Arctic mixed-phase clouds : Macro- and microphysical insights with a numerical model

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731506866
Total Pages : 174 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Arctic mixed-phase clouds : Macro- and microphysical insights with a numerical model by : Loewe, Katharina

Download or read book Arctic mixed-phase clouds : Macro- and microphysical insights with a numerical model written by Loewe, Katharina and published by KIT Scientific Publishing. This book was released on 2017-09-15 with total page 174 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Arctic Mixed-phase Clouds

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ISBN 13 : 9781013281204
Total Pages : 160 pages
Book Rating : 4.2/5 (812 download)

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Book Synopsis Arctic Mixed-phase Clouds by : Katharina Loewe

Download or read book Arctic Mixed-phase Clouds written by Katharina Loewe and published by . This book was released on 2020-10-09 with total page 160 pages. Available in PDF, EPUB and Kindle. Book excerpt: This work provides new insights into macro- and microphysical properties of Arctic mixed-phase clouds: first, by comparing semi-idealized large eddy simulations with observations; second, by dissecting the influences of different surface types and boundary layer structures on Arctic mixed- phase clouds; third, by elucidating the dissipation process; and finally by analyzing the main microphysical processes inside Arctic mixed-phase clouds. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

Mixed-Phase Clouds

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Publisher : Elsevier
ISBN 13 : 012810550X
Total Pages : 300 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Mixed-Phase Clouds by : Constantin Andronache

Download or read book Mixed-Phase Clouds written by Constantin Andronache and published by Elsevier. This book was released on 2017-09-28 with total page 300 pages. Available in PDF, EPUB and Kindle. Book excerpt: Mixed-Phase Clouds: Observations and Modeling presents advanced research topics on mixed-phase clouds. As the societal impacts of extreme weather and its forecasting grow, there is a continuous need to refine atmospheric observations, techniques and numerical models. Understanding the role of clouds in the atmosphere is increasingly vital for current applications, such as prediction and prevention of aircraft icing, weather modification, and the assessment of the effects of cloud phase partition in climate models. This book provides the essential information needed to address these problems with a focus on current observations, simulations and applications. Provides in-depth knowledge and simulation of mixed-phase clouds over many regions of Earth, explaining their role in weather and climate Features current research examples and case studies, including those on advanced research methods from authors with experience in both academia and the industry Discusses the latest advances in this subject area, providing the reader with access to best practices for remote sensing and numerical modeling

Assessing the Aerosol Impact on Southern West African Clouds and Atmospheric Dynamics

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731507447
Total Pages : 346 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Assessing the Aerosol Impact on Southern West African Clouds and Atmospheric Dynamics by : Deetz, Konrad

Download or read book Assessing the Aerosol Impact on Southern West African Clouds and Atmospheric Dynamics written by Deetz, Konrad and published by KIT Scientific Publishing. This book was released on 2018-01-30 with total page 346 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Convective precipitation simulated with ICON over heterogeneous surfaces in dependence on model and land-surface resolution

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731510685
Total Pages : 198 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Convective precipitation simulated with ICON over heterogeneous surfaces in dependence on model and land-surface resolution by : Singh, Shweta

Download or read book Convective precipitation simulated with ICON over heterogeneous surfaces in dependence on model and land-surface resolution written by Singh, Shweta and published by KIT Scientific Publishing. This book was released on 2021-08-16 with total page 198 pages. Available in PDF, EPUB and Kindle. Book excerpt: The impact of land-surface properties like vegetation, soil type, soil moisture, and the orography on the atmosphere is manifold. These features determine the evolution of the atmospheric boundary layer, convective conditions, cloud evolution and precipitation. The impact of model grid spacing and land-surface resolution on convective precipitation over heterogeneous surfaces is investigated using ICOsahedral Nonhydrostatic (ICON) simulations within the framework of the HD(CP)2 project.

Representation of warm conveyor belts in sub-seasonal forecast models and the link to Atlantic-European weather regimes

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731512491
Total Pages : 256 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Representation of warm conveyor belts in sub-seasonal forecast models and the link to Atlantic-European weather regimes by : Wandel, Jan Lucas

Download or read book Representation of warm conveyor belts in sub-seasonal forecast models and the link to Atlantic-European weather regimes written by Wandel, Jan Lucas and published by KIT Scientific Publishing. This book was released on 2023-05-25 with total page 256 pages. Available in PDF, EPUB and Kindle. Book excerpt: This study systematically investigates the representation of warm conveyor belts (WCBs) in large reforecast data sets of different numerical weather prediction models and evaluates the role of WCBs for the onset and life cycle of Atlantic-European weather regimes. The results emphasize the importance of accurate forecast of WCBs for sub-seasonal prediction on time scales beyond two weeks and tie the low forecast skill of blocked weather regimes over Europe to misrepresented WCBs.

Contrails and Climate Engineering - Process Studies on Natural and Artificial High-Level Clouds and Their Impact on the Radiative Fluxes

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731508966
Total Pages : 284 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Contrails and Climate Engineering - Process Studies on Natural and Artificial High-Level Clouds and Their Impact on the Radiative Fluxes by : Gruber, Simon

Download or read book Contrails and Climate Engineering - Process Studies on Natural and Artificial High-Level Clouds and Their Impact on the Radiative Fluxes written by Gruber, Simon and published by KIT Scientific Publishing. This book was released on 2019-03-22 with total page 284 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Perspectives on warm conveyor belts - sensitivities to ensemble configuration and the role for forecast error

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Publisher : KIT Scientific Publishing
ISBN 13 : 373151236X
Total Pages : 250 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Perspectives on warm conveyor belts - sensitivities to ensemble configuration and the role for forecast error by : Pickl, Moritz

Download or read book Perspectives on warm conveyor belts - sensitivities to ensemble configuration and the role for forecast error written by Pickl, Moritz and published by KIT Scientific Publishing. This book was released on 2023-03-30 with total page 250 pages. Available in PDF, EPUB and Kindle. Book excerpt: Warm conveyor belts (WCBs) are weather systems that substantially modulate the large-scale extratropical circulation. As they can amplify forecast errors and project them onto the Rossby wave pattern, they are of high relevance for numerical weather prediction. This work elaborates on two aspects of WCBs in the context of ensemble forecasts: (1) sensitivities of WCBs to the representation of initial condition and model uncertainties, and (2) the role of WCBs for forecast error growth.

Near future changes of compound extreme events from an ensemble of regional climate simulations

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731504766
Total Pages : 200 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Near future changes of compound extreme events from an ensemble of regional climate simulations by : Sedlmeier, Katrin

Download or read book Near future changes of compound extreme events from an ensemble of regional climate simulations written by Sedlmeier, Katrin and published by KIT Scientific Publishing. This book was released on 2020-01-16 with total page 200 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Atmospheric Moisture Effects on Deep Convection in the Western Mediterranean

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731509474
Total Pages : 262 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Atmospheric Moisture Effects on Deep Convection in the Western Mediterranean by : Caldas-Alvarez, Alberto

Download or read book Atmospheric Moisture Effects on Deep Convection in the Western Mediterranean written by Caldas-Alvarez, Alberto and published by KIT Scientific Publishing. This book was released on 2019-10-24 with total page 262 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Wind Systems and Energy Balance in the Dead Sea Valley

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Publisher : KIT Scientific Publishing
ISBN 13 : 3731506998
Total Pages : 238 pages
Book Rating : 4.7/5 (315 download)

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Book Synopsis Wind Systems and Energy Balance in the Dead Sea Valley by : Metzger, Jutta

Download or read book Wind Systems and Energy Balance in the Dead Sea Valley written by Metzger, Jutta and published by KIT Scientific Publishing. This book was released on 2017-10-17 with total page 238 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Simulations of Arctic Mixed-phase Clouds in Forecasts with CAM3 and AM2 for M-PACE.

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Publisher :
ISBN 13 :
Total Pages : 45 pages
Book Rating : 4.:/5 (958 download)

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Book Synopsis Simulations of Arctic Mixed-phase Clouds in Forecasts with CAM3 and AM2 for M-PACE. by :

Download or read book Simulations of Arctic Mixed-phase Clouds in Forecasts with CAM3 and AM2 for M-PACE. written by and published by . This book was released on 2008 with total page 45 pages. Available in PDF, EPUB and Kindle. Book excerpt: [1] Simulations of mixed-phase clouds in forecasts with the NCAR Atmosphere Model version 3 (CAM3) and the GFDL Atmospheric Model version 2 (AM2) for the Mixed-Phase Arctic Cloud Experiment (M-PACE) are performed using analysis data from numerical weather prediction centers. CAM3 significantly underestimates the observed boundary layer mixed-phase cloud fraction and cannot realistically simulate the variations of liquid water fraction with temperature and cloud height due to its oversimplified cloud microphysical scheme. In contrast, AM2 reasonably reproduces the observed boundary layer cloud fraction while its clouds contain much less cloud condensate than CAM3 and the observations. The simulation of the boundary layer mixed-phase clouds and their microphysical properties is considerably improved in CAM3 when a new physically based cloud microphysical scheme is used (CAM3LIU). The new scheme also leads to an improved simulation of the surface and top of the atmosphere longwave radiative fluxes. Sensitivity tests show that these results are not sensitive to the analysis data used for model initialization. Increasing model horizontal resolution helps capture the subgrid-scale features in Arctic frontal clouds but does not help improve the simulation of the single-layer boundary layer clouds. AM2 simulated cloud fraction and LWP are sensitive to the change in cloud ice number concentrations used in the Wegener-Bergeron-Findeisen process while CAM3LIU only shows moderate sensitivity in its cloud fields to this change. Furthermore, this paper shows that the Wegener-Bergeron-Findeisen process is important for these models to correctly simulate the observed features of mixed-phase clouds.

The Arctic Clouds from Model Simulations and Long-term Observations at Barrow, Alaska

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Publisher :
ISBN 13 : 9781303050398
Total Pages : 93 pages
Book Rating : 4.0/5 (53 download)

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Book Synopsis The Arctic Clouds from Model Simulations and Long-term Observations at Barrow, Alaska by : Ming Zhao

Download or read book The Arctic Clouds from Model Simulations and Long-term Observations at Barrow, Alaska written by Ming Zhao and published by . This book was released on 2012 with total page 93 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Arctic is a region that is very sensitive to global climate change while also experiencing significant changes in its surface air temperature, sea-ice cover, atmospheric circulation, precipitation, snowfall, biogeochemical cycling, and land surface. Although previous studies have shown that the arctic clouds play an important role in the arctic climate changes, the arctic clouds are poorly understood and simulated in climate model due to limited observations. Furthermore, most of the studies were based on short-term experiments and typically only cover the warm seasons, which do not provide a full understanding of the seasonal cycle of arctic clouds. To address the above concerns and to improve our understanding of arctic clouds, six years of observational and retrieval data from 1999 to 2004 at the Atmospheric Radiation Management (ARM) Climate Research Facility (ACRF) North Slope of Alaska (NSA) Barrow site are used to understand the arctic clouds and related radiative processes. In particular, we focus on the liquid-ice mass partition in the mixed-phase cloud layer. Statistical results show that aerosol type and concentration are important factors that impact the mixed-phase stratus (MPS) cloud microphysical properties: liquid water path (LWP) and liquid water fraction (LWF) decrease with the increase of cloud condensation nuclei (CCN) number concentration; the high dust loading and dust occurrence in the spring are possible reasons for the much lower LWF than the other seasons. The importance of liquid-ice mass partition on surface radiation budgets was analyzed by comparing cloud longwave radiative forcings under the same LWP but different ice water path (IWP) ranges. Results show the ice phase enhance the surface cloud longwave (LW) forcing by 8~9 W m−2 in the moderately thin MPS. This result provides an observational evidence on the aerosol glaciation effect in the moderately thin MPS, which is largely unknown so far. The above new insights are important to guide the model parameterizations of liquid-ice mass partition in arctic mixed-phase clouds, and are served as a test bed to cloud models and cloud microphysical schemes. The observational data between 1999 and 2007 are used to assess the performance of the European Center for Medium-Range Weather Forecasts (ECMWF) model in the Arctic region. The ECMWF model-simulated near-surface humidity had seasonal dependent biases as large as 20%, while also experiencing difficulty representing boundary layer (BL) temperature inversion height and strength during the transition seasons. Although the ECMWF model captured the seasonal variation of surface heat fluxes, it had sensible heat flux biases over 20 W m−2 in most of the cold months. Furthermore, even though the model captured the general seasonal variations of low-level cloud fraction (LCF) and LWP, it still overestimated the LCF by 20% or more and underestimated the LWP over 50% in the cold season. On average, the ECMWF model underestimated LWP by ~30 g m−2 but more accurately predicted ice water path for BL clouds. For BL mixed-phase clouds, the model predicted water-ice mass partition was significantly lower than the observations, largely due to the temperature dependence of water-ice mass partition used in the model. The new cloud and BL schemes of the ECMWF model that were implemented after 2003 only resulted in minor improvements in BL cloud simulations in summer. These results indicate that significant improvements in cold season BL and mixed-phase cloud processes in the model are needed. In this study, single-layer MPS clouds were simulated by the Weather Research and Forecasting (WRF) model under different microphysical schemes and different ice nuclei (IN) number concentrations. Results show that by using proper IN concentration, the WRF model incorporated with Morrison microphysical scheme can reasonably capture the observed seasonal differences in temperature dependent liquid-ice mass partition. However, WRF simulations underestimate both LWP and IWP indicating its deficiency in capturing the radiative impacts of arctic MPS clouds.

Numerical Modeling of Arctic Mixed-phase Layered Clouds

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (15 download)

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Book Synopsis Numerical Modeling of Arctic Mixed-phase Layered Clouds by : Yaosheng Chen

Download or read book Numerical Modeling of Arctic Mixed-phase Layered Clouds written by Yaosheng Chen and published by . This book was released on 2018 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Arctic mixed-phase clouds are often multi-layered. Different cloud layers interact through radiation as well as ice precipitation falling from upper layer clouds into the lower layer clouds. The evolution of an Arctic mixed-phase stratiform cloud under prescribed perturbations from an overlaying cloud in the form of downwelling longwave radiation and ice precipitation was simulated and documented. The perturbations created regions with heterogeneous properties in the horizontal direction within the lower level cloud, the consequence of which was the development of a mesoscale circulation that propagated the perturbations well beyond the location of the initial perturbed region.In a separate study, we forward modeled radar Doppler spectra based on a large-eddy simulation (LES) model simulation of a single layer Arctic mixed-phase cloud and compared the modeled quantities with those retrieved from the observations. We show that there was a significant contribution from the microphysical broadening to the cloud radar Doppler spectral width in Arctic mixed-phase clouds. LES simulations configured with different ice particle characteristics captured different aspects of the observations in the simulated case, where a mixture of ice particles of different properties were likely present. The dynamics of the LES simulations, characterized with the total turbulent kinetic energy dissipation rate, agreed fairly well with the values retrieved from the observations. Due to significant numerical dissipation in the model for the case evaluated here, the TKE dissipation rate from the subgrid-scale model did not represent the dissipation rate in the model.

Arctic Mixed-phase Clouds from the Micro- to the Mesoscale - Insights from High-resolution Modeling

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (116 download)

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Book Synopsis Arctic Mixed-phase Clouds from the Micro- to the Mesoscale - Insights from High-resolution Modeling by : Gesa K. Eirund

Download or read book Arctic Mixed-phase Clouds from the Micro- to the Mesoscale - Insights from High-resolution Modeling written by Gesa K. Eirund and published by . This book was released on 2019 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Intercomparison of Model Simulations of Mixed-phase Clouds Observed During the ARM Mixed-Phase Arctic Cloud Experiment. Part I

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Publisher :
ISBN 13 :
Total Pages : 80 pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Intercomparison of Model Simulations of Mixed-phase Clouds Observed During the ARM Mixed-Phase Arctic Cloud Experiment. Part I by :

Download or read book Intercomparison of Model Simulations of Mixed-phase Clouds Observed During the ARM Mixed-Phase Arctic Cloud Experiment. Part I written by and published by . This book was released on 2008 with total page 80 pages. Available in PDF, EPUB and Kindle. Book excerpt: Results are presented from an intercomparison of single-column and cloud-resolving model simulations of a cold-air outbreak mixed-phase stratocumulus cloud observed during the Atmospheric Radiation Measurement (ARM) program's Mixed-Phase Arctic Cloud Experiment. The observed cloud occurred in a well-mixed boundary layer with a cloud top temperature of -15 C. The observed liquid water path of around 160 g m−2 was about two-thirds of the adiabatic value and much greater than the mass of ice crystal precipitation which when integrated from the surface to cloud top was around 15 g m−2. The simulations were performed by seventeen single-column models (SCMs) and nine cloud-resolving models (CRMs). While the simulated ice water path is generally consistent with the observed values, the median SCM and CRM liquid water path is a factor of three smaller than observed. Results from a sensitivity study in which models removed ice microphysics indicate that in many models the interaction between liquid and ice-phase microphysics is responsible for the large model underestimate of liquid water path. Despite this general underestimate, the simulated liquid and ice water paths of several models are consistent with the observed values. Furthermore, there is some evidence that models with more sophisticated microphysics simulate liquid and ice water paths that are in better agreement with the observed values, although considerable scatter is also present. Although no single factor guarantees a good simulation, these results emphasize the need for improvement in the model representation of mixed-phase microphysics. This case study, which has been well observed from both aircraft and ground-based remote sensors, could be a benchmark for model simulations of mixed-phase clouds.

Simulating Mixed-phase Arctic Stratus Clouds

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Publisher :
ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Simulating Mixed-phase Arctic Stratus Clouds by :

Download or read book Simulating Mixed-phase Arctic Stratus Clouds written by and published by . This book was released on 2009 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The importance of Arctic mixed-phase clouds on radiation and the Arctic climate is well known. However, the development of mixed-phase cloud parameterization for use in large scale models is limited by lack of both related observations and numerical studies using multidimensional models with advanced microphysics that provide the basis for understanding the relative importance of different microphysical processes that take place in mixed-phase clouds. To improve the representation of mixed-phase cloud processes in the GISS GCM we use the GISS single-column model coupled to a bin resolved microphysics (BRM) scheme that was specially designed to simulate mixed-phase clouds and aerosol-cloud interactions. Using this model with the microphysical measurements obtained from the DOE ARM Mixed-Phase Arctic Cloud Experiment (MPACE) campaign in October 2004 at the North Slope of Alaska, we investigate the effect of ice initiation processes and Bergeron-Findeisen process (BFP) on glaciation time and longevity of single-layer stratiform mixed-phase clouds. We focus on observations taken during October 9th-10th, which indicated the presence of a single-layer mixed-phase clouds. We performed several sets of 12-hour simulations to examine model sensitivity to different ice initiation mechanisms and evaluate model output (hydrometeors concentrations, contents, effective radii, precipitation fluxes, and radar reflectivity) against measurements from the MPACE Intensive Observing Period. Overall, the model qualitatively simulates ice crystal concentration and hydrometeors content, but it fails to predict quantitatively the effective radii of ice particles and their vertical profiles. In particular, the ice effective radii are overestimated by at least 50%. However, using the same definition as used for observations, the effective radii simulated and that observed were more comparable. We find that for the single-layer stratiform mixed-phase clouds simulated, process of ice phase initiation due to freezing of supercooled water in both saturated and subsaturated (w.r.t. water) environments is as important as primary ice crystal origination from water vapor. We also find that the BFP is a process mainly responsible for the rates of glaciation of simulated clouds. These glaciation rates cannot be adequately represented by a water-ice saturation adjustment scheme that only depends on temperature and liquid and solid hydrometeors contents as is widely used in bulk microphysics schemes and are better represented by processes that also account for supersaturation changes as the hydrometeors grow.