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Thermal conductivity map of the Oslo region based on thermal diffusivity measurements of rock core samples

机译:基于岩心样品热扩散率测量的奥斯陆地区导热系数图

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A thermal conductivity map can serve as a good basis for ground-source heat pump projects in the pre-design phase. However, due to large variations, a thermal response test is required for larger projects to get the accurate values needed for proper design of the ground-source heat pump system. This study describes the systematic methodology for producing such a thermal conductivity map of a larger geographic area around Oslo, Norway. The map is based on the results of 1,398 thermal diffusivity measurements of rock core samples. The thermal diffusivity is measured and used in the calculation of the thermal conductivity of the different geological units in the bedrock map of the Oslo region. Large variations in thermal conductivity data were registered within the data sets for the different rock polygons and geological units and the greatest variation is found in metamorphic and sedimentary rocks. Rock polygons and geological units with magmatic origin show the least variation within the data sets. The internal micro structures of the rocks can have a strong influence on the thermal conductivity. This is pronounced in some foliated metamorphic rocks where the thermal conductivity is highest parallel to the orientation of the foliation. The median value for the whole data set is 2.62 W/(m K), while the minimum and maximum value is 1.0 and 6.88 W/(m K), respectively. The minimum value is a breccia, and the maximum value was measured in a quartzite/metasandstone. The lower and upper quartiles for the sets of rock polygons and geological units are 2.1-3.9 W/(m K), respectively.
机译:在预设计阶段,导热系数图可以作为地源热泵项目的良好基础。但是,由于变化较大,因此对于较大的项目需要进行热响应测试,以获取正确设计地源热泵系统所需的准确值。这项研究描述了用于生成挪威奥斯陆周围较大地理区域的导热系数图的系统方法。该图基于岩心样品的1,398次热扩散率测量结果。测量了热扩散率,并将其用于计算奥斯陆地区基岩图中不同地质单元的热导率。在不同岩石多边形和地质单位的数据集中记录了较大的热导率数据变化,而在变质和沉积岩中发现的变化最大。具有岩浆成因的岩石多边形和地质单位在数据集中的变化最小。岩石的内部微观结构可能对导热系数产生很大影响。这在一些叶状变质岩中尤为明显,在这些岩石中,热导率平行于叶面的方向最高。整个数据集的中位数为2.62 W /(m K),而最小值和最大值分别为1.0和6.88 W /(m K)。最小值是角砾岩,最大值是在石英岩/流砂岩中测得的。岩石多边形和地质单位集的下四分位数和上四分位数分别为2.1-3.9 W /(m K)。

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