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Computing 3-D atmospheric trajectories for complex orography: Application to a case study of strong convection in the western Mediterranean

机译:计算复杂地形的3D大气轨迹:在地中海西部强对流案例研究中的应用

摘要

A three-dimensional Lagrangian model (TRACOMX) has been developed to simulate large-scale atmospheric transport over complex terrain. Trajectories are integrated in time steps, assuming constant velocity during the time interval, non-interaction with the environment and non-diffusive processes. The vertical velocity is computed, at high levels, by three-dimensional relaxation from the Q-vector formulation of the omega equation. At low levels, the vertical velocity is computed by means of a 'specific treatment' of the orography consisting of the application of the kinematic boundary condition to the cells intersected by the orography, and taking into account the kinetic energy of the flow, the atmospheric stability and the presence of horizontal thermal gradients. These effects are parameterized by means of a multiplicative factor obtained from the Froude number value. The trajectory computation is achieved by successive approximations, using an iterative method, to the final position for each trajectory vector. The model has been applied to a case study of strong convection over NE Spain and the results have been compared with those obtained from an isentropic method. © 2001 Elsevier Science Ltd. All rights reserved.
机译:已经开发了三维拉格朗日模型(TRACOMX),以模拟复杂地形上的大规模大气传输。轨迹按时间步长进行集成,假设在该时间间隔内速度恒定,与环境互不影响以及非扩散过程。垂直速度是通过从欧米茄方程的Q矢量公式中进行三维松弛而在较高水平上计算的。在低水平时,垂直速度是通过对地形进行“特殊处理”来计算的,该方法包括将运动学边界条件应用于地形所交叉的细胞,并考虑流动的动能,大气稳定性和水平热梯度的存在。这些影响通过从弗洛德数值获得的乘数进行参数化。通过使用迭代方法对每个轨迹向量的最终位置进行逐次逼近,可以实现轨迹计算。该模型已用于西班牙东北部强对流的案例研究,并将结果与​​等熵方法获得的结果进行了比较。 ©2001 Elsevier ScienceLtd。保留所有权利。

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