TY - JOUR
T1 - Convective environment in pre-monsoon and monsoon conditions over the Indian subcontinent
T2 - The impact of surface forcing
AU - Thomas, Lois
AU - Malap, Neelam
AU - Grabowski, Wojciech W.
AU - Dani, Kundan
AU - Prabha, Thara V.
N1 - Publisher Copyright:
© Author(s) 2018.
PY - 2018/5/30
Y1 - 2018/5/30
N2 - 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.
AB - 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.
UR - https://www.scopus.com/pages/publications/85048001030
U2 - 10.5194/acp-18-7473-2018
DO - 10.5194/acp-18-7473-2018
M3 - Article
AN - SCOPUS:85048001030
SN - 1680-7316
VL - 18
SP - 7473
EP - 7488
JO - Atmospheric Chemistry and Physics
JF - Atmospheric Chemistry and Physics
IS - 10
ER -