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首页> 外文期刊>High temperature materials and processes >Thermocline Storage Filled with Structured Ceramics. Numerical Consistency of the Developed Numerical Model and First Observations
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Thermocline Storage Filled with Structured Ceramics. Numerical Consistency of the Developed Numerical Model and First Observations

机译:恒温槽存储结构陶瓷。所建立数值模型的数值一致性和初步观察

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摘要

The attraction of solar energy is greatly enhanced by the possibility of it being used during times of reduced or non-existent solar flux, such as weather induced intermittences or the darkness of the night. Therefore optimizing thermal storage for use in solar energy plants is crucial for the success of this sustainable energy source. Here we present a study of a structured bed filler dedicated to Thermocline type thermal storage, believed to outweigh the financial and thermal benefits of other systems currently in use such as packed bed Thermocline tanks. Several criterions such as Thermocline thickness and Thermocline centering are defined with the purpose of facilitating the assessment of the efficiency of the tank to complement the standard concepts of power output. A numerical model is developed that reduces to two dimensions the modeling of such a tank. The structure within the tank is designed to be built using simple bricks harboring rectangular channels through which the solar heat transfer and storage fluid will flow. The model is scrutinized and tested for physical robustness, and the results are presented in this paper. The consistency of the model is achieved within particular ranges for each physical variable.
机译:通过在减少或不存在的太阳通量(例如天气引起的间歇或夜晚的黑暗)期间使用太阳能的可能性,可以大大提高太阳能的吸引力。因此,优化用于太阳能发电厂的蓄热对于这种可持续能源的成功至关重要。在这里,我们对专用于Thermocline型蓄热器的结构化床填料进行了研究,该填料被认为超过了当前使用的其他系统(如填充床Thermocline储罐)的财务和热效益。为了便于评估储罐效率,以补充功率输出的标准概念,定义了多个标准(例如,恒温槽厚度和恒温槽居中)。开发了将这种储罐的建模减少到二维的数值模型。储罐内的结构设计为使用带有矩形通道的简单砖块建造,太阳能热传递和存储流体将通过矩形通道流动。仔细检查该模型并测试其物理鲁棒性,并在本文中给出结果。在每个物理变量的特定范围内,可以实现模型的一致性。

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