In this work, a cost-efficient space-time adaptive algorithm based on the Dual Weighted Residual (DWR) method is developed and studied for a coupled model problem of flow and convection-dominated transport. Key ingredients are a multirate approach adapted to varying dynamics in time of the subproblems, weighted and non-weighted error indicators for the transport and flow problem, respectively, and the concept of space-time slabs based on tensor product spaces for the data structure. In numerical examples the performance of the underlying algorithm is studied for benchmark problems and applications of practical interest. Moreover, the interaction of stabilization and goal-oriented adaptivity is investigated for strongly convection-dominated transport.
翻译:在这项工作中,根据双重加权残余物(DWR)方法,开发并研究一种具有成本效益的空间时适应算法,以结合流动和对流主导运输的示范问题,关键要素是:一种适应分问题时期不同动态的多率方法,分别针对运输和流动问题的加权和非加权误差指标,以及基于数据结构的高压产品空间的时空板概念;在数字实例中,研究基本算法的性能,以研究基准问题和实际利益应用;此外,为高度平衡占主导地位的运输,研究稳定与目标导向适应性之间的相互作用。