首页> 外文期刊>Journal of Energy Resources Technology >Turbulent Flows Inside Pipes Equipped With Novel Perforated V-Shaped Rectangular Winglet Turbulators: Numerical Simulations
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Turbulent Flows Inside Pipes Equipped With Novel Perforated V-Shaped Rectangular Winglet Turbulators: Numerical Simulations

机译:管道内部配备有新型穿孔的V形矩形小翼型湍流器的湍流流量:数值模拟

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摘要

In this study, computational simulations have been performed to investigate the turbulent characteristics and energy consumption through heat exchanger tubes equipped by new perforated V-shaped rectangular winglet (PVRW) turbulators. The effects of the holes intensity on the velocity and temperature contours are additionally investigated. The Reynolds number, hole diameter ratio, and the number of holes selected are in the range of 5000 ≤Re ≤ 18,000, 0≤DR≤0.40, and 0≤N≤14, respectively. Renormalization group (RNG) k-ε turbulent model which is a finite volume solver is utilized for the computational fluid dynamics (CFD) simulation. It was noticed that the proposed perforated turbulators could considerably intensify the thermal performance compared to typical VRW inserts. It is found that the recirculating flow generated by the PVRW augments the fluid mixing and transfers the heat from the pipe walls to the core of the tube. The simulations illustrate that the amount of heat transfer enhances 25.2% reducing the DR from 0.4 to 0.13 at Re = 18,000 and N=14. Also, using PVRW turbulators with N=7 and DR = 0.26 augments the average Nusselt number around 354.3% compared to the circular pipe without inserts. The highest thermal efficiency parameter of η = 2.25 could be obtained at Re = 5000 for the heat exchangers fitted by vortex generators with N= 14 and DR = 0.26.
机译:在该研究中,已经进行了计算模拟,以研究通过新的穿孔V形矩形小翼(PVRW)湍流器装备的热交换器管的湍流特性和能量消耗。另外研究了孔强度对速度和温度轮廓的影响。雷诺数,孔直径比和选择的孔的数量分别为5000≤Re≤18,000,0≤dr≤0.40和0≤N≤14。作为有限音量求解器的重新定化组(RNG)K-ε湍流模型用于计算流体动力学(CFD)仿真。被注意到,与典型的VRW插入件相比,所提出的穿孔湍流器可以大大加强热性能。结果发现,通过PVRW产生的再循环流量增强了流体混合并将热量从管壁转移到管的芯中。该模拟说明热传递量增强了25.2%,在RE = 18,000和N = 14处将DR从0.4〜0.13减小。此外,与N = 7的PVRW湍流器和DR = 0.26增加,与没有插入的圆形管相比,平均露天数约为354.3%。 η= 2.25的最高热效率参数可以在Re = 5000处获得,用于涡流发生器,其具有n = 14和DR = 0.26。

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