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Long-wave explicit and Short-wave implicit (LESI) treatment of the barotropic mode to accurately calculate slow modes in ocean models

机译:正压模式的长波显式和短波隐式(LESI)处理可准确计算海洋模型中的慢模

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摘要

Many ocean models are primarily concerned with calculating currents of slowly propagating modes that are dynamically associated with buoyancy, Coriolis, field accelerations, and slowly-varying forcing. Calculating such slow modes involves adjustments by the very much faster barotropic mode. In order to minimize the computational cost, two approaches are commonly used. The split-explicit method solves for both fast and slow modes explicitly but with different time steps. The semi-implicit method uses the same time step for fast and slow modes but treats the fast barotropic waves implicitly and the slow modes explicitly. The present work demonstrates a refinement to the semi-implicit method. Weighted Jacobi iterations are used to low-pass filter the fast barotropic mode so that long wavelengths can be treated explicitly. The short-wave part of the fast barotopic mode is still treated implicitly. Damping of the fast barotropic modes is less severe than for the corresponding implicit calculation. Importantly, tests show that a slow internal wave is accurately modelled and the solution is stable, even with the addition of barotropic noise. The method is demonstrated using a three-dimensional model of a lagoon system.
机译:许多海洋模型主要关注计算与传播浮力,科里奥利(Coriolis),场加速度和缓慢变化的强迫动态相关的缓慢传播模式的洋流。计算这种慢速模式需要通过非常快的正压模式进行调整。为了最小化计算成本,通常使用两种方法。 split-explicit方法显式地解决快速模式和慢速模式,但是具有不同的时间步长。半隐式方法对快速模式和慢速模式使用相同的时间步长,但是隐式地对待快速正压波和显式对待慢速波。本工作展示了对半隐式方法的改进。加权Jacobi迭代用于对快速正压模式进行低通滤波,以便可以明确处理长波长。快速气压模式的短波部分仍被隐式处理。快速正压模式的阻尼不如相应的隐式计算严重。重要的是,测试表明,即使添加了正压噪声,也可以对缓慢的内部波进行精确建模,并且解决方案稳定。使用泻湖系统的三维模型演示了该方法。

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