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首页> 外文期刊>Journal of natural gas science and engineering >Flow characteristics of methane hydrate slurry in the transition region in a high-pressure flow loop
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Flow characteristics of methane hydrate slurry in the transition region in a high-pressure flow loop

机译:高压流环中过渡区域中甲烷水合物浆料的流动特性

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摘要

The flow characteristics of methane hydrate slurry formed from an 100% water cut system at a flow rate (mean velocity) range from 0.62 to 3.84 m/s were experimentally investigated in a high-pressure flow loop. The effects of hydrate volume fraction, tube diameter and flow rate on the flow regimes, pressure drops and the coefficients of pipe friction were measured. The experimental results indicated that a turbulent flow took place easily at low hydrate volume fraction region with a relatively high flow rate, while it transformed into a laminar flow with the increase of the hydrate volume fraction. There existed a critical value of hydrate volume fraction where the transition occurred. In the turbulent flow regime, the coefficients of pipe friction were close to that of the continuous phase (water in this study) and the effects of hydrate volume fraction and flow rate could be neglected. In the laminar flow regime, methane hydrate slurry could be considered as a pseudoplastic fluid and presented shear-thinning behavior which got more obvious with the increase of the hydrate volume fraction. An empirical Herschel-Bulkley-type equation was established based on the experimental data and the flow characteristics of methane hydrate slurry could be estimated in pipes with different diameters based on the modified hydrate volume fraction. It was of great significance for hydrate slurry transportation not exceeding the critical value of hydrate volume fraction.
机译:在高压流回路中实验研究了由0.62至3.84m / s的0.62至3.84m / s的100%水切割系统形成的甲烷水合物浆料的流动特性。测量水合物体积分数,管直径和流速对流动制度,压降和管摩擦系数的影响。实验结果表明,在低水合物体积分数区域中具有相对高的流速的湍流,其随着水合物体积分数的增加而转化为层流。存在过渡发生的水合物体积分数的临界值。在湍流状态下,管摩擦系数接近连续相(本研究中的水),并且可以忽略水合物体积分数和流速的影响。在层流状态下,甲烷水合物浆料可被认为是假塑性流体,并呈现剪切稀释行为,随着水合物体积分数的增加,呈剪切稀释行为越来越明显。基于实验数据建立了经验性Herschel-Bulkley型式,并且可以在具有不同直径的基础上估计甲烷水合物浆料的流动特性,基于改性水合物体积分数。对于不超过水合物体积分数的临界值,水合物浆料运输具有重要意义。

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