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Effect of gradation on the thermal conductivities of backfill materials of ground source heat pump based on loess and iron tailings

机译:基于黄土和铁尾矿的地面源热泵回填材料渐变对地源热泵热导流的影响

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摘要

The addition of iron tailings to backfill soil of ground source heat pump (GSHP) systems can efficiently improve backfill thermal conductivity. The engineering properties of iron tailings and soil are significantly affected by particle gradation. Therefore, the effect of gradation on the thermal conductivity of backfill material composed of iron tailing and loess was investigated. The thermal conductivities of natural (bad) gradation and manmade (good) gradation materials with different iron tailings content, water content, and dry density were tested and analyzed. Results showed that the thermal conductivity of manmade gradation materials was usually higher than that of natural gradation materials. For the same water content and dry density, the influence of gradation on thermal conductivity decreased with increasing water content. For saturated material, the maximum difference in thermal conductivity caused by gradation ranged from 39.1% to 8.6% compared to dry material. The maximum increases in thermal conductivity caused by gradation were approximately 0.12-0.24 WArrrK). The maximum increase percentage of thermal conductivity increases with decreasing water content, and the value range is 28.4-60.5%. The empirical formula for thermal conductivity was established based on the water saturation. The influence of gradation on formula parameters is analyzed. Finally, suggestions for gradation selection in practical applications of GSHP backfill materials are given.
机译:将铁尾矿添加到地源热泵(GSHP)系统的回填土壤可以有效地提高回填导热率。铁尾和土壤的工程性质受到颗粒渐变的显着影响。因此,研究了渐变对由铁拖拖尾和黄土组成的回填材料导热率的效果。测试并分析了具有不同铁尾含量,水含量和干密度的自然(坏)灰度和人造(良好)灰度材料的热导体。结果表明,人造灰度材料的导热系数通常高于自然灰度材料的导热率。对于相同的水含量和干密度,随着水含量的增加,梯度对导热率的影响降低。对于饱和物质,与干燥材料相比,由渐变引起的导热率的最大差距为39.1%至8.6%。渐变引起的热导率的最大增加约为0.12-0.24 warrrk)。导热率的最大增加百分比随着含水量降低而增加,值范围为28.4-60.5%。基于水饱和度建立热导率的经验公式。分析了渐变对公式参数的影响。最后,给出了GSHP回填材料实际应用中渐变选择的建议。

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