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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Impact of soil moisture on the development of a Sahelian mesoscale convective system: A case-study from the AMMA Special Observing Period
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Impact of soil moisture on the development of a Sahelian mesoscale convective system: A case-study from the AMMA Special Observing Period

机译:土壤水分对萨赫勒中尺度对流系统发育的影响:来自AMMA特殊观测期的案例研究

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摘要

Interactions between the land and atmosphere play an important role in the precipitation of the Sahel. The African Monsoon Multidisciplinary Analysis Special Observing Period provided observations with which to illuminate potential feedback mechanisms. This case-study highlights a major storm which developed over northern Mali in an area where a research aircraft was surveying the atmospheric response to soil moisture features. Soil moisture variability is characterized using satellite land-surface temperature data whilst cloud images illustrate the evolution of the storm and its relationship to the surface. Measurements in the planetary boundary layer (PBL) indicate mesoscale variations in pre-storm humidity and temperature consistent with high evaporation from wet soils. The storm developed above a dry surface within a wetter region with cells first appearing along a wet-dry soil boundary. This suggests that the storm was triggered in association with low-level convergence driven by the soil moisture pattern. A gravity wave propagating away from a remote mature storm also appears to have played an important role in the initiation, though only in the region of the soil moisture contrast did deep convection become established. Once organised intoa Mesoscale Convective System, convection developed over wet areas as well as dry, and indeed at this stage, convection became more intense over wetter soils. This behaviour is consistent with the large gradients in PEL humidity. The study illustrates the complexity of soil moisture-convection feedback loops and highlights the mechanisms which may operate at different stages of a storm's life cycle.
机译:土地与大气之间的相互作用在萨赫勒地区的降水中起着重要作用。非洲季风多学科分析特别观察期提供了一些观察,以阐明潜在的反馈机制。这项案例研究突出了马里北部上空发生的一场大风暴,该地区有一架研究飞机正在调查大气对土壤水分特征的响应。土壤湿度的变化通过卫星陆地表面温度数据来表征,而云图则显示了风暴的演变及其与地表的关系。行星边界层(PBL)的测量表明,暴雨前的湿度和温度的中尺度变化与潮湿土壤的高蒸发量一致。暴风雨在较湿的区域内的干燥表面上方发展,首先沿湿-干土壤边界出现细胞。这表明风暴是由土壤湿度模式驱动的低水平收敛引发的。尽管只有在土壤湿度对比区域中建立了深对流,但从遥远的成熟风暴传播的重力波似乎也起了重要作用。一旦组织成中尺度对流系统,对流就会在潮湿地区和干燥地区发展,实际上在这个阶段,对流土壤的对流变得更加强烈。此行为与PEL湿度的大梯度一致。这项研究说明了土壤水分-对流反馈回路的复杂性,并强调了可能在风暴生命周期的不同阶段起作用的机制。

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