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首页> 外文期刊>Journal of the Atmospheric Sciences >Detailed Dual-Doppler Structure of Kelvin-Helmholtz Waves from an Airborne Profiling Radar over Complex Terrain. Part I: Dynamic Structure
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Detailed Dual-Doppler Structure of Kelvin-Helmholtz Waves from an Airborne Profiling Radar over Complex Terrain. Part I: Dynamic Structure

机译:在复杂地形上的空中剖面雷达的Kelvin-Helmholtz波浪的详细双倍多普勒结构。 第一部分:动态结构

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Kelvin-Helmholtz (KH) waves are remarkably common in deep stratiform precipitation systems associated with frontal disturbances, at least in the vicinity of complex terrain, as is evident from transects of vertical velocity and 2D circulation, obtained from a 3-mm airborne Doppler radar, the Wyoming Cloud Radar. The high range resolution of this radar (similar to 40 m) allows detection and depiction of KH waves in fine detail. These waves are observed in a variety of wavelengths, depths, amplitudes, and turbulence intensities. Proximity rawinsonde data confirm that they are triggered in layers where the Richardson number is very small. Complex terrain may locally enhance wind shear, leading to KH instability. In some KH waves, the flow remains mostly laminar, while in other cases it breaks down into turbulence. KH waves are frequently locked to the terrain, and occur at various heights, including within the free troposphere, at the boundary layer top, and close to the surface. They are observed not only upwind of terrain barriers, as has been documented before, but also in the wake of steep terrain, where the waves can be highly turbulent. Vertical-plane dual-Doppler analyses of KH waves reveal the mixing of layers of differential momentum across the high-shear zone. Doppler radar data are used to explore the dynamics of KH waves, including the response of thermodynamic and kinematic variables above, below, and within the instability layer.
机译:在与垂直地形附近的深层扰动相关的深层层状降水系统中,Kelvin-Helmholtz(KH)波是非常常见的,从复杂地形附近,从垂直速度和2D循环的横向明显看出,从3毫米机载多普勒雷达获得,怀俄明云雷达。该雷达的高范围分辨率(类似于40米)允许在细节细节中检测和描绘KH波。在各种波长,深度,幅度和湍流强度中观察到这些波。接近Rawinsonde数据确认它们在Richardson号码非常小的层中触发。复杂地形可以在局部增强风剪,导致KH不稳定。在一些kh波浪中,流动仍然大多是层状的,而在其他情况下,它突破湍流。 KH波经常被锁定在地形上,并且在边界层顶部和靠近表面的自由对流层内发生各种高度。他们不仅观察到地形障碍的逆风,如前所述,而且在陡峭的地形之后,波浪可能是高度动荡的地方。 KH波的垂直平面双倍多普勒分析显示高剪切区差分动量层的混合。多普勒雷达数据用于探索KH波的动态,包括上面的热力学和运动变量的响应,下面和不稳定性层内。

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