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Modelling the Thermal Energy Storage of Cementitious Mortars Made with PCM-Recycled Brick Aggregates

机译:用PCM再生砖骨料制成的水泥砂浆的热能存储模型

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摘要

This paper reports a numerical approach for modelling the thermal behavior and heat accumulation/liberation of sustainable cementitious composites made with Recycled Brick Aggregates (RBAs) employed as carriers for Phase-Change Materials (PCMs). In the framework of the further development of the fixed grid modelling method, classically employed for solving the well-known Stefan problem, an enthalpy-based approach and an apparent calorific capacity method have been proposed and validated. More specifically, the results of an experimental program, following an advanced incorporation and immobilization technique, developed at the for investigating the thermal responses of various combinations of PCM-RBAs, have been considered as the benchmark to calibrate/validate the numerical results. Promising numerical results have been obtained, and temperature simulations showed good agreement with the experimental data of the analyzed mixtures.
机译:本文报道了一种数值方法,用于建模以循环砖骨料(RBA)作为相变材料(PCM)的载体的可持续胶凝复合材料的热行为和热量积聚/释放的模型。在固定网格建模方法的进一步发展的框架内,经典地用于解决众所周知的Stefan问题的方法,已经提出并验证了基于焓的方法和表观热容量方法。更具体地说,遵循先进的结合和固定技术开发的用于研究PCM-RBA各种组合的热响应的实验程序的结果已被视为校准/验证数值结果的基准。获得了令人鼓舞的数值结果,并且温度模拟显示了与所分析混合物的实验数据良好的一致性。

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