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Thermal conductivity of methane hydrate-bearing Ulleung Basin marine sediments: Laboratory testing and numerical evaluation

机译:含甲烷水合物的Ulleung盆地海洋沉积物的热导率:实验室测试和数值评估

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摘要

The thermal conductivity of gas hydrate-bearing sediments is a key parameter used to evaluate the heat transfer process relevant to phase transformation during gas hydrate production and to assess heat flux properties within the hydrate stability zone. Relatively few thermal conductivity values for in-situ hydrate-bearing sediments and laboratory hydrate-bearing sediments have been reported for under saturated conditions with vertical effective stress. In this study, we used sandy sediments obtained during the Ulleung Basin Gas Hydrate Expedition 2 (UBGH2) Expedition in Korea to synthesize methane hydrate-bearing sediments with saline pore fluid. The transient plane source method was implemented to measure the thermal conductivity of specimens with variable gas hydrate saturations. The measured thermal conductivity was ~1.47 W/m/K and was independent of hydrate saturation. Results from additional tests of ice- and water-unsaturated sediments were also compared to our findings. Both geometric mean and 3D thermal network models corroborated the experimentally measured thermal conductivities assuming expected physical properties.
机译:含天然气水合物的沉积物的导热系数是一个关键参数,用于评估与天然气水合物生产过程中的相变有关的传热过程,以及评估水合物稳定区内的热通量特性。据报道,在具有垂直有效应力的饱和条件下,原位含水合物沉积物和实验室含水合物沉积物的热导率值相对较少。在这项研究中,我们使用了在韩国Ulleung盆地天然气水合物考察2(UBGH2)考察中获得的沙质沉积物,用盐水孔隙流体合成了含甲烷水合物的沉积物。实施瞬态平面源法来测量具有可变气体水合物饱和度的样品的热导率。测得的热导率为〜1.47 W / m / K,与水合物饱和度无关。还将冰和水不饱和沉积物的其他测试结果与我们的发现进行了比较。几何均值和3D热网络模型都假设了预期的物理特性,从而证实了实验测得的热导率。

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