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Random Material’s Characteristics to Study Fluid-Structure Interaction

机译:随机材料的特性来研究流固耦合

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In many situations, the vibrating structures are in contact with a fluid (fluid around the hulls of a boat, reservoirs, heat exchangers in power plants, etc.), but the dynamic behavior of the structure can be significantly modified by the presence of the fluid. The sizing must take into account the effects of fluidstructure interaction. Traditionally, the study of mechanical systems fluid-structure interaction is based on a deterministic approach where all the parameters used in the model are a fixed value. But it suffices to having conducted a few experimentations to realize that the limitations of such modeling. Hence it needs to take into accounts the uncertainty in the parameters of mechanical systems. This work proposes to take the characteristics of the structure and the fluid as random and shows the efficiency of such approach. The proposed numerical stochastic method of the modal synthesis extended to reliability study, based on FORM (First Order Reliability Method) and SORM (Second Order Reliability Method) approaches, for solving the large vibro-acoustic problems. The numerical method used takes into account the uncertainties of the input parameters of the two domains. The application of the proposed method is performed on a boat propeller immersed in air and water. To validate the calculation process, the numerical study is compared to an experimental study.
机译:在许多情况下,振动结构会与流体(围绕船体,水库,发电厂中的热交换器等的流体)接触,但是该结构的动态行为可以通过以下方式显着改变:体液。上浆必须考虑流体结构相互作用的影响。传统上,对机械系统流固耦合的研究基于确定性方法,其中模型中使用的所有参数均为固定值。但这足以进行一些实验,以了解这种建模的局限性。因此,它需要考虑机械系统参数的不确定性。这项工作建议将结构和流体的特征视为随机的,并证明这种方法的效率。所提出的模态综合数值随机方法扩展到可靠性研究,该方法基于FORM(一阶可靠性方法)和SORM(二阶可靠性方法)方法,用于解决较大的振动声问题。所使用的数值方法考虑了两个域的输入参数的不确定性。所提出方法的应用是在浸没在空气和水中的船用螺旋桨上进行的。为了验证计算过程,将数值研究与实验研究进行了比较。

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