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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Reduced-order modelling of an adaptive mesh ocean model
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Reduced-order modelling of an adaptive mesh ocean model

机译:自适应网格海洋模型的降阶建模

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摘要

A novel proper orthogonal decomposition (POD) model has been developed for use with an advanced unstructured mesh finite-element ocean model, the Imperial College Ocean Model (ICOM, described in detail below), which includes many recent developments in ocean modelling and numerical analysis. The advantages of the POD model developed here over existing POD approaches are the ability: 1. To increase accuracy when representing geostrophic balance (the balance between the Coriolis terms and the pressure gradient). This is achieved through the use of two sets of geostrophic basis functions where each one is calculated by basis functions for velocities u and v. 2. To speed up the POD simulation. To achieve this a new numerical technique is introduced, whereby a time-dependent matrix in the discretized equation is rapidly constructed from a series of time-independent matrices. This development imparts considerable efficiency gains over the often-used alternative of calculating each finite element over the computational domain at each time level. 3. To use dynamically adaptive meshes in the above POD model.
机译:已经开发出一种新颖的适当正交分解(POD)模型,用于高级非结构化网格有限元海洋模型,即帝国学院海洋模型(ICOM,下面将详细介绍),其中包括海洋建模和数值分析方面的许多最新进展。 。与现有的POD方法相比,此处开发的POD模型的优势在于:1.在表示地转平衡(科里奥利项和压力梯度之间的平衡)时提高准确性。这是通过使用两组地转基本函数来实现的,其中每组都由速度u和v的基本函数计算得出。2.加快POD模拟。为了实现这一点,引入了一种新的数值技术,从而从一系列与时间无关的矩阵中快速构建离散方程中的与时间有关的矩阵。与在每个时间级别在计算域上计算每个有限元的常用替代方法相比,这种改进使效率得到了显着提高。 3.在以上POD模型中使用动态自适应网格。

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