES) systems based on phase change material (PCM). Taking as a starting point the recent design of a TES system based on PCM, designed to complement a vapour-compression refrigeration plant, the new highly efficient modelling strategy is described and its performance is compared against the pre-existing one. The need for a new computationally efficient approach comes from the fact that, in the near future, such a TES model is intended to be used in combination with the model of the own mother refrigeration plant, in order to address efficient, long-term energy management strategies, where computation time will become a major issue. Comparative simulations show that the proposed computationally efficient strategy reduces the simulation time to a small fraction of the original figure (from around 1/30th till around 1/120th, depending on the particular choice of the main sampling interval), at the expense of affordable inaccuracy in terms of the PCM charge ratio.
机译:本文提出了基于相变材料(PCM)的冷热能量存储(TES)系统的计算有效的仿真策略。作为一个起始点,最近的基于PCM的TES系统设计,设计用于补充蒸气压缩制冷设备,描述了新的高效建模策略,并将其性能与预先存在的策略进行了比较。对新的计算有效方法的需求来自于,在不久的将来,这种TES模型旨在与自己母亲制冷厂的模型结合使用,以解决有效,长期的能量管理策略,计算时间将成为一个主要问题。比较仿真表明,所提出的计算有效策略将模拟时间降低到原始数字的一小部分(从大约1/30到大约1/12,这取决于主要采样间隔的特定选择),以实惠的代价在PCM充电比率方面不准确。

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