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A co-simulation method for system-level simulation of fluid-structure couplings in hydraulic percussion units

机译:液压冲击单元流固耦合系统级仿真的协同仿真方法

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This paper addresses a co-simulation method for fluid power driven machinery equipment, i.e. oil hydraulic machinery. In these types of machinery, the fluid-structure interaction affects the end-product performance to a large extent, hence an efficient co-simulation method is of high importance. The proposed method is based on a ID system model representing the fluid components of the hydraulic machinery, within which structural 3D Finite Element (FE) models can be incorporated for detailed simulation of specific sub-models or complete structural assemblies. This means that the fluid system simulation will get a more accurate structural response, and that the structural simulation will get more correct fluid loads at every time step, compared to decoupled analysis. Global system parameters such as fluid flow, performance and efficiency can be evaluated from the ID system model simulation results. From the 3D FE-models, it is possible to evaluate displacements, stresses and strains to be used in stress analysis, fatigue evaluation, acoustic analysis, etc. The method has been implemented using two well-known simulation tools for fluid power system simulations and FE-simulations, respectively, where the interface between the tools is realised by use of the Functional Mock-up Interface standard. A simple but relevant model is used to validate the method.
机译:本文提出了一种针对流体动力驱动的机械设备(即石油液压机械)的协同仿真方法。在这些类型的机械中,流固耦合在很大程度上影响最终产品的性能,因此,有效的协同仿真方法非常重要。所提出的方法基于代表液压机械流体组件的ID系统模型,可以将结构3D有限元(FE)模型纳入其中,以对特定子模型或完整的结构组件进行详细的仿真。与解耦分析相比,这意味着流体系统仿真将获得更准确的结构响应,并且结构仿真将在每个时间步长获得更正确的流体载荷。可以从ID系统模型仿真结果评估全局系统参数,例如流体流量,性能和效率。从3D FE模型中,可以评估用于应力分析,疲劳评估,声学分析等中的位移,应力和应变。该方法已使用两个著名的仿真工具实现,用于流体动力系统仿真和分别进行FE模拟,其中工具之间的接口通过使用功能模型接口标准实现。使用一个简单但相关的模型来验证该方法。

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