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首页> 外文期刊>International Journal of Thermophysics >Modeling of the Effective Thermal Conductivity of Consolidated Porous Media with Different Saturants: A Test Case of Gabbro Rocks
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Modeling of the Effective Thermal Conductivity of Consolidated Porous Media with Different Saturants: A Test Case of Gabbro Rocks

机译:具有不同饱和剂的固结多孔介质有效导热系数的建模:Gabbro岩石的测试案例

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The thermal conductivity and thermal diffusivity of porous consolidated gabbro rocks have been measured simultaneously by the transient plane source technique at normal temperature and pressure using air and water as saturants. The density and porosity are measured using American Society for Testing and Materials (ASTM) standards under ambient conditions. The mineral composition is obtained using a petrography technique. Data are presented for 12 specimens of gabbro, taken from Warsik near Peshawar, Pakistan. A recently proposed empirical model for the prediction of the thermal conductivity of porous consolidated igneous rocks is established using different fluids in pore spaces, under ambient conditions. An exponential decay formula is also proposed for the prediction of the thermal conductivity at room temperature and normal pressure. The results are compared with different existing empirical models. A simple correlation between density and porosity is also reported.
机译:多孔固结辉长岩的导热系数和热扩散系数已通过瞬态平面源技术在常温常压下使用空气和水作为饱和剂同时进行了测量。使用美国材料试验协会(ASTM)标准在环境条件下测量密度和孔隙率。使用岩相学技术获得矿物成分。数据是从巴基斯坦白沙瓦附近的沃西克(Warsik)采集的12个辉长岩标本的数据。在环境条件下,使用孔隙空间中的不同流体,建立了最近提出的用于预测多孔固结火成岩热导率的经验模型。还提出了指数衰减公式来预测室温和常压下的热导率。将结果与不同的现有经验模型进行比较。还报道了密度和孔隙率之间的简单关系。

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