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Thermal properties of methane hydrate-bearing sediments and surrounding mud recovered from Nankai Trough wells

机译:从南开槽井中回收的含甲烷水合物沉积物和周围泥浆的热学性质

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This paper presents the measurement of the thermal constants of natural methane hydrate-bearing sediments and mud layer samples recovered from wells. Core samples were recovered from the Tokai-oki test wells (Nankai Trough, Japan) in 2004. The thermal conductivity, thermal diffusivity, and specific heat of the samples were simultaneously determined using the hot-disk transient method. The thermal conductivity of natural hydrate-bearing sediments decreased slightly with increasing porosity. In addition, the thermal diffusivity of hydrate-bearing sediments decreased as the porosity increased. Moreover, we also used simple models to calculate the thermal conductivity and diffusivity. Estimations of the distribution model (geometric mean model) were relatively consistent with the measured results, suggesting that sand grains and hydrates should be independently distributed for hydrate-bearing sediments, which exhibit a pore-filling pattern. The measurement results were also consistent with the thermal diffusivity, which was estimated by dividing the thermal conductivity obtained from the distribution model by the specific heat taken from the arithmetic mean. Finally, our estimate of the thermal conductivity of silt soil was much lower than that for sand soil in hydrate-bearing sediment, which suggests that the small grains influence thermal conductivity.
机译:本文介绍了从井中回收的天然甲烷水合物沉积物和泥层样品的热常数的测量值。岩心样品于2004年从Tokai-oki测试井(日本Nankai Trough)中回收。使用热盘瞬变方法同时测定样品的导热率,热扩散率和比热。天然水合物沉积物的热导率随孔隙度的增加而略有下降。此外,随着孔隙度的增加,含水合物沉积物的热扩散率降低。此外,我们还使用简单的模型来计算热导率和扩散率。分布模型(几何平均模型)的估计值与实测结果相对一致,表明沙粒和水合物对于水合物沉积物应独立分布,这些沉积物表现出孔隙填充的方式。测量结果也与热扩散率一致,该热扩散率是通过将分布模型获得的热导率除以算术平均值获得的比热来估算的。最后,我们对含水合物沉积物中粉土的热导率的估计要比砂土低得多,这表明小颗粒会影响热导率。

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