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Pressure Drop Studies on Supercritical Helium Flowing in Horizontal Tubes

机译:水平管中超临界氦流的压降研究

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Supercritical helium owing to its single-phase characteristics and enhanced heat transfer near the pseudo-critical region is envisaged as a potential coolant for superconducting magnets used in particle accelerators and fusion devices. However, near the transposed critical line, there is a wide fluctuation of thermophysical properties like specific heat at constant pressure, density, thermal conductivity, viscosity, etc. As a consequence of this fluctuation, heat transfer and fluid flow studies become difficult for accurate prediction of heat transfer coefficient and friction factor. In this paper, numerical simulation of supercritical helium flowing under turbulent conditions in a horizontal heated tube is performed using computational fluid dynamics (CFD) software ANSYS FLUENT v12.0.16. It is found that results of pressure drop obtained from simulation closely match experimental data in case of fluctuation free regimes. The friction factor indicating the frictional pressure drop occurring in a horizontal tube can be matched to existing correlations within given accuracies for fluctuation regimes. A correlation for friction factor that yields better results than those in literature is proposed based on the simulation data obtained. The accurate determination of the overall pressure drop in the tubes along with the optimum flow rates gives the estimation of pumping power required for enhanced heat transfer with flow of supercritical helium.
机译:由于超临界氦的单相特性和在伪临界区附近的增强的传热,人们设想将其用作粒子加速器和聚变设备中使用的超导磁体的潜在冷却剂。但是,在转置的临界线附近,在恒定压力,密度,导热系数,粘度等条件下,热物理性质(例如比热)的波动很大。由于这种波动,传热和流体流动研究变得难以准确预测的传热系数和摩擦系数。本文使用计算流体力学(CFD)软件ANSYS FLUENT v12.0.16对在湍流条件下水平加热管中流动的超临界氦进行了数值模拟。发现在无波动情况下,从模拟获得的压降结果与实验数据非常匹配。指示在水平管中发生的摩擦压力下降的摩擦因数可以与给定波动范围内的精度内的现有相关性相匹配。基于获得的仿真数据,提出了一种摩擦系数的相关性,该相关性产生了比文献中更好的结果。精确确定管中的总压降以及最佳流速,可以估算出随着超临界氦气流动增强传热所需的泵送功率。

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