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Turbulence and Radiation in Stratocumulus-Topped Marine Boundary Layers: A Case Study from VOCALS-REx

机译:层积丘顶海洋边界层中的湍流和辐射:以VOCALS-REx为例

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Observations made during a 24-h period as part of the Variability of the American Monsoon Systems (VAMOS) Ocean-Cloud-Atmosphere-Land Study Regional Experiment (VOCALS-REx) are analyzed to study the radiation and turbulence associated with the stratocumulus-topped marine boundary layer (BL). The first 14 h exhibited a well-mixed (coupled) BL with an average cloud-top radiative flux divergence of similar to 130 W m(-2); the BL was decoupled during the last 10 h with negligible radiative flux divergence. The averaged radiative cooling very close to the cloud top was -9.04 K h(-1) in coupled conditions and -3.85 K h(-1) in decoupled conditions. This is the first study that combined data from a vertically pointing Doppler cloud radar and a Doppler lidar to yield the vertical velocity structure of the entire BL. The averaged vertical velocity variance and updraft mass flux during coupled conditions were higher than those during decoupled conditions at all levels by a factor of 2 or more. The vertical velocity skewness was negative in the entire BL during coupled conditions, whereas it was weakly positive in the lower third of the BL and negative above during decoupled conditions. A formulation of velocity scale is proposed that includes the effect of cloud-top radiative cooling in addition to the surface buoyancy flux. When scaled by the velocity scale, the vertical velocity variance and coherent downdrafts had similar magnitude during the coupled and decoupled conditions. The coherent updrafts that exhibited a constant profile in the entire BL during both the coupled and decoupled conditions scaled well with the convective velocity scale to a value of similar to 0.5.
机译:作为美国季风系统(VAMOS)海洋-云-大气-陆地研究区域实验(VOCALS-REx)变异性的一部分,在24小时内进行的观测分析用于研究与平顶积云有关的辐射和湍流海洋边界层(BL)。前14 h表现出混合均匀(耦合)的BL,平均云顶辐射通量发散度接近130 W m(-2); BL在最后10小时内解耦,辐射通量发散可忽略不计。在耦合条件下非常接近云顶的平均辐射冷却为-9.04 K h(-1),在解耦条件下为-3.85 K h(-1)。这是首次将垂直指向的多普勒云雷达和多普勒激光雷达的数据相结合以得出整个BL的垂直速度结构的研究。在所有条件下,耦合条件下的平均垂直速度方差和上升气流质量通量均比解耦条件下的平均水平高2倍或更多。在耦合条件下,整个BL的垂直速度偏斜为负,而在BL条件的下三分之一处,垂直速度偏微弱,而在解耦条件下,垂直速度偏斜为负。提出了一种速度标尺的公式,除了表面浮力通量外,还包括云顶辐射冷却的影响。当用速度标度进行标度时,在耦合和解耦条件下,垂直速度方差和相干向下气流具有相似的幅度。在耦合和解耦条件下,在整个BL中表现出恒定轮廓的相干上升气流与对流速度尺度的比例很好地缩放为近似0.5的值。

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