Lee Kwon-Yeong, Kim Wan-Soo
Department of Mechanical and Control Engineering, Handong Global University;
Department of Mechanical and Control Engineering, Handong Global University.
J Vis Exp. 2017 Sep 26(127):55972. doi: 10.3791/55972.
Under the design conditions of a research reactor, the siphon phenomenon induced by pipe rupture can cause continuous outward flow of water. To prevent this outflow, a control device is required. A siphon breaker is a type of safety device that can be utilized to control the loss of coolant water effectively. To analyze the characteristics of siphon breaking, a real-scale experiment was conducted. From the results of the experiment, it was found that there are several design factors that affect the siphon breaking phenomenon. Therefore, there is a need to develop a theoretical model capable of predicting and analyzing the siphon breaking phenomenon under various design conditions. Using the experimental data, it was possible to formulate a theoretical model that accurately predicts the progress and the result of the siphon breaking phenomenon. The established theoretical model is based on fluid mechanics and incorporates the Chisholm model to analyze two-phase flow. From Bernoulli's equation, the velocity, quantity, undershooting height, water level, pressure, friction coefficient, and factors related to the two-phase flow could be obtained or calculated. Moreover, to utilize the model established in this study, a siphon breaker analysis and design program was developed. The simulation program operates on the theoretical model basis and returns the result as a graph. The user can confirm the possibility of the siphon breaking by checking the shape of the graph. Furthermore, saving the entire simulation result is possible and it can be used as a resource for analyzing the real siphon breaking system. In conclusion, the user can confirm the status of the siphon breaking and design the siphon breaker system using the program developed in this study.
在研究堆的设计条件下,管道破裂引发的虹吸现象会导致水持续向外流出。为防止这种流出,需要一种控制装置。虹吸破坏器是一种可有效用于控制冷却剂水损失的安全装置。为分析虹吸破坏的特性,进行了实物尺寸实验。从实验结果发现,有几个设计因素会影响虹吸破坏现象。因此,需要开发一种能够预测和分析各种设计条件下虹吸破坏现象的理论模型。利用实验数据,有可能建立一个能准确预测虹吸破坏现象进展和结果的理论模型。所建立的理论模型基于流体力学,并纳入齐索姆模型来分析两相流。根据伯努利方程,可以获得或计算速度、流量、下冲高度、水位、压力、摩擦系数以及与两相流相关的因素。此外,为应用本研究建立的模型,开发了一个虹吸破坏器分析与设计程序。该模拟程序基于理论模型运行,并以图形形式返回结果。用户可以通过查看图形形状来确认虹吸破坏的可能性。此外,可以保存整个模拟结果,并且它可作为分析实际虹吸破坏系统的资源。总之,用户可以使用本研究开发的程序来确认虹吸破坏的状态并设计虹吸破坏器系统。