Cascade Latent Heat Storage for Solar Cooking Applications

Shubham Jain, K. R. Kumar, Dibakar Rakshit, B. Premachandran, K. S. Reddy
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Abstract

The present investigation explores the potential of multiple phase change material (PCM) based storage for real-time solar thermal applications. There are two types of storage configurations tested in this work for the simultaneous charging and discharging operation, i.e., single PCM-based NaNO3 storage and 2-stage cascade latent heat storage having NaNO3 and NaNO2 as the storage mediums in the consecutive stages. The storage is designed to achieve the end-use temperature condition of 513 K (the highest temperature required for cooking) with the latent thermal energy accumulation capacity of 1 MJ. The study envisages that instead of using a single PCM in the storage unit, 2-stage cascading of the PCMs can improve energy accumulation and retrieval in storage. After 8 hours of operation, none of the storage achieves the complete charging state. The energy accumulated in the NaNO3/NaNO2 cascade storage is found to be 2.6 times higher than the energy accumulated in the NaNO3 storage. NaNO3/NaNO2 storage achieves the desired constant outlet temperature of cold heat transfer fluid for chapati making (531 K) after 165 minutes of operation. At this moment, the latent energy accumulated in the NaNO3 and NaNO3/NaNO2 storage is observed as 35% and 14%, respectively
用于太阳能烹饪应用的级联潜热储存器
本研究探讨了基于多种相变材料(PCM)的储能在实时太阳能热应用中的潜力。本研究测试了两种同时充放电运行的储能配置,即基于 NaNO3 的单一 PCM 储能和以 NaNO3 和 NaNO2 作为连续级储能介质的两级级联潜热储能。该蓄热器的设计目标是达到 513 K 的最终使用温度条件(烹饪所需的最高温度),潜热蓄能能力为 1 兆焦耳。研究设想,在存储单元中不使用单一的 PCM,而是使用 PCM 的两级级联来改善存储中的能量积累和回收。运行 8 小时后,没有一个储能器达到完全充电状态。在 NaNO3/NaNO2 级联存储中积累的能量是在 NaNO3 存储中积累的能量的 2.6 倍。运行 165 分钟后,NaNO3/NaNO2 储能器达到了制作小面包所需的冷导热流体恒定出口温度(531 K)。此时,NaNO3 和 NaNO3/NaNO2 储能器中积累的潜能分别为 35% 和 14%。
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