首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >In situ thermal conductivity of gas-hydrate-bearing sediments of the Mallik 5L-38 well
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In situ thermal conductivity of gas-hydrate-bearing sediments of the Mallik 5L-38 well

机译:Mallik 5L-38井含气水合物沉积物的原位热导率

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摘要

Detailed knowledge about thermal properties of rocks containing gas hydrate is required in order to quantify processes involving gas hydrate formation and decomposition in nature. In the framework of the Mallik 2002 program, three wells penetrating a continental gas hydrate occurrence under permafrost were successfully equipped with permanent fiber-optic distributed temperature sensing cables. Temperature data were collected over a 21-month period after completing the wells. Thermal conductivity profiles were calculated from the geothermal data as well as from a petrophysical model derived from the available logging data and application of mixing law models. Results indicate that thermal conductivity variations are mainly lithologically controlled with a minor influence from hydrate saturation. Average thermal conductivity values of the hydrate-bearing sediments range between 2.35 and 2.77 W m-1 K-1. Maximum gas hydrate saturations can reach up to about 90% at an average porosity of 0.3.
机译:为了量化涉及天然气水合物形成和自然分解的过程,需要对含有天然气水合物的岩石的热性质有详细的了解。在Mallik 2002程序的框架内,成功地在永久冻土层下穿透大陆天然气水合物发生的三口井成功地安装了永久性的光纤分布式温度传感电缆。完井后的21个月内收集了温度数据。从地热数据以及从可用的测井数据和混合定律模型的应用导出的岩石物理模型计算出导热系数。结果表明,热导率变化主要受水合物饱和度影响较小的岩性控制。含水合物沉积物的平均热导率值介于2.35和2.77 W m-1 K-1之间。平均孔隙度为0.3时,最大的天然气水合物饱和度可达到约90%。

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