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STRUCTURAL MODIFICATION OF A PIPE UNDER HARMONIC EXCITATION USING AN HYBRID NUMERICAL/EXPERIMENTAL METHOD

机译:混合激励下管材在谐波激励下的结构修正

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Vibrations generated by centrifugal pumps are difficult to predict at the design stage, for it is hardly possible to accurately determine the natural frequencies of pipes and to avoid coincidences with the blade pass frequency of the pump and its harmonics. One is often led to modify the existing structure, by adding stiffness, mass or damping.This paper illustrates this point on a pipe connected to a pump in a nuclear power plant operated by EDF (Electricite de France). In October 2010, abnormal vibrations were measured on a thin pipe at the outlet of a pump in a powerplant in France. The French nuclear regulatory commission asked EDF to perform a diagnosis and to define solutions within a few months.EDF/R&D division has used an original method developed in 2004 based on hybrid data, and called LMME-SDM (for Local Model Mode-shapes Expansion Structural Dynamic Modification).The main objective is to define a structure modification able to remove all natural frequencies close to the harmonic excitation. For the purpose of the study, we need a numerical model, which should be fairly correct from a static point of view, but which is not necessarily updated from a dynamic point of view, and an experimental modal analysis carried out under real conditions on the pipe.During the experimental modal analysis, a test of added mass has been carried out so that the method can be validated by comparing the predicted and the observed frequency.This method has already been used in industrial cases in former studies [3], however the study presented here has reached a higher level in complexity. Even if this method is able to give reasonable results compared to measurements, it is close to its limits.
机译:在设计阶段很难预测离心泵产生的振动,因为很难准确确定管道的固有频率,并且很难避免与泵的叶片通过频率及其谐波相一致。人们常常通过增加刚度,质量或阻尼来修改现有结构。 本文在由EDF(Electricite de France)运营的核电厂的泵上连接的管道上说明了这一点。 2010年10月,法国发电厂的泵出口处的细管上测量到异常振动。法国核监管委员会要求EDF在几个月内进行诊断并确定解决方案。 EDF / R&D部门使用了一种基于混合数据的2004年开发的原始方法,称为LMME-SDM(用于局部模型模式形状扩展结构动态修改)。 主要目的是定义一种结构修改,该结构修改能够消除所有接近谐波激励的固有频率。为了研究的目的,我们需要一个数值模型,该模型从静态的观点来看应该是相当正确的,但是从动态的观点来看并不一定是要更新的,并且需要在真实条件下对模型进行实验模态分析。管道。 在实验模态分析过程中,对附加质量进行了测试,以便可以通过比较预测频率和观察频率来验证该方法。 在以前的研究中,这种方法已经在工业案例中使用[3],但是这里介绍的研究已经达到了更高的复杂度。即使与测量相比,该方法能够给出合理的结果,也接近其极限。

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