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Experimental investigation on flow characteristics of pressure drop oscillations in a closed natural circulation loop

机译:自然闭环中压降振荡流动特性的实验研究

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An experimental investigation was conducted in a closed natural circulation (NC) loop to study the characteristics of pressure drop oscillations (PDO) under low pressure condition. A 3 × 3 rod bundle channel was used as the test section. The experimental results show that PDO can occur in the closed NC loop when the pressurizer is installed on the upstream of the heating channel. The large amplitude thermal–hydraulic parameters oscillations and reverse flow are the main characteristics for PDO. The oscillation amplitude and reverse flow rate of PDO can be enlarged by increasing the heat flux. Increasing the inlet subcooling degree can help to suppress the PDO occurrence in the closed NC loop. The flow instability boundary is obtain and PDO mainly occurs in the region of the outlet equilibrium quality from −0.008 to 0.012 in present experiment. The interaction between the vapor expansion in the heating channel and the compressibility of pressurizer is the main reason for the occurrence of PDO in the closed NC loop. The effects of compressible volume positions on flow instability was also studied. Moving the pressurizer from the upstream of the heating channel to the downstream can eliminate PDO while density wave oscillations (DWO) can still happen. A tentative explanation for the influence mechanism of compressible volume positions on flow instability in the closed NC loop is reported.
机译:在封闭的自然循环(NC)回路中进行了实验研究,以研究低压条件下的压降振荡(PDO)特性。将3××3棒束通道用作测试部分。实验结果表明,当加压器安装在加热通道的上游时,PDO会在闭合的NC回路中发生。大幅度的热工参数波动和逆流是PDO的主要特征。可以通过增加热通量来增大PDO的振荡幅度和反向流量。增加入口过冷度可以帮助抑制在闭合NC回路中发生PDO。在本实验中,获得了流动不稳定性边界,PDO主要发生在出口平衡质量为-0.008至0.012的区域。加热通道中的蒸汽膨胀与增压器的可压缩性之间的相互作用是在封闭的NC回路中发生PDO的主要原因。还研究了可压缩体积位置对流动不稳定性的影响。将增压器从加热通道的上游移动到下游可以消除PDO,而密度波振荡(DWO)仍然会发生。报告了可压缩体积位置对封闭式NC回路中流动不稳定性的影响机理的初步解释。

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