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首页> 外文期刊>International journal of green energy >Performance investigation of lab-scale sensible heat storage prototypes
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Performance investigation of lab-scale sensible heat storage prototypes

机译:实验室规模明智的蓄热原型的性能调查

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This paper presents the performance investigation of three lab-scale solid sensible heat storage (SHS) prototypes. The prototypes analyzed are of shell-and-tube type configuration, in which the SHS material is kept in the shell region and the heat transfer fluid (HTF) is allowed to pass through the tubes. Thermal performances such as complete and effective charging/discharging times, and energy storage/retrieval rate of three different prototypes viz., cast steel prototype (termed as M1), concrete prototype with copper finned tubes (termed as M2) and concrete prototype with mild steel finned tubes (termed as M3) designed for a storage capacity of 15?MJ each are studied. The thermal gradient (?T) between the heat transfer fluid (HTF) and the storage prototype is fixed as 60?K (for M1) and 80?K (for M2 & M3). The performance of the heat storage prototype is simulated employing a finite element based 3-D mathematical model and solved using COMSOL Multiphysics 4.3a. The developed model is validated with the experimentally measured temperature data extracted from the in-house lab scale experimental prototype. The charging/discharging time of the cast steel (M1) prototype in the temperature range of 353?413?K is 1106/1572?s. The effective charging/discharging time of the concrete prototypes, M2 and M3 in the temperature range of 353?423?K are 4371/5196 s and 6155/6360?s, respectively. The total amount of energy stored/retrieved in M1 and M2/M3 prototypes at the respective charging/discharging times are 15?MJ and 14.06 MJ, respectively.
机译:本文介绍了三种实验室稳定稳固蓄热(SHS)原型的性能调查。分析的原型是壳管型构造,其中SHS材料保持在壳区域中,并且允许传热流体(HTF)穿过管。诸如完整且有效的充电/放电时间的热性能,以及三种不同原型的能量存储/检索率,铸钢原型(称为M1),混凝土原型与铜翅片管(称为M2)和混凝土原型与温和的混凝土原型研究了专为储存容量为15Ωmj的钢翅片管(称为M3)。传热流体(HTF)和储存原型之间的热梯度(ΔT)固定为60?K(对于M1)和80〜K(用于M2&M3)。蓄热原型的性能模拟采用基于有限元的3-D数学模型,并使用COMSOL MultiphySics 4.3a解决。开发的模型通过从内部实验室规模实验原型提取的实验测量的温度数据进行了验证。铸钢(M1)原型的充电/放电时间在353〜413Ω·k的温度范围内为1106/1572. 353Ω·423Ω·k的温度范围内的混凝土原型,M2和M3的有效充电/放电时间分别为4371/5196秒和6155/6360. s。在相应充电/放电时间的M1和M2 / M3原型中存储/检索的总量分别为15?MJ和14.06 MJ。

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