Experimental laboratory complex for studying the physical properties of artificially formed gas-hydrate-containing sediments

V. Kobolev, S. Mikhailyuk, A. Safronov
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Abstract

Physical properties of gas hydrate-containing sediments (HCS) are extremely important information for the development of methods for their search and exploration. The presence of gas hydrates in marine bottom sediments significantly changes their physical properties, so they can be detected by marine remote geophysical observations. The physical properties of HCS are very important for detecting the presence of these compounds, estimating the amount of captured gas hydrates by sediments, as well as developing methods for using this resource. Currently, the study of physical properties concerned mainly artificial gas hydrates in the process of formation and decomposition under various thermodynamic conditions in their pure form. Therefore, very little is known about the physical properties of HCS, which makes their detection by remote geophysical surveys too difficult. Development and creation of experimental laboratory modular complex for formation of artificial methane gas hydrates in various lithological-granulometric matrices (sandstones, argillites, siltstones, etc.) and measurement of their physical properties in thermodynamic conditions of bottom sediments of the Black Sea, will increase efficiency technology of methane hydrate deposits development. Under experimental conditions, along with the thermal conductivity and velocities of longitudinal and transverse waves of artificial HCS, the parameters of elastic deformation, strength, and decay characteristics will be measured, which will allow performing theoretical analysis to build models based on different hypotheses of their genesis. At the S.I. Subbotin Institute of Geophysics of the National Academy of Sciences of Ukraine created a model of the installation for the formation and study of the physical properties of HCS. The development is based on the modern technological level of research in the field of thermobaric petro- physical experimental modeling of geological environments, as well as on the use of modern software and hardware laboratory research to obtain physical properties of bottom sediments of various lithological and particle size distribution.
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用于研究人工形成的含气水合物沉积物物理性质的实验实验室综合体
含天然气水合物沉积物(HCS)的物理性质对其寻找和勘探方法的发展是极其重要的信息。海洋底部沉积物中天然气水合物的存在显著地改变了其物理性质,因此可以通过海洋远程地球物理观测来检测它们。HCS的物理性质对于检测这些化合物的存在、估计沉积物捕获的天然气水合物的数量以及开发利用这种资源的方法非常重要。目前,对人工天然气水合物物理性质的研究主要涉及其在各种热力学条件下形成和分解过程中的纯形态。因此,人们对HCS的物理性质知之甚少,这使得通过远程地球物理测量来探测它们变得非常困难。开发和创建实验实验室模块化复合体,用于在各种岩性-粒度基质(砂岩、泥质岩、粉砂岩等)中形成人造甲烷天然气水合物,并在黑海底部沉积物的热力学条件下测量其物理性质,将提高甲烷水合物矿床开发的效率技术。在实验条件下,结合人工HCS的热导率、纵波和横波速度,测量其弹性变形、强度和衰减特性等参数,从而对其成因的不同假设进行理论分析,建立模型。在乌克兰国家科学院的S.I. Subbotin地球物理研究所,为HCS的形成和物理性质的研究创建了一个装置模型。本研究立足于地质环境热压油气物理实验模拟的现代研究技术水平,以及利用现代软硬件实验室研究手段,获取不同岩性和粒度分布的海底沉积物的物性。
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来源期刊
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发文量
7
审稿时长
6 weeks
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