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Treatment of LBCs in 2D Simulation of Convection over Hills

机译:丘陵对流二维模拟中的LBC处理

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摘要

A series of idealized model simulations are analyzed to determine the sensitivity of model results to different configurations of the lateral boundary conditions (LBCs) in simulating mesoscale shallow convection over hilly terrain. In the simulations with steady thermal forcing at the model surface, a radiation condition at both boundaries is the best choice under high wind conditions, and the best results are produced when both the normal velocities and the temperature are treated with the radiation scheme in which the phase speed is the same for different variables. When the background wind speed is reasonably small, the LBC configuration with either the radiation or the zero gradient condition at both boundaries tends to make the numerical solution unstable. The choice of a constant condition at the inflow boundary and a radiation outflow boundary condition is appropriate in most cases. In the simulations with diurnal thermal forcing at the model surface, different LBC schemes are combined together to reduce spurious signals induced by the outflow boundary. A specification inflow boundary condition, in which the velocity fields at the inflow boundary are provided using the time-dependent results of a simulation with periodic LBCs over a flat domain, is tested and the results indicate that the specification condition at the inflow boundary makes it possible to use a smaller model domain to obtain reasonable results. The model horizontal domain length should be greater than a critical length, which depends on the domain depth H and the angle between gravity wave phase lines and the vertical. An estimate of minimum domain length is given by [(H - zi)/πU]√N2L2x - 4π2U2 , where N and U are the background stability and wind speed,respectively, Lx is the typical gravity wavelength scale, and zi is the convective boundary layer (CBL) depth.
机译:分析了一系列理想化的模型仿真,以确定在模拟丘陵地形中尺度浅层对流时,模型结果对横向边界条件(LBC)不同配置的敏感性。在模型表面具有稳定热强迫的模拟中,在强风条件下,在两个边界处的辐射条件都是最佳选择,并且当辐射速度同时处理法向速度和温度时,将产生最佳结果。不同变量的相速度相同。当背景风速相当小时,在两个边界处都具有辐射或零梯度条件的LBC配置趋于使数值解不稳定。在大多数情况下,在流入边界条件和辐射流出边界条件中选择恒定条件是合适的。在模型表面具有昼夜热强迫的模拟中,将不同的LBC方案组合在一起以减少由流出边界引起的杂散信号。测试了规范的流入边界条件,其中使用平坦区域上具有周期性LBC的模拟的时间相关结果提供了流入边界处的速度场,结果表明,流入边界处的规范条件使其满足可以使用较小的模型域来获得合理的结果。模型的水平域长度应大于临界长度,该长度取决于域深度H和重力波相线与垂直线之间的夹角。最小域长度的估计值由[(H-zi)/πU]√N2L2x-4π2U2给出,其中N和U分别是背景稳定度和风速,Lx是典型的重力波长尺度,zi是对流边界层(CBL)深度。

著录项

  • 来源
    《大气科学进展(英文版)》 |2004年第4期|573-586|共14页
  • 作者单位

    The School of Environment, University of Leeds, UK;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics,Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, 100029;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics,Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, 100029;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类
  • 关键词

    lateral boundary condition; numerical simulation; convection; orography;

    机译:横向边界条件数值模拟对流地形学;
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