首页> 外文期刊>International Journal of Heat and Mass Transfer >Application of a non-stationary method in determination of the thermal properties of radiation shielding concrete with heavy and hydrous aggregate
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Application of a non-stationary method in determination of the thermal properties of radiation shielding concrete with heavy and hydrous aggregate

机译:非平稳方法在重水合骨料辐射屏蔽混凝土热性能测定中的应用

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摘要

Results of measurements of the specific heat and the thermal conductivity of concrete with blended special aggregate for neutron and gamma radiation shielding are presented. Experimental tests were performed on concrete with heavyweight aggregate (magnetite, barite), hydrogen-bearing aggregate (serpentine) and amphibolite aggregate. The thermal properties of concrete were determined using a nonstationary method. The highest specific heat was found for concrete with serpentine aggregate. Simple models for predicting the specific heat and the thermal conductivity on the basis of concrete mix design were evaluated to include the blends of heavyweight and hydrogen-bearing aggregates. The thermal conductivity of concrete was found to be linearly dependent on the concrete density in the range from 2200 to 3500 kg/m3. Its increase due to water saturation of concrete was not dependent on the open porosity of concrete. It was found that the specific heat can be fairly well predicted using the rule of mixtures formula. The thermal conductivity of concrete can be approximately predicted using a parallel model in the case of water-saturated concrete. The thermal conductivity prediction for dry concrete is also discussed.
机译:给出了用于中子和伽马辐射屏蔽的掺混特殊骨料的混凝土的比热和导热率的测量结果。对具有重骨料(磁铁矿,重晶石),含氢骨料(蛇纹石)和角铁矿骨料的混凝土进行了试验测试。混凝土的热性能是使用非平​​稳方法确定的。蛇形骨料混凝土的比热最高。评价了根据混凝土配合比设计预测比热和导热率的简单模型,其中包括重量级和含氢骨料的掺混物。发现混凝土的热导率在2200至3500 kg / m3的范围内线性依赖于混凝土的密度。由于混凝土的水饱和度而导致的增加不取决于混凝土的开孔率。已经发现,使用混合规则可以很好地预测比热。在水饱和混凝土的情况下,可以使用并行模型大致预测混凝土的导热系数。还讨论了干混凝土的导热系数预测。

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