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Experimental and numerical investigation of the first heat-up of refractory concrete

机译:耐火混凝土初次升温的实验与数值研究

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摘要

The first heat-up of furnaces consisting of wet refractory concrete is a challenge due to the pore pressure build-up which can exceed the strength of the concrete. To extend understanding of the complex heat and mass transfer phenomena taking place during the first heat-up, two reproducible heat-up experiments are carried out. These are performed by using a new developed pore pressure sensor. The experiments exhibit an intense change of concrete's thermal conductivity during the process. Further, even in case of one sided heating, two drying fronts are found to occur. In addition to the experimental investigation the first heat-up is simulated using a physical model, based on the coupled balances of energy and the masses of liquid water, water vapour and air as well. By the aid of numerical simulation the first heat-up is further investigated and mass flow behaviour of air, vapour and liquid water is discussed. Within the scope of a sensitivity study the concrete's thermal conductivity and it's permeability are obtained as it's most important material properties and they are used for calibration of the model aiming well representation of the experimental data. The adjusted material properties are found to be in good agreement with refractory concrete properties reported in literature. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:湿法耐火混凝土组成的熔炉的第一次加热是一个挑战,因为孔压的增加可能会超过混凝土的强度。为了扩展对第一次加热过程中发生的复杂的传热和传质现象的理解,进行了两个可重复的加热实验。这些是通过使用新开发的孔隙压力传感器执行的。实验表明,在此过程中,混凝土的导热系数发生了剧烈变化。此外,即使在单侧加热的情况下,也发现发生两个干燥前沿。除了实验研究之外,还基于物理模型模拟了首次加热,该模型基于能量与液态水,水蒸气和空气的质量的耦合平衡。借助于数值模拟,进一步研究了第一次加热,并讨论了空气,蒸汽和液态水的质量流行为。在敏感性研究的范围内,获得了混凝土的导热性和渗透性,因为它是最重要的材料性能,它们被用于校准模型,以更好地表现实验数据。发现调整后的材料性能与文献中报道的耐火混凝土性能非常吻合。 (C)2015 Elsevier Masson SAS。版权所有。

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