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STUDY ON FLOW INDUCED VIBRATION ANALYSIS AND EVALUATION FOR HEAT TRANSFER TUBE OF STEAM GENERATOR

机译:流量诱导蒸汽发生器传热管振动分析及评价研究

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The heat transfer tube of steam generator is an important part of the primary loop boundary, the integrity is crucial to the safe operation of the whole reactor system; the flow induced vibration is one of the main factors leading to the failure of heat transfer tube in steam generator. Both ASME and RG1.20 have made a clear requirement for the analysis and evaluation of the flow induced vibration of steam generator. The flow induced vibration of heat transfer tube in two-phase flow is the difficult and important content in the analysis. In this paper, the finite element model of heat transfer tube is established and the modal analysis is carried out. Then in order to evaluate the influence of two-phase flow in the secondary side and support boundary constraint, the analytical results are compared with the natural frequencies of the heat transfer tube measured in the two-phase flow test. On the basis of accurate simulation of the dynamic characteristics of heat transfer tube in two-phase flow, the paper calculate the turbulent excitation response and the fluidelastic instability ratio aiming at the main mechanism causing the flow induced vibration of heat transfer tube in two-phase flow. Firstly, the modified PSD of turbulent excitation is proposed on the foundation of root mean square displacement amplitude of heat transfer tube measured in two-phase flow test. The calculation result of the amplitude of heat transfer tube with different void fraction can envelope the test result by using the modified PSD as input, and the safety margin is reasonable. Then we also verify whether the analysis conclusion of fluidelastic instability is in agreement with the test. Finally, the analytical technique is applied to the analysis of flow induced vibration of steam generator to verify the design of structure. The paper studies on flow induced vibration analysis and evaluation a heat transfer tube of steam generator in two-phase flow. The analysis program of flow induced vibration on the basis of the test results. The investigation can be used for the risk prediction and evaluation of flow induced vibration of heat transfer tube in two-phase flow, solve the technical difficulties of flow induced vibration analysis in two-phase flow, and provide the technical support for the flow induced vibration analysis of steam generator.
机译:蒸汽发生器的传热管是主要环边界的重要部分,完整性对于整个反应器系统的安全操作至关重要;流动诱发的振动是导致蒸汽发生器中传热管失败的主要因素之一。 ASME和RG1.20都对蒸汽发生器的流动诱导的振动进行了清晰的分析和评估。两相流中传热管的流动诱导的振动是分析中难度和重要的内容。本文建立了传热管的有限元模型,进行了模态分析。然后为了评估二次侧的两相流的影响和支持边界约束,将分析结果与在两相流试验中测量的传热管的固有频率进行比较。基于两相流传热管的动态特性的准确模拟,纸张计算湍流激励响应和流动不稳定比,瞄准主要机制,导致两相中传热管的流量诱导振动流动。首先,提出了在两相流检测中测量的传热管的根部均方位移幅度的基础上改进的PSD。具有不同空隙部分的传热管幅度的计算结果可以通过使用改进的PSD作为输入来包络测试结果,安全裕度是合理的。然后我们还验证了流动不稳定的分析是否与测试一致。最后,将分析技术应用于蒸汽发生器的流量诱导振动分析,以验证结构的设计。流动诱导振动分析与评价两相流蒸汽发生器传热管的研究。基于测试结果的流动诱发振动分析计划。调查可用于两相流流量诱导的流量诱导振动的风险预测和评估,解决了两相流流动诱导振动分析的技术难点,并为流动诱导的振动提供了技术支持蒸汽发生器分析。

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