Dynamic Performance Analysis of Large-Scale Packed Bed Truncated Conical Thermal Energy Storage

Shobhana Singh, K. Sørensen
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Abstract

In the present paper, a high-temperature packed bed energy storage system of volume 175,000m3 is numerically investigated. The system is a underground packed bed of truncated conical shape, which comprises of rocks as a storage medium and air as a heat transfer fluid. A one-dimensional, two-phase model is developed to simulate the transient behavior of the storage. The developed model is used to conduct a parametric study with a wide range of design parameters to investigate the change in performance during both charging and discharging operation. Results show that the model satisfactorily predicts the dynamic behavior, and the truncated conical shaped storage with a rock diameter of 3cm, insulation thickness up to 0.6m and charging-discharging rate of 553kg/s leads to lower thermal losses and higher energy efficiencies. The paper provides useful insight into the transient performance and efficiency of a large-scale packed bed energy storage system within the range of parameters investigated.
大型填料床截锥形蓄热器动态性能分析
本文对容积为17.5万m3的高温填充床储能系统进行了数值研究。该系统是一个截断圆锥形的地下填充床,由岩石作为存储介质,空气作为传热流体组成。建立了一个一维两相模型来模拟储能系统的瞬态特性。所建立的模型用于进行参数化研究,研究了大范围的设计参数,以研究充放电过程中性能的变化。结果表明,该模型能较好地预测储层的动态特性,且岩石直径为3cm、保温厚度为0.6m、充放电速率为553kg/s的截锥形储层可以降低热损失,提高储能效率。本文对研究参数范围内的大型填充床储能系统的暂态性能和效率提供了有用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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