首页> 外文期刊>Boundary-layer Meteorology >Large-eddy simulation of katabatic flows
【24h】

Large-eddy simulation of katabatic flows

机译:离心流的大涡模拟

获取原文
获取原文并翻译 | 示例
           

摘要

A large-eddy simulation model with rotated coordinates and an open boundary is used to simulate the characteristics of katabatic flows over simple terrain. Experiments examine the effects of cross winds on the development of the slope-flow boundarylayer for a steep (20 deg) slope and the role of drainage winds in preventing turbulence collapse on a gentle slope (1 deg). For the steep flow cases, comparisons between model average boundary-layer velocity, temperature deficit, and turbulence kineticenergy budget terms and tower observations show reasonable agreement. Results for different cross slope winds show that as the cross slope winds increase, the slope flow deepens faster and behaves more like a weakly stratified, sheared boundary layer. Analysis of the momentum budget shows that near the surface the flow is maintained by a balance between downslope buoyancy forcing and vertical turbulence flux from surface drag. Above the downslope jet, the turbulence vertical momentum flux reverses signand acceleration of the flow by buoyancy is controlled by horizontal advection of slower moving ambient air. The turbulence budget is dominated by a balance between shear production and eddy dissipation, however, buoyancy and pressure transport both aresignificant in reducing the strength of turbulence above the jet. Results from the gentle slope case show that even a slight terrain variation can lead to significant drainage winds. Comparison of the gentle slope case with a flat terrain simulation indicates that drainage winds can effectively prevent the formation of very stable boundary layers, at least near the top of sloping terrain.
机译:具有旋转坐标和开放边界的大涡流模拟模型用于模拟简单地形上的卡塔巴特流特征。实验研究了横风对陡坡(20度)坡面流动边界层发展的影响,以及排水对防止平缓坡度(1度)湍流坍塌的作用。对于陡流情况,模型平均边界层速度,温度亏缺和湍流动能预算项与塔观测之间的比较表明合理的一致性。不同横坡风的结果表明,随着横风风的增加,边坡流加深得更快,并且表现得更像是弱分层的剪切边界层。对动量预算的分析表明,在地表附近,通过下坡的浮力和地表阻力引起的垂直湍流之间的平衡来保持流动。在下坡射流上方,湍流的垂直动量通量使符号反转,并且由于浮力,流动的加速度由较慢移动的环境空气的水平对流控制。湍流预算主要由剪切力产生和涡流消散之间的平衡决定,但是,浮力和压力传递对于降低射流上方的湍流强度都很重要。缓坡情况的结果表明,即使是很小的地形变化也会导致明显的排水风。将缓坡情况与平坦的地形模拟进行比较表明,排水风至少可以在倾斜地形的顶部附近有效地阻止非常稳定的边界层的形成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号