Fluidization behavior of redox metal oxide and spinel particles to develop high-energy-density thermal energy storage system for concentrated solar power applications

IF 1.2 4区 工程技术 Q3 THERMODYNAMICS Journal of Thermal Science and Technology Pub Date : 2022-01-01 DOI:10.1299/jtst.22-00061
Genta Tsurumaki, Selvan Bellan, K. Matsubara, T. Kodama, Mitsuho Nakakura, Nobuyui Gokon, Hyun-Seok Cho, K. Mani, Sakthivel Shanmugasundaram
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氧化还原金属氧化物和尖晶石颗粒的流态化行为,开发用于聚光太阳能发电的高能量密度热储能系统
太阳能热化学储能系统利用太阳辐射的整个光谱来驱动吸热化学反应,在过去的几年里,在集中太阳能发电的应用中受到了极大的兴趣。白天将太阳辐射储存为化学能,可以在夜晚和阴天利用。在这些太阳热化学过程中,经常遇到化学反应和辐射参与的多相流在不同的制度。多相流的数值模拟减少了实验测试的时间和成本,有助于太阳能热化学反应器过程的优化。在本研究中,建立了Euler-Euler两相模型,分别研究了2:1氧化锰铁和尖晶石颗粒在热化学和显热储热系统中的流态化行为。为了验证该模型,建立了一个伪二维实验装置。对不同条件下的实验结果和数值结果进行了比较。分析了气体流量对流化性能的影响。
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来源期刊
CiteScore
2.30
自引率
8.30%
发文量
0
审稿时长
5 months
期刊介绍: JTST covers a variety of fields in thermal engineering including heat and mass transfer, thermodynamics, combustion, bio-heat transfer, micro- and macro-scale transport phenomena and practical thermal problems in industrial applications.
期刊最新文献
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