首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >UNSTEADY BUOYANT JET SIMULATIONS USING DYNAMIC CONNECTION SCHEME OF HYDROSTATIC AND NON-HYDROSTATIC ZONE
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UNSTEADY BUOYANT JET SIMULATIONS USING DYNAMIC CONNECTION SCHEME OF HYDROSTATIC AND NON-HYDROSTATIC ZONE

机译:静水区与非静水区动态连接方案的非稳定浮力射流模拟

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Most of ocean models employ hydrostatic approximation because the horizontal scale is usually much larger than the vertical scale in oceanic phenomena. In hydrostatic approximation, dynamic pressure is neglected and the momentum equation in vertical direction needs not to be solved. But for the phenomena of buoyant jet from the sea bottom such as submarine groundwater discharge, hydrothermal plume and so on, hydrodynamic pressure cannot be neglected and the momentum equation of vertical direction must to be taken into account. Non-hydrostatic analysis requires so much computation time that it is usually difficult to calculate the current field in the wide ocean area by this approach. On the other hand, analysis assuming the hydrostatic approximation needs less computational time and usually gives reasonable results for large scale ocean phenomena such as tidal current. In the present study, the authors developed a new type of ocean model for multi-scale analysis, which conducts hydrostatic analysis for phenomena in wide area and non-hydrostatic analysis for the detail flow around the buoyant jet simultaneously. The application limit of hydrostatic approximation for ocean model was investigated, and a dynamic connection method of hydrostatic zone with non-hydrostatic zone was developed. By theoretical consideration employing parameter Sand 6" which represent the ratio of grid size Az to Ax and the ratio of vertical velocity to horizontal velocity, it was found that hydrostatic approximation can be applied if & and C are minute. To examine the developed method, simulations for lock-exchange problem and vertical jet under oscillating current were conducted. The result by the present model was similar to that of non-hydrostatic model in the case that hydrostatic approximation was applied on the area of
机译:大多数海洋模型都采用静水逼近法,因为在海洋现象中,水平尺度通常比垂直尺度大得多。在流体静力逼近中,动压可以忽略,并且不需要求解垂直方向上的动量方程。但是对于海底喷射水,热液羽流等海底浮力现象,不能忽略水动力压力,必须考虑垂直方向的动量方程。非静水力分析需要大量的计算时间,因此通常很难通过这种方法来计算广阔海洋区域中的当前场。另一方面,假设静水力近似的分析需要较少的计算时间,并且对于诸如潮汐之类的大规模海洋现象通常可以给出合理的结果。在本研究中,作者开发了一种用于多尺度分析的新型海洋模型,该模型对宽区域内的现象进行静水力分析,并对浮力射流周围的细节流同时进行非静水力分析。研究了海洋模型静水力逼近的应用范围,发展了静水力带与非静水力带的动态连接方法。通过理论上的考虑,使用代表网格尺寸Az与Ax的比率以及垂直速度与水平速度的比率的参数Sand 6“,可以发现如果&和C很小,则可以应用静水力逼近。要检验所开发的方法,对锁交换问题和振荡电流下的垂直射流进行了模拟,在

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