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QUAGMIRE v1.3: a quasi-geostrophic model for investigating rotating fluids experiments

机译:QUAGMIRE v1.3:用于研究旋转流体实验的准地转模型

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QUAGMIRE is a quasi-geostrophic numerical model for performing fast, high-resolution simulations of multi-layer rotating annulus laboratory experiments on a desktop personal computer. The model uses a hybrid finite-difference/spectral approach to numerically integrate the coupled nonlinear partial differential equations of motion in cylindrical geometry in each layer. Version 1.3 implements the special case of two fluid layers of equal resting depths. The flow is forced either by a differentially rotating lid, or by relaxation to specified streamfunction or potential vorticity fields, or both. Dissipation is achieved through Ekman layer pumping and suction at the horizontal boundaries, including the internal interface. The effects of weak interfacial tension are included, as well as the linear topographic beta-effect and the quadratic centripetal beta-effect. Stochastic forcing may optionally be activated, to represent approximately the effects of random unresolved features. A leapfrog time stepping scheme is used, with a Robert filter. Flows simulated by the model agree well with those observed in the corresponding laboratory experiments.
机译:QUAGMIRE是一种准地貌数值模型,用于在台式个人计算机上执行多层旋转环空实验室实验的快速,高分辨率模拟。该模型使用混合有限差分/频谱方法对每个层中圆柱几何形状中耦合的非线性非线性偏微分运动方程进行数值积分。 1.3版实现了两个具有相同静置深度的流体层的特殊情况。通过差动旋转的盖或通过松弛到指定的流函数或潜在的涡度场或两者来迫使流动。耗散是通过在水平边界(包括内部界面)处进行埃克曼层泵送和抽吸实现的。包括弱界面张力的影响,以及线性形貌β效应和二次向心β效应。可以随机激活随机强制,以大致表示随机未解析特征的效果。使用了带有Robert滤波器的跨越式时间步进方案。该模型模拟的流量与相应实验室实验中观察到的流量非常吻合。

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