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Convective environment in pre-monsoon and monsoon conditions over the Indian subcontinent: the impact of surface forcing

机译:印度次大陆上季风前和季风条件下的对流环境:地表强迫的影响

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Thermodynamic soundings for pre-monsoon and monsoon seasons from the Indian subcontinent are analysed to document differences between convective environments. The pre-monsoon environment features more variability for both near-surface moisture and free-tropospheric temperature and moisture profiles. As a result, the level of neutral buoyancy (LNB) and pseudo-adiabatic convective available potential energy (CAPE) vary more for the pre-monsoon environment. Pre-monsoon soundings also feature higher lifting condensation levels (LCLs). LCL heights are shown to depend on the availability of surface moisture, with low LCLs corresponding to high surface humidity, arguably because of the availability of soil moisture. A simple theoretical argument is developed and showed to mimic the observed relationship between LCLs and surface moisture. We argue that the key element is the partitioning of surface energy flux into its sensible and latent components, that is, the surface Bowen ratio, and the way the Bowen ratio affects surface buoyancy flux. We support our argument with observations of changes in the Bowen ratio and LCL height around the monsoon onset, and with idealized simulations of cloud fields driven by surface heat fluxes with different Bowen ratios.
机译:分析了来自印度次大陆的季风前和季风季节的热力学测深,以记录对流环境之间的差异。季风前的环境对近地表湿度以及对流层温度和湿度分布的变化更大。结果,对于季风前环境,中性浮力(LNB)和拟绝热对流可用势能(CAPE)的水平变化更大。季风前的测深还具有较高的扬露水平(LCL)。 LCL高度显示出取决于表面水分的可利用性,而低LCL则对应于高表面湿度,这可以说是由于土壤水分的可利用性。提出了一个简单的理论论证,并证明了该论证模仿了LCL和表面水分之间的观察关系。我们认为关键因素是将表面能通量分配到其敏感的和潜在的组成部分,即表面鲍文比,以及鲍文比影响表面浮力通量的方式。我们通过观察季风爆发前后鲍文比和LCL高度的变化,以及由具有不同鲍文比的表面热通量驱动的云场的理想模拟,来支持我们的论点。

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