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首页> 外文期刊>International Journal of Offshore and Polar Engineering >Dissociation Behavior of Hydrate Core Sample Using Thermodynamic Inhibitor-Part 2: Experimental Investigation Using Long Core Samples
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Dissociation Behavior of Hydrate Core Sample Using Thermodynamic Inhibitor-Part 2: Experimental Investigation Using Long Core Samples

机译:使用热力学抑制剂的水合物核心样品的解离行为-第2部分:使用长核样品的实验研究

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The dissociation behavior of a laboratory-made methane hydrate core sample following injection of an inhibitor (aqueous methanol solution) has been investigated using a specially developed experimental setup. The core holder utilized in this work is 5 times greater in length than the one previously employed. A warm aqueous methanol solution was injected into core samples, which simulate natural gas hydrate sediment under the seafloor. Core temperature decreased upon injection of the inhibitor, in contrast to the case of pure water injection. Measurement of gas yields versus time suggests that the inhibitor increased dissociation rates. The observed pressure differentials between inlet and outlet of the core sample suggest that the inhibitor effectively prevented the reformation of hydrate within the dissociating core sample.
机译:使用专门开发的实验装置研究了注入抑制剂(甲醇水溶液)后实验室制备的甲烷水合物岩心样品的解离行为。在这项工作中使用的核心支架的长度是以前使用的核心支架的5倍。将温暖的甲醇水溶液注入岩心样品中,以模拟海底下天然气水合物的沉积物。与注入纯水的情况相反,注入抑制剂后核心温度降低。气体产率与时间的关系的测量表明抑制剂增加了解离速率。观察到的岩心样品进口和出口之间的压差表明抑制剂有效地防止了离解岩心样品中水合物的重新形成。

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