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Quantitative flow visualization in the distributor of a plate-fin heat exchanger

机译:板翅式换热器分配器中的定量流可视化

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The flow distribution and head loss in the distributor of a plate-fin heat exchanger were experimentally investigated using quantitative and qualitative flow visualization methods. The flow distribution and head loss are important parameters related to the thermal performance and economic design of the heat exchangers. The effect of the different distributor angles (30 degrees, 45 degrees, and 60 degrees) and the alignment configuration at the junction in the distributor were studied. The Reynolds number based on the hydraulic diameter was varied from 100 to 1200. Flow visualization using the dye injection and hydrogen bubble methods was applied to capture the qualitative flow structure inside and around the distributor. Digital particle image velocimetry was used to measure the instantaneous velocity fields, and the flow maldistribution was quantified by using the averaged velocity information. The qualitative flow visualization showed the variation of streamwise velocity in the end of the distributor and the existence of the secondary flow at the junction. From the velocity and pressure measurement, we found that the 30 degrees model has the worst flow distribution and the smallest head loss among other models and the 60 degrees model with misaligned configuration has the best flow distribution and the largest head loss.Graphical abstract
机译:使用定量和定性流动可视化方法,对板翅式换热器中的流量分布和压头损失进行了实验研究。流量分布和压头损失是与热交换器的热性能和经济设计有关的重要参数。研究了不同分配器角度(30度,45度和60度)的影响以及分配器中接合处的对齐配置。基于水力直径的雷诺数在100到1200之间变化。使用染料注入和氢气泡方法进行流动可视化,以捕获分配器内部和周围的定性流动结构。使用数字粒子图像测速仪测量瞬时速度场,并使用平均速度信息量化流量分布不均。定性流动可视化显示了分配器末端的水流速度变化以及在连接处存在二次流动。通过速度和压力测量,我们发现30度模型具有最差的流量分布和最小的水头损失,而配置不对齐的60度模型具有最佳的流量分布和最大的水头损失。

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