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Publication Citation
Ackerman, A. S.
,
et al.
(2015),
High ice water content at low radar reflectivity near deep convection – Part 2: Evaluation of microphysical pathways in updraft parcel simulations
,
Atmos. Chem. Phys., 15
, 11729-11751, doi:10.5194/acp-15-11729-2015.
Fridlind, A. M.
,
et al.
(2012),
A comparison of TWP-ICE observational data with cloud-resolving model results
,
J. Geophys. Res., 117
, D05204, doi:10.1029/2011JD016595.
Fridlind, A. M.
,
et al.
(2015),
High ice water content at low radar reflectivity near deep convection – Part 1: Consistency of in situ and remote-sensing observations with stratiform rain column simulations
,
Atmos. Chem. Phys., 15
, 11713-11728, doi:10.5194/acp-15-11713-2015.
Mrowiec, A. A.
,
et al.
(2012),
Analysis of cloud-resolving simulations of a tropical mesoscale convective system observed during TWP-ICE: Vertical fluxes and draft properties in convective and stratiform regions
,
J. Geophys. Res., 117
, D19201, doi:10.1029/2012JD017759.
Park, S.,
et al.
(2007),
The CO2 tracer clock for the Tropical Tropopause Layer
,
Atmos. Chem. Phys., 7
, 3989-4000, doi:10.5194/acp-7-3989-2007.
van Diedenhoven, B.
,
et al.
(2012),
Evaluation of Hydrometeor Phase and Ice Properties in Cloud-Resolving Model Simulations of Tropical Deep Convection Using Radiance and Polarization Measurements
,
J. Atmos. Sci., 69
, 3290-3314, doi:10.1175/JAS-D-11-0314.1.
van Diedenhoven, B.
,
et al.
(2014),
Variation of ice crystal size, shape, and asymmetry parameter in tops of tropical deep convective clouds
,
J. Geophys. Res., 119
, 11,809-11,825, doi:10.1002/2014JD022385.
Varble, A.
,
et al.
(2011),
Evaluation of cloud‐resolving model intercomparison simulations using TWP‐ICE observations: Precipitation and cloud structure
,
J. Geophys. Res., 116
, D12206, doi:10.1029/2010JD015180.