典型文献
High-temperature Thermal Properties and Wear Behavior of Basalt as Heat Storage Material for Concentrated Solar Power Plants
文献摘要:
The microstructures, components, thermal stability, specific heat capacity and thermal conductivity of basalt sample were studied. Besides, as a comprehensive result of thermal expansion and contraction process, both the friction coefficient and wear rate of the basalt sample were also characterized. Our results indicate that basalt is an excellent candidate to be used as thermal energy storage material for concentrated solar power plants, and also provide a strategy for solar energy utilization in volcanic area with excellent geographical environment.
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作者姓名:
LIAO Jun;ZHU Xupeng;LI Jianan;XUE Shuwen;ZOU Changwei;ZHANG Jun
作者机构:
School of Physics Science and Technology,Lingnan Normal University,Zhanjiang 524048,China
文献出处:
引用格式:
[1]LIAO Jun;ZHU Xupeng;LI Jianan;XUE Shuwen;ZOU Changwei;ZHANG Jun-.High-temperature Thermal Properties and Wear Behavior of Basalt as Heat Storage Material for Concentrated Solar Power Plants)[J].武汉理工大学学报(材料科学版)(英文版),2022(04):547-553
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B类:
High,temperature,Thermal,Properties,Wear,Behavior,Basalt,Heat,Storage,Material,Concentrated,Solar,Power,Plants,microstructures,components,thermal,stability,specific,heat,capacity,conductivity,basalt,sample,were,studied,Besides,comprehensive,expansion,contraction,process,both,friction,coefficient,wear,also,characterized,Our,results,indicate,that,is,excellent,candidate,be,used,energy,storage,material,concentrated,solar,power,plants,provide,strategy,utilization,volcanic,area,geographical,environment
AB值:
0.724795
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