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Thermal conductivity of steelmaking slag-based controlled low-strength materials over entire range of degree of saturation: A study for ground source heat pump systems

机译:基于炼钢的热导率在整个饱和度范围内的控制低强度材料:用于地源热泵系统的研究

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摘要

Controlled low-strength materials (CLSMs) with high workability and relatively high thermal conductivity can function as a thermal grout in the heat exchanger of ground source heat pump systems. The degree of saturation of CLSM strongly influences its thermal conductivity and thus affects the heat transfer capacity of the heat exchanger system. This study investigates the degree of saturation-thermal conductivity relationship of steelmaking slag-based CLSM using two sample preparation methods: a modified high-pressure membrane extractor coupled with a thermal needle probe (HP) and air-dried (AD) methods. The effect of grinding steelmaking slag on the mechanical properties and thermal conductivity of CLSM is also evaluated. The engineering properties test results indicate that ground steelmaking slag presents a positive effect on the compressive strength and thermal conductivity of CLSMs owing to the reduction of the inherent porosity and increased specific surface area of the raw steelmaking slag by the grinding. The degree of saturation and thermal conductivity have a linear relationship for both the AD and HP test methods. However, it was found that the AD method overestimates the thermal conductivity owing to the uneven distribution of the water content in the specimen. Finally, predictive equations are proposed to estimate the thermal conductivity of CLSM for the entire range of degree of saturation. Compared to the recently proposed equation, these equations are more appropriate for thermal conductivity estimation of grouting materials based CLSM, especially at low water content.
机译:具有高可加工性和相对高的导热性的控制低强度材料(CLSMS)可以在地源热泵系统的热交换器中作为热灌浆。 CLSM的饱和度强烈影响其导热率,从而影响热交换器系统的传热能力。本研究研究了使用两种样品制备方法的基于炼钢渣的CLSM的饱和导热率关系的程度:用热针探针(HP)和风干(AD)方法偶联的改性的高压膜提取器。还评价了研磨炼钢炉渣对CLSM的机械性能和导热率的影响。工程性能测试结果表明,由于磨削的固有孔隙率和原料炼钢渣的固有孔隙率和增加的比表面积,地面炼钢渣呈现对CLSMS的抗压强度和导热率的积极影响。饱和度和导热性具有线性关系,适用于AD和HP测试方法。然而,发现AD方法由于样品中的水含量的分布不均匀,而AD方法估计导热率。最后,提出了预测方程来估计CLSM的整个饱和度范围的热导率。与最近提出的方程相比,这些方程更适合于基于灌浆材料的CLSM的热导电估计,尤其是在低含水量下。

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