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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Calculation of Friction Factors and Nusselt Numbers for Twisted Elliptical Tube Heat Exchangers Using Nek5000
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Calculation of Friction Factors and Nusselt Numbers for Twisted Elliptical Tube Heat Exchangers Using Nek5000

机译:利用NEK5000计算扭曲椭圆管热交换器摩擦因子和篮板数

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摘要

Twisted elliptical tube geometries for heat exchanger design are expected to offer significant enhancement in heat transfer with a marginal increase in frictional losses. The presented work focuses on computational fluid dynamics (CFD) simulations of heated molten salt flows through twisted elliptical tube geometries at low modified Froude numbers. The objectives of this work are to evaluate the available correlations at low Froude numbers and to determine the impact of using a small gap to resolve contact points. The spectral element CFD code Nek5000 was used for all simulations, which were performed in periodic domains of triangular and square unit cells surrounding a single tube through a complete twist using an explicit filtering large eddy simulation (LES) method. The simulation methodology was validated by comparing to the experimental data of Tan et al. Excellent agreement was observed for this comparison. The Dzyubenko correlation for transitional flow was evaluated for a range of Froude numbers. This correlation demonstrated good agreement with LES results at high modified Froude number. As Froude number was decreased toward the bounds of the correlation, the agreement worsened. Cases were then simulated at low Froude number, testing the effects of tube spacing. It was determined that the laminar case for the square unit cell is the most affected by increasing gap size, which should be minimized to mitigate the effect. In the triangular unit cell, the laminar flow regime is also more significantly impacted by increasing gap size compared to the turbulent flow regime which was only marginally impacted.
机译:热交换器设计的扭曲椭圆管几何形状将在热传递中具有显着的增强,并在摩擦损失下的边际增加。所提出的工作侧重于加热熔盐的计算流体动力学(CFD)模拟通过低改进的FRoude号码流过扭曲的椭圆形几何形状。这项工作的目标是评估低FRoude号码的可用相关性,并确定使用小差距来解决接触点的影响。光谱元件CFD码NEK5000用于所有模拟,其在三角形和方形单元电池的周期性域中通过完全扭曲使用明确的过滤大涡模拟(LES)方法来执行三角形和方形单元电池的周期性结构域。通过比较Tan等人的实验数据来验证模拟方法。为此比较观察了良好的协议。对过渡流的Dzyubenko相关性评估了一系列Froude数字。这种相关性表现出在高修改的Froude号码下的LES结果良好。随着弗劳德的数量下降到相关的界限,协议恶化。然后在低弗劳德数进行模拟病例,测试管间距的影响。确定方形单元电池的层状壳体是通过增加间隙尺寸的最大影响,这应该最小化以减轻效果。在三角形单元电池中,与湍流状态相比,层状流动状态也更加显着地影响,与湍流的流量相比仅增加幅度尺寸。

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