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SIMULATION OF ACOUSTIC-STRUCTURE INTERACTION BY USING FINITE ELEMENT ANALYSIS IN REACTOR PRESSURE VESSEL OF PWR

机译:PWR反应堆压力容器有限元分析对声学结构相互作用的模拟

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The reactor coolant pump (RCP) in a pressurized water reactor (PWR) plant generates pressure pulsations at multiple frequencies. These pressure pulsations excite the acoustic modes inside the reactor vessel (RV), and cause significant acoustic loads on the reactor intemals (RIs). For verifying the structural integrity of the RIs, it is important to predict the acoustic loads, which is used for vibration analysis of the RIs. Traditionally, an analytical method, assuming that structures are rigid, has been used in order to predict the acoustic pressure distributions inside the RV. However, water in actual PWR plant is heavy enough to influence structural response, so that it is required to use methods for a coupled structural acoustic system. In this article, the coupled structural-acoustic analysis using the commercial software ANSYS is proposed in order to predict the acoustic loads, and the applicability of this method is discussed. The structural-acoustic interactions inside the RV are investigated by element tests and the scale model test. The acoustic pressures measured by these tests are compared with the calculated results.
机译:加压水反应器(PWR)植物中的反应器冷却剂泵(RCP)在多个频率下产生压力脉动。这些压力脉动激发反应器容器(RV)内的声学模式,并在反应器中引起显着的声学载荷(RIS)。为了验证RIS的结构完整性,重要的是预测声载,其用于RIS的振动分析。传统上,假设结构是刚性的分析方法,以预测RV内的声压分布。然而,实际PWR植物中的水足够重以影响结构响应,因此需要使用用于耦合结构声学系统的方法。在本文中,提出了使用商业软件ANSYS的耦合结构声学分析以预测声载,并且讨论了该方法的适用性。 RV内的结构声学相互作用由元素测试和比例模型试验研究。将这些测试测量的声压与计算结果进行比较。

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