聚光太阳辐射与材料相互作用的模拟方法

Muhammad S. Paizullakhanov, R. Akbarov
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引用次数: 2

摘要

本文分析了太阳辐射与物质相互作用过程的建模方法。介绍了在太阳炉中利用熔体合成材料的实验结果。结果表明,在太阳炉中熔化时,由于加速了恢复过程,在高密度的集中太阳辐射的影响下,有可能获得细粒度的微观结构,从而使材料的力学和介电性能得到增强。计算结果表明,利用在太阳炉中熔化和冷却的工艺参数得到的材料的结构和性能之间的关系,可以作为模拟太阳辐射与材料相互作用的一种方法
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Approaches to Simulation of Interaction of Concentrated Solar Radiation with Materials
The paper analyzes approaches to modeling the processes of interaction of concentrated solar radiation with materials. The experimental results obtained on the synthesis of materials from a melt in a solar furnace are presented. It is shown that when melting in a solar furnace under the influence of concentrated solar radiation of high density due to the acceleration of the recovery process, it is possible to obtain a fine-grained microstructure that gives the material enhanced mechanical and dielectric properties. It is shown that the relationship between the structure and properties of the materials obtained with the technological parameters of melting and cooling in a solar furnace can be used as an approach to modeling the interaction of concentrated solar radiation with materials
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