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APPLICATIONS OF FLUID STRUCTURE INTERACTION ANALYSIS TECHNIQUES FOR FLOW REGULATION

机译:流体结构相互作用分析技术在流量调节中的应用

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In fluid-structure interactions (FSI), one or more structures interact with incompressible or compressible fluids. These problems are non-linear multi-physics phenomena. Most FSI problems require a numerical solution rather than an analytical solution (Gene, 2012). This is particularly true for problems involving large deformations of elastomers and for problems related to plugging of flow. The classical two way coupling of fluid and structural solver does not work well and at times fail to reach a solution. Using a monolithic solver and nonconforming mesh techniques like Coupled Eulerian Lagrange (CEL) or Arbitrary Lagrange Eulerian (ALE) formulations we show solutions for such large deformation and plugging type FSI problems. The technique has been applied to help develop an industrial flow regulator. The regulator uses a single piece elastomeric material that undergoes deformation due to pressure drop in the system. The deformation in turn restricts flow in the system and potentially developing flow related noise in the system. Rigorous FSI analyses techniques were used to design and develop the concepts minimizing prototype development time. The FSI analysis not only helped in designing the mechanical function of the regulator but also the helped evaluate the acoustic noise level in the system. The resulting design performance was validated by controlled performance tests. The design was shown to work reliably and meet performance requirements.
机译:在流体-结构相互作用(FSI)中,一个或多个结构与不可压缩或可压缩流体相互作用。这些问题是非线性多物理现象。大多数FSI问题都需要数值解而不是解析解(Gene,2012年)。对于涉及弹性体大变形的问题以及与流塞有关的问题尤其如此。流体和结构求解器的经典双向耦合效果不佳,有时无法解决。使用整体求解器和非协调网格技术,例如耦合欧拉拉格朗日(CEL)或任意拉格朗日欧拉(ALE)公式,我们展示了解决此类大变形和堵漏FSI问题的解决方案。该技术已被用于帮助开发工业流量调节器。调节器使用单片弹性材料,由于系统中的压降而发生变形。变形继而限制了系统中的流量,并潜在地在系统中产生了与流量相关的噪声。严格的FSI分析技术用于设计和开发概念,以最大程度地减少原型开发时间。 FSI分析不仅有助于设计调节器的机械功能,而且有助于评估系统中的噪声水平。通过控制性能测试验证了最终的设计性能。该设计被证明可以可靠地工作并满足性能要求。

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