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Heat and moisture transfer in high-property refractories under the intensive heat flux or fire exposure

机译:在密集的热量通量或火灾暴露下的高性能耐火材料中的热量和水分转移

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This paper described a one-dimensional cylinder numerical model of heat and moisture transfer in a cylinder sheathed by high-property refractories under the intense heat flux or fire exposure. Bio-heat transfer equation and Henriques burn skin equation were introduced to predict second-degree skin burn injuries based on the numerical model. A cylindrical thermal protective performance testing device was used to measure the distribution of temperature. The effects of moisture content on the thermal protective performance were also discussed. The aim of this study was to predict the thermal protective performance of flame-resistant refractories under the intensive heat flux or fire. Two sets of high-property refractories, which were often used for firefighter clothing, were selected to verify the accuracy of model. Four sets of experiments were conducted based on the former findings. The performance of the related models had been evaluated by comparing the predicted values with the respective experimental values. Results showed that the predicted values from the numerical models approach satisfactorily the experimental results. Therefore, the predicted model can be used to specify the level of protection needed in a garment when the intensity of the exposure hazard is known. Also, the test will be especially useful for developing new materials and selecting candidates for additional field testing.
机译:本文描述了在强烈的热通量或火灾暴露下的高性能耐火材料护套的气缸中的热量和湿气传递的一维汽缸数值模型。引入生物传热方程和烧伤皮肤方程,以预测基于数值模型的二级皮肤燃烧损伤。圆柱形热保护性能测试装置用于测量温度的分布。还讨论了水分含量对热保护性能的影响。本研究的目的是预测密集热通量或火灾下阻燃耐火材料的热保护性能。选择两套经常用于消防员服装的高性能耐火材料,验证了模型的准确性。基于前一种发现进行了四组实验。通过将预测值与各自的实验值进行比较来评估相关模型的性能。结果表明,来自数值模型的预测值令人满意的实验结果。因此,当已知暴露危险的强度时,预测模型可用于指定服装中所需的保护水平。此外,该测试对于开发新材料和选择候选人来说,测试将特别有用。

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