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Numerical and Experimental Investigation on Influence Factors of the leakage rate for a Large-size Pressure Gate with Rubber O-ring Sealing Structure

机译:橡胶O形圈密封结构大尺寸压力闸阀漏率影响因素的数值和实验研究

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Leakage of these hatches with large sizes must be strictly controlled in any operating conditions for the safety of a nuclear power plant. In this work, an effective numerical approach to construct a leakage prediction model to analysis the tightness performance of the rubber O-ring sealing structure of a large-size pressure gate was proposed. The model is built based on the transport theory of the porous media, and combined the micro roughness effect and the macro mechanical behavior on the leak rate, which were obtained by using Finite Element Method (FEM) simulation. A series of experiments are designed to validate the results predicted by this model. Experimental results are in good agreement with that predicted by the proposed model, which verifies the rationality and preciseness of the model. Based on the model, a further research to understand the effect of various factors on the leak characteristics was made. The results show that the tightness performance of the O-ring with an elliptical trapezoid cross-section is better than that with a round cross-section. And the rubber with lower hardness can provide a better sealing capability during accidents (corresponding to the inside pressure increasing conditions). The new model is very helpful in the optimum design of a rubber sealing structure.
机译:这些舱口具有大尺寸的泄漏必须严格控制在核电站安全的任何操作条件下。在这项工作中,提出了一种实现泄漏预测模型来分析大尺寸压力门的橡胶O形圈密封结构的耐漏预测模型的有效数值方法。该模型基于多孔介质的运输理论构建,并将微粗糙度效应和宏观力学行为组合通过使用有限元方法(FEM)模拟而获得的泄漏率。旨在验证该模型预测的结果的一系列实验。实验结果与所提出的模型预测的实验结果符合,这验证了模型的合理性和精确性。基于该模型,进一步研究了了解各种因素对泄漏特性的影响。结果表明,具有椭圆形梯形横截面的O形环的紧密性能优于圆形横截面。硬度较低的橡胶可以在事故期间提供更好的密封能力(对应于内部压力增加条件)。新模型在橡胶密封结构的最佳设计方面非常有用。

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