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首页> 外文期刊>Marine and Petroleum Geology >Geotechnical and geophysical properties of deep marine fine-grained sediments recovered during the second Ulleung Basin Gas Hydrate expedition, East Sea, Korea
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Geotechnical and geophysical properties of deep marine fine-grained sediments recovered during the second Ulleung Basin Gas Hydrate expedition, East Sea, Korea

机译:韩国东海Ulleung盆地天然气水合物第二次考察期间回收的深海细粒沉积物的岩土和地球物理性质

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摘要

This study investigates the geotechnical and geophysical properties of minimally disturbed fine-grained marine sediments recovered during the second Ulleung Basin Gas Hydrate expedition (UBGH2), East Sea, Korea. Conventional laboratory geotechnical engineering test methods were used to characterize the sediments from a geotechnical engineering perspective. The sediments were mostly uncompacted and classified as highly plastic silty soils according to the Unified Soil Classification System (USCS); they exhibited high compressibility when subjected to an increase in effective stress (or a decrease in pore water pressure), low hydraulic conductivities, and low coefficient of consolidation (or pressure diffusion). It is expected that the application of a depressurization method for gas hydrate production at the investigated sites would cause a significant amount of settlement and compaction around the production hole. Because the shear wave velocity of gas hydrate-bearing sediments is much less sensitive to the stress state and is much higher than that of sediments without gas hydrates, it is possible to estimate the degree of hydrate saturation from shear wave velocity data measured in gas hydrate-bearing sediments. In addition, the prior presence of gas hydrates in the sediments was verified through a comparison of water content, compressibility, and electrical resistivity of the sediments.
机译:这项研究调查了在韩国东海第二次Ulleung盆地天然气水合物探险(UBGH2)期间回收的微扰细粒海洋沉积物的岩土和地球物理特性。从岩土工程的角度,使用常规的实验室岩土工程测试方法来表征沉积物。根据统一土壤分类系统(USCS),沉积物大部分未压实,被归类为高塑性粉质土壤。当有效应力增加(或孔隙水压力降低),低水力传导率和低固结系数(或压力扩散)时,它们表现出高可压缩性。预期在研究地点将减压方法用于天然气水合物的生产将导致生产孔周围大量的沉降和压实。因为含天然气水合物的沉积物的剪切波速度对应力状态的敏感度要低得多,并且比不含天然气水合物的沉积物的剪切波速度要高得多,因此可以根据在天然气水合物中测量的剪切波速度数据来估算水合物的饱和度。含沉积物。此外,通过比较沉积物的水含量,可压缩性和电阻率,验证了沉积物中气体水合物的先验存在。

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