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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effects of Lower Troposphere Vertical Mixing on Simulated Clouds and Precipitation Over the Amazon During the Wet Season
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Effects of Lower Troposphere Vertical Mixing on Simulated Clouds and Precipitation Over the Amazon During the Wet Season

机译:Effects of Lower Troposphere Vertical Mixing on Simulated Clouds and Precipitation Over the Amazon During the Wet Season

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Abstract Planetary boundary layer (PBL) schemes parameterize unresolved turbulent mixing within the PBL and free troposphere (FT). Previous studies reported that precipitation simulation over the Amazon in South America is quite sensitive to PBL schemes and the exact relationship between the turbulent mixing and precipitation processes is, however, not disentangled. In this study, regional climate simulations over the Amazon in January–February 2019 are examined at process level to understand the precipitation sensitivity to PBL scheme. The focus is on two PBL schemes, the Yonsei University (YSU) scheme, and the asymmetric convective model v2 (ACM2) scheme, which show the largest difference in the simulated precipitation. During daytime, while the FT clouds simulated by YSU dissipate, clouds simulated by ACM2 maintain because of enhanced moisture supply due to the enhanced vertical moisture relay transport process: (a) vertical mixing within PBL transports surface moisture to the PBL top, and (b) FT mixing feeds the moisture into the FT cloud deck. Due to the thick cloud deck over Amazon simulated by ACM2, surface radiative heating is reduced and consequently the convective available potential energy is reduced. As a result, precipitation is weaker from ACM2. Two key parameters dictating the vertical mixing are identified, p, an exponent determining boundary layer mixing and λ, a scale dictating FT mixing. Sensitivity simulations with altered p, λ, and other treatments within YSU and ACM2 confirm the precipitation sensitivity. The FT mixing in the presence of clouds appears most critical to explain the sensitivity between YSU and ACM2.
机译:摘要行星边界层(PBL)计划参数化解决湍流混合PBL和自由对流层(英尺)。研究报道,降水模拟在南美洲亚马逊河相当敏感的培养计划和准确的湍流混合和之间的关系然而,降水过程进行分解。模拟1 - 2月份在亚马逊2019年在流程级别进行理解降水对PBL模式。重点是两个PBL模式,延世大学(YSU)计划,以及不对称对流模型v2计划(ACM2),它显示了模拟最大的区别降水。云模拟YSU消散,云因为增强模拟ACM2维护水分供应由于增强垂直水分中继传输过程:(a)垂直的混合在PBL传输表面水分PBL最高,和(b)英国《金融时报》的混合饲料的水分在英国《金融时报》云甲板。甲板在亚马逊ACM2模拟的表面辐射加热,因此减少对流可用势能降低。因此,从ACM2降水是较弱的。两个关键参数决定垂直混合确定p指数确定吗边界层混合和λ,规模决定英国《金融时报》混合。在YSU和ACM2λ和其他治疗方法确认降水的敏感性。混合云的出现解释YSU之间的灵敏度的关键

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