阻塞条件下板装配多通道射流实验研究

Hu Huijian, Wang Peng, Li Dongyang, Sichao Tan
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摘要

在核领域,采用板式燃料组件的反应堆在出口形成多个射流。所以,研究多个喷流来了解冷却剂离开核心时的行为是很有意义的。本文利用PIV技术研究了低雷诺数下9种射流的流动特性。首先,速度场显示射流外部压力大于射流内部压力,导致射流在z/w = 0-8处偏转向内收敛。然后对中心平面不同雷诺数下的速度场进行了分析,发现流动分布相似。然后,对特定条件下的射流进行了详细的分析,并对合并点进行了讨论。同时,本文还计算了一阶速度张量。此外,本文还分析了中央窄通道阻塞后的射流场。在本实验中,用堵头将5号射流阻断1/3。在这种情况下,讨论了流体的再分配。建立了基于PIV技术的流量计算方法,并与实际流量计数量进行了比较,发现该计算方法具有较高的准确性。另一方面,实验发现各通道内的流量分布并不均匀,阻塞条件使边缘通道的流量增加,导致阻塞相邻通道的流量减少。
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Experimental Study on Multi-Channel Jets in Plate Assembly Under Blockage Condition
In the nuclear field, the reactor using plate fuel assembly forms multiple jets at exit. So, it’s meaningful to study multiple jets to learn the behavior of the coolant when it leaves the core. This paper uses PIV technology to study the flow characteristics of 9 jets at low Reynolds number. Firstly, the velocity field reveals that the pressure outside the jet is greater than the inside of the jet, which causes the jet to deflect and converge inward at z/w = 0–8. Then, the velocity field with different Re number is analyzed in the center plane, and find that the flow distribution is similar. Then, a detailed analysis is performed on the jet under specific conditions, and the merge point is discussed in the paper. At the same time, the first-order velocity tensor are also calculated in this paper. In addition, this article also analyzes the jet flow field after the central narrow channel was blocked. In this experiment, a plug was used to block the No. 5 jet by 1/3. And the flow redistribution is discussed in this case. The methods of flow calculation using PIV technology is established and compared with the real number of flowmeters, it’s found that the calculation method is rather accurate. On the other hand, the experiment find that the distribution of flow in each channel is not uniform, and the blocking condition make an increase in the flow of edge channels, which leads to the decreasing of flow in the blocked adjacent channel.
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