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Flow characteristics and rheological properties of natural gas hydrate slurry in the presence of anti-agglomerant in a flow loop apparatus

机译:流动回路装置中存在抗结块剂的天然气水合物浆液的流动特性和流变特性

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The flow characteristics and rheological properties of natural gas hydrate slurry, with initial water cuts ranging from 5 to 30 voI%, were investigated in a flow loop. The experimental results indicate that the hydrate slurry can be considered a pseudoplastic fluid and presents more obvious shear-thinning behaviour with the increase in the hydrate volume fraction. The study on the fluid morphology demonstrated that the original structure of the water-in-oil emulsion is destroyed by the formation of gas hydrate, and the hydrate slurry is ultimately transported as a solid dispersion system. An empirical Herschel-BuIkley-type equation that considers the hydrate volume fraction was developed to improve the description of the rheological properties of the hydrate slurry. The apparent viscosities of the hydrate slurry calculated by the new equation were in accordance with the experimental data. Shutting-down/ restarting tests using three shutting-down times (2 h, h,and 8 h) were performed. The experimental results indicate that the hydrate slurry can be easily and safely restarted from the static state after a long shutting-down period and exhibits obvious thixotropic behaviour with increasing shutting-down time.
机译:在流动回路中研究了天然气水合物浆料的流动特性和流变特性,初始含水率范围为5至30 voI%。实验结果表明,随着水合物体积分数的增加,水合物浆液可以看作是假塑性流体,并表现出更明显的剪切稀化行为。对流体形态的研究表明,油包水乳液的原始结构被气体水合物的形成所破坏,水合物浆液最终以固体分散体系的形式运输。建立了考虑水合物体积分数的经验性Herschel-BuIkley型方程,以改进对水合物浆料流变性质的描述。通过新公式计算出的水合物浆料的表观粘度与实验数据一致。使用三个关闭时间(2 h,h和8 h)执行关闭/重新启动测试。实验结果表明,水合物浆液在较长的停机时间后可以轻松,安全地从静态状态重新启动,并且随着停机时间的增加,其触变性明显。

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