The sensitivity of intense rainfall to aerosol particle loading – a comparison of bin-resolved microphysics modelling with observations of heavy precipitation from HyMeX IOP7a - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Natural Hazards and Earth System Sciences Année : 2020

The sensitivity of intense rainfall to aerosol particle loading – a comparison of bin-resolved microphysics modelling with observations of heavy precipitation from HyMeX IOP7a

Christina Kagkara
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Wolfram Wobrock
Céline Planche

Résumé

Over the Cévennes-Vivarais region in southern France 5 h intensive rainfall covering an area of 1000 km 2 with more than 50 mm of rain accumulation was observed during IOP7a of HyMeX. This study evaluates the performance of a bin-resolved cloud model for simulating this heavy-precipitation event. The simulation results were compared with observations of rain accumulation, radar reflectiv-ity, temporal and spatial evolution of precipitation, 5 min rain rates, and raindrop size distributions (RSDs). The different scenarios for aerosol number concentrations range from 1000 to 2900 cm −3 and represent realistic conditions for this region. Model results reproduce the heavy-precipitation event with respect to maximum rain intensity, surface area covered by intense rain and the duration, as well as the RSD. Differences occur in the short-term rainfall rates, as well as in the drop number concentration. The cloud condensation number concentration has a notable influence on the simulated rainfall , on both the surface amount and intensity but also on the RSD properties, and should be taken into account in micro-physics parameterizations.
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Dates et versions

hal-02904729 , version 1 (22-07-2020)

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Christina Kagkara, Wolfram Wobrock, Céline Planche, Andrea Flossmann. The sensitivity of intense rainfall to aerosol particle loading – a comparison of bin-resolved microphysics modelling with observations of heavy precipitation from HyMeX IOP7a. Natural Hazards and Earth System Sciences, 2020, 20 (5), pp.1469-1483. ⟨10.5194/nhess-20-1469-2020⟩. ⟨hal-02904729⟩
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