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Numerical study of the two-phase flow characteristics of slush nitrogen

机译:溶氮两相流动特性的数值研究

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The fundamental two-phase flow characteristics of slush nitrogen in a pipe are numerically investigated to develop effective cooling performance for long-distance superconducting cable. First, the governing equations of two-phase slush nitrogen flow based on the unsteady thermal non-equilibrium two-fluid model are constructed and several flow characteristics are numerically calculated taking into account the effects of the slush volume fraction, the thermodynamic behavior of slush, and the duct shape. Furthermore, the numerical results are compared with previous experimental results on pressure loss measurement and visualization measurement in two-phase slush nitrogen flow along the longitudinal direction of the pipe. Results of this research show that it is possible to reduce the pressure loss by using a two-phase slush flow under the high Reynolds number condition and by applying the appropriate volume fraction of slush particles. The optimized thermal flow conditions for cryogenic two-phase slush nitrogen with practical use of latent heat for slush melting are predicted for the development of a new type of superconducting cooling system.
机译:数值研究了管道中氮的基本两相流动特性,以开发长距离超导电缆的有效冷却性能。首先,基于非稳态热非平衡二流体模型,建立了两相氮流氮的控制方程,并考虑了氮泥体积分数,氮氧化物的热力学行为,数值计算了几种流动特性。和风管形状。此外,将数值结果与先前的实验结果进行了比较,该实验结果是沿管道纵向方向在两相搪瓷氮气流中进行压力损失测量和可视化测量。研究结果表明,可以通过在高雷诺数条件下使用两相搪瓷流和应用适当体积分数的搪瓷颗粒来减少压力损失。预测将低温潜热两相氮氮的最佳热流条件与潜热实际应用用于氮氧化物融化,将开发出一种新型的超导冷却系统。

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