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Physical Properties of Gas Hydrates: A Review

机译:天然气水合物的物理性质:综述

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Methane gas hydrates in sediments have been studied by several investigators as a possible future energy resource. Recent hydrate reserves have been estimated at approximately1016 m3of methane gas worldwide at standard temperature and pressure conditions. In situ dissociation of natural gas hydrate is necessary in order to commercially exploit the resource from the natural-gas-hydrate-bearing sediment. The presence of gas hydrates in sediments dramatically alters some of the normal physical properties of the sediment. These changes can be detected by field measurements and by down-hole logs. An understanding of the physical properties of hydrate-bearing sediments is necessary for interpretation of geophysical data collected in field settings, borehole, and slope stability analyses; reservoir simulation; and production models. This work reviews information available in literature related to the physical properties of sediments containing gas hydrates. A brief review of the physical properties of bulk gas hydrates is included. Detection methods, morphology, and relevant physical properties of gas-hydrate-bearing sediments are also discussed.
机译:若干研究人员已经研究了沉积物中的甲烷水合物,将其作为未来可能的能源。在标准温度和压力条件下,全球最近的水合物储量估计约为1016立方米。为了从含天然气水合物的沉积物中商业开采资源,天然气水合物的原位离解是必要的。沉积物中气体水合物的存在极大地改变了沉积物的某些正常物理性质。这些变化可以通过现场测量和井下测井来检测。对含水合物沉积物的物理特性的理解对于解释在现场环境,井眼和边坡稳定性分析中收集的地球物理数据是必要的;储层模拟和生产模型。这项工作回顾了文献中有关含天然气水合物沉积物物理性质的信息。简要概述了大量气体水合物的物理性质。还讨论了含气水合物沉积物的检测方法,形态和相关的物理性质。

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