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Measurements of hydrate film fracture under conditions simulating the rise of hydrated gas bubbles in deep water

机译:模拟深水中水合气泡上升条件下水合物膜破裂的测量

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In view of gas hydrate formation in the containment of deep water oil/gas blowout, the evolution of methane hydrate films on gas bubbles rising naturally in deep water was simulated and observed by visual microscopy. The results reveal that hydrate films on gas bubbles formed at conditions corresponding to deeper depths (higher pressure) rose intact for longer distances and showed more pronounced fractures on the film. Secondary hydrate growth happened along the cracks of the hydrate film as the hydrated bubble rose upward. The fractured hydrate films were more likely to close with secondary growth when formed at subcoolings higher than 3.0 K. The strength of methane hydrate film formed on the surface of a suspended gas bubble was examined by rapidly decreasing the external pressure of the hydrate film soon after its formation. The maximum tension that the hydrate film could withstand without fracturing as well as the tensile strength were evaluated for hydrate films formed at 277.2 K and different subcoolings. It was found that the tensile strength of hydrate film increased with increasing subcooling at the formation conditions.
机译:考虑到深水油气喷出中的天然气水合物形成,模拟并通过视觉显微镜观察了深层气泡自然上升时甲烷水合物膜的演化。结果表明,在与更深的深度(较高的压力)相对应的条件下形成的气泡上的水合物膜完整地保留了更长的距离,并且在膜上显示出更明显的破裂。随着水合气泡的上升,二次水合物的生长沿水合物膜的裂缝发生。当在高于3.0 K的过冷度下形成时,断裂的水合物膜更有可能随着二次生长而关闭。通过在随后不久迅速降低水合物膜的外压来检查在悬浮气泡表面形成的甲烷水合物膜的强度。它的形成。对于在277.2 K和不同过冷度下形成的水合物薄膜,评估了水合物薄膜在不破裂的情况下可以承受的最大张力以及拉伸强度。发现在形成条件下,水合物膜的拉伸强度随着过冷度的增加而增加。

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