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首页> 外文期刊>Journal of thermal analysis and calorimetry >Temperature dependence of thermal diffusivity, specific heat capacity, and thermal conductivity for several types of rocks
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Temperature dependence of thermal diffusivity, specific heat capacity, and thermal conductivity for several types of rocks

机译:几种岩石的热扩散率,比热容和热导率与温度的关系

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摘要

The thermo-physical properties for four rock types (granite, granodiorite, gabbro, and garnet amphibolite) from room temperature to 1,173 K were investigated. Thermal diffusivity and specific heat capacity were measured using the laser-flash technique and heat flux differential scanning calorimetry, respectively. Combined with the density data, rock thermal conductivities were calculated. Rock thermal diffusivity and conductivity decrease as the temperature increases and approach a constant value at high temperatures. At room temperature, the measured thermal conductivity is consistently near or lower than the calculated conductivity using the mineral series model, which suggests that real thermal conduction is more complicated than is depicted in the model. Therefore, in situ measurement remains the best method for accurately obtaining thermal conductivity for rocks.
机译:研究了从室温到1,173 K的四种岩石类型(花岗岩,花岗闪长岩,辉长岩和石榴石角闪石)的热物理性质。使用激光闪光技术和热通量差示扫描量热法分别测量热扩散率和比热容。结合密度数据,计算出岩石的热导率。岩石的热扩散系数和电导率随温度升高而降低,并在高温下接近恒定值。在室温下,使用矿物系列模型测得的导热系数始终接近或低于计算出的导热系数,这表明实际的导热系数比模型中描述的更为复杂。因此,原位测量仍然是准确获得岩石导热系数的最佳方法。

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