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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Efficient uncertainty propagation for network multiphysics systems
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Efficient uncertainty propagation for network multiphysics systems

机译:网络多物理场系统的有效不确定性传播

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We consider a multiphysics system with multiple component PDE models coupled together through network coupling interfaces, that is, a handful of scalars. If each component model contains uncertainties represented by a set of parameters, a straightforward uncertainty quantification study would collect all uncertainties into a single set and treat the multiphysics model as a black box. Such an approach ignores the rich structure of the multiphysics system, and the combined space of uncertainties can have a large dimension that prohibits the use of polynomial surrogate models. We propose an intrusive methodology that exploits the structure of the network coupled multiphysics system to efficiently construct a polynomial surrogate of the model output as a function of uncertain inputs. Using a nonlinear elimination strategy, we treat the solution as a composite function: the model outputs are functions of the coupling terms, which are functions of the uncertain parameters. The composite structure allows us to construct and employ a reduced polynomial basis that depends on the coupling terms. The basis can be constructed with many fewer PDE solves than the naive approach, which results in substantial computational savings. We demonstrate the method on an idealized model of a nuclear reactor.
机译:我们考虑一个多物理场系统,该系统具有通过网络耦合接口(即少数标量)耦合在一起的多个组件PDE模型。如果每个组件模型都包含由一组参数表示的不确定性,则直接进行的不确定性量化研究会将所有不确定性收集到一个单一的集合中,并将多物理场模型视为一个黑箱。这种方法忽略了多物理场系统的丰富结构,不确定性的组合空间可能具有较大的维度,从而禁止使用多项式替代模型。我们提出了一种侵入性方法,该方法利用网络耦合的多物理场系统的结构来有效地构建作为不确定输入函数的模型输出的多项式替代。使用非线性消除策略,我们将解决方案视为复合函数:模型输出是耦合项的函数,这是不确定参数的函数。复合结构允许我们构造并采用依赖于耦合项的简化多项式基础。与单纯方法相比,可以用更少的PDE解算来构建基础,从而节省大量计算量。我们在理想的核反应堆模型上演示了该方法。

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