首页> 外文会议>International Mechanical Engineering Congress and Exposition >NUMERICAL INVESTIGATION OF CONVECTIVE HEAT TRANSFER ON A DYNAMIC WALL HEAT EXCHANGER WITH VARYING AMPLITUDE AND FREQUENCY
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NUMERICAL INVESTIGATION OF CONVECTIVE HEAT TRANSFER ON A DYNAMIC WALL HEAT EXCHANGER WITH VARYING AMPLITUDE AND FREQUENCY

机译:不同振幅和频率的动态壁热交换器对流热传递的数值研究

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The current work aims to investigate the thermo-hydraulic performances of a dynamic wall heat exchanger by varying amplitude and frequency of the oscillating waveform. The lower wall of the channel is exposed to constant heat flux, the upper insulating wall is deforming in a sinusoidal waveform, and water is taken as the working fluid. The governing partial differential equations are solved by using the Arbitrary Lagrangian-Eulerian finite element method. The study has been performed in the transient regime for up to 1.0 second. At first the effects of frequency variation over the average mass flow rate, convective heat transfer coefficient, and the average liquid temperature have been observed for a particular amplitude of the dynamic wall. It has been found that the mass flow rate of water increases linearly with increasing frequency. Convective heat transfer coefficient decreases with increasing frequency up to 50 Hz, then starts to increase notably. Interestingly, the fluctuating average liquid temperature decreases and reaches a steady-state faster with increasing frequency. To explore the effect of amplitude over heat transfer characteristics, the amplitude ratio of the sinusoidal wave is varied maintaining a constant frequency of oscillation. It has been observed that with increasing amplitude, both mass flow rate and convective heat transfer coefficient increase exponentially. Increasing amplitude ratio from 0.5 to 0.9 results in an increment in the convective heat transfer coefficient by about 5 times. Although, the average liquid temperature decreases and reaches a steady state faster with increasing amplitude, initially the peak temperature of the water is recorded for the highest amplitude.
机译:目前的工作旨在通过改变波形的幅度和频率来研究动态壁热交换器的热液压性能。通道的下壁暴露于恒定的热通量,上绝缘壁在正弦波形中变形,并将水作为工作流体。通过使用任意拉格朗日 - 欧拉有限元方法来解决控制局部微分方程。该研究已经在瞬态制度中进行了高达1.0秒。首先,对于平均质量流量,对流传热系数和平均液体温度的频率变化的影响对于动态壁的特定幅度。已经发现,随着频率的增加,水的质量流量增加。对流传热系数随着高达50Hz的频率增加而降低,然后开始显着增加。有趣的是,波动的平均液体温度随着频率的增加而达到稳态更快。为了探讨幅度在传热特性上的效果,正弦波的幅度比在保持恒定的振荡频率。已经观察到,随着幅度的增加,质量流量和对流传热系数呈指数增加。将0.5至0.9的幅度比增加在对流传热系数中的增量约5次。尽管,平均液体温度降低并且随着幅度的增加而达到稳定状态,但最初将对水的峰值温度记录为最高幅度。

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