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The experimental study on thermal conductivity of backfill material of ground source heat pump based on iron tailings

机译:基于铁尾矿的地源热泵回填材料导热系数的试验研究

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Iron tailings are the remains of solid waste after iron ore concentrates are selected by mineral processing technology. For a long time, iron tailings are disposed through accumulation and burial, which not only occupy large space but also increase the cost of treatment. Ground source heat pump (GSHP) system is a kind of environmental-friendly, energy-saving system by using geothermal energy. This is getting more and more wide use in China. The main problem of using GSHP is the low thermal property of backfill materials in the loess region of Northwest China, which affects the thermal efficiency of GSHP system. Improving the thermal conductivity of backfill materials is necessary and urgent for energy conservation. The authors hypothesized that thermal efficiency increases as the rate of tailings addition increases. To test this hypothesis, the authors applied iron tailings to the backfill material. Experiments were conducted to measure the thermal conductivity of the loess and iron tailings, determined under the conditions of different dry density, water content, and mixing ratio. Then, the changes of thermal conductivity were analyzed as tailings' mix proportion varies. The optimum mix ratio was determined and the reason was discussed. The results showed that the thermal conductivity of backfill material is a formula of saturation and rate of tailings addition. A series of functional equation was given in the end. The calculated value of the formulae matched well with the experimental data. The research concluded that the iron tailings as backfill material of GSHP is feasible and the result can be used as a reference for related engineering research. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过选矿工艺选择铁精矿后,铁尾矿是固体废物的残余物。长期以来,铁尾矿是通过堆积和埋葬的方式处置的,不仅占用空间大,而且增加了处理成本。地源热泵(GSHP)系统是一种利用地热能的环保节能系统。这在中国越来越广泛地使用。使用GSHP的主要问题是西北黄土地区回填材料的热特性低,这会影响GSHP系统的热效率。提高回填材料的导热性对于节约能源是必要和紧迫的。作者假设,随着尾矿添加率的增加,热效率也会提高。为了验证这一假设,作者将铁尾矿应用于回填材料。在不同的干密度,含水量和混合比的条件下测定了黄土和铁尾矿的热导率,进行了实验。然后,随着尾矿混合比的变化,分析了导热系数的变化。确定了最佳混合比例并讨论了原因。结果表明,回填材料的导热系数是饱和度和尾矿添加速率的一个公式。最后给出了一系列函数方程。公式的计算值与实验数据吻合良好。研究得出结论,将铁尾矿作为GSHP的回填材料是可行的,其结果可为相关工程研究提供参考。 (C)2018 Elsevier B.V.保留所有权利。

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