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首页> 外文期刊>Journal of natural gas science and engineering >Dissociation equilibrium height and friction coefficient in pipeline transportation of gas hydrate-bearing sediment particles
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Dissociation equilibrium height and friction coefficient in pipeline transportation of gas hydrate-bearing sediment particles

机译:气体水合物沉积物粒子管道运输中的解离平衡高度和摩擦系数

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Compared with traditional fossil fuels, gas hydrates have vast reserves, cause little pollution, and are an essential strategic energy resource. Pipeline transportation is critical to realize the development and utilization of natural gas hydrate resources. The Eulerian multiphase flow model within the computational fluid dynamics software FLUENT was employed to calculate gas-liquid-solid flow, taking into account phase interactions, heat transfer, and collision among particles. Pipeline transportation of gas hydrate-bearing sediment (GHBS) particles was studied based on dimensional analysis and numerical simulation. First, the essential dimensionless numbers controlling multiphase flow and hydrate dissociation were deduced. Further, the obtained simulation results clearly indicate that when the system was in a stable state, there was a dissociation equilibrium height above which hydrate dissociated completely. The influences of the dimensionless numbers on the dissociation equilibrium height and friction coefficient in the pipe were determined, and power-law correlations for the dissociation equilibrium height and friction coefficient were obtained from the numerical data. Finally, an analytical expression of dissociation equilibrium height was derived by decoupling the solid-liquid flow and gas hydrate dissociation, and the validity of the power-law correlation for the dissociation equilibrium height was verified by the analytical expression.
机译:与传统化石燃料相比,天然气水合物具有巨大的储备,造成少量污染,是一个必不可少的战略能源资源。管道运输对于实现天然气水合物资源的开发和利用至关重要。使用计算流体动力学软件流畅的欧拉多相流动模型用于计算颗粒中的相互作用,传热和碰撞的气液固体流动。基于尺寸分析和数值模拟研究了气体水合物沉积物(GHBS)颗粒的管道运输。首先,推导出控制多相流动和水合物解离的基本无量纲数。此外,所获得的模拟结果清楚地表明,当系统处于稳定状态时,在其完全解离的解离平衡高度上方。确定无量值对管中的解离平衡高度和摩擦系数的影响,并且从数值数据获得了解离平衡高度和摩擦系数的动力定律相关性。最后,通过去耦的固体液体流动和气体水合物解离来源的解离平衡高度的分析表达,并通过分析表达验证了解离平衡高度的动力定律相关性的有效性。

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