This work extends force coupling in the topology optimization of fluid-structure interaction problems from hydrostatic to total stresses through the inclusion of viscous stress components. The superconvergent patch recovery technique is implemented to remove the discontinuities in velocity derivatives over the finite elements boundaries. The sensitivity analysis is derived analytically for the superconvergent patch recovery approach and further verified through the use of the complex-step derivative approximation method. Numerical examples demonstrate a differentiation in the optimized designs using pressure vs. total stress coupling depending on the flow characteristics of the design problem.
翻译:这项工作扩大了流体结构相互作用问题从静水到总压力的地形优化的结合。超相趋同的补丁回收技术的实施是为了消除在有限元素边界上速度衍生物的不连续性。敏感度分析是针对超相趋同的补丁回收方法分析得出的,并通过使用复杂步骤衍生物近似法进一步核实。数字实例表明,根据设计问题的流量特点,在优化设计中,根据压力与总压力的混合而采用压力与压力之间的差别。