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Enhanced heat transfer and power dissipation in oscillatory-flow tubes with circular-orifice baffles: a numerical study

机译:具有圆形孔板挡板的振荡流管中的传热和功耗增强:数值研究

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摘要

A numerical investigation has been carried out in order to characterize the power dissipation and heat transfer augmentation in standard circular-orifice baffled tubes operating with superimposed net and oscillatory flows. Unsteady pressure drop across the baffled tube has been monitored under different operating conditions and working fluids, in order to evaluate the power consumption of the device. A successful agreement with experimental data available in the open literature is presented. The simultaneously hydrodynamic and thermal developing flow has been modelled with uniform heat flux as boundary condition in the tube wall, using both water and thermal oil as working fluids. The achievement of spatial and time periodicity is thoroughly analyzed prior to the data reduction for the computation of Nusselt number. The time-resolved and time-averaged heat transfer characteristics are presented for a net Reynolds number ranging from Re-n = 5 to Re-n = 200 and oscillatory Reynolds number from Re-o = 0 to Re-o = 800 for a constant oscillating amplitude of x(0) = d. The strong dependency of Nusselt number on the operating parameters of the oscillations is reported. The methodology is validated using the heat transfer correlations available in the literature.
机译:已经进行了数值调查,以表征用叠加的网和振荡流动的标准圆形孔口挡板管中的功耗和传热增强。在不同的操作条件和工作流体下监测了挡板管的不稳定压降,以评估装置的功耗。提出了开放文学中可用的实验数据成功的成功达成协议。同时的流体动力和热显影流动已经用均匀的热通量为管壁中的边界条件建模,使用水和热油作为工作流体。在计算NUSESER号码的数据减少之前,在数据减少之前彻底分析了空间和时间周期性的实现。呈现从RE-N = 5到RE-N = 200的净雷诺数和振​​荡雷诺数,从RE-O = 0到RE-O = 800的循环雷诺数,呈现时间分辨和时间平均传热特性。 X(0)= D的振荡幅度。报道了营销数对振荡操作参数的强大依赖性。使用文献中可用的传热相关验证方法。

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