Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A numerical investigation of supercell storm interactions with the urban environment

View through CrossRef
It is well known that cities can modify rainfall distributions, particularly by more frequently triggering deep moist convection over and downwind of urban areas. However, the effect of cities on organized convection, such as supercells, has been poorly studied. This topic needs further investigation since exposure and vulnerability to severe storm risks are greater in cities than in the surrounding rural areas.To address this topic, idealized simulations were conducted using the Weather Research and Forecasting model. An idealized circular city is placed in a flat domain with cropland as the predominant land use. Urban-atmosphere exchange processes are resolved using the Building Effect Parametrization (BEP) and the Building Energy Model (BEM). A supercell is initiated in the domain at 4 pm using a thermal bubble and is then advected by the mean flow toward the city. To enhance the analysis, 10 ensemble members are generated for each experiment using the Stochastic Kinetic-Energy Backscatter Scheme. Several experiments were conducted, varying the city size, urban fraction, building height, and density. The impact of different morphological parameters on the simulated supercell is assessed by examining how key diagnostic variables of the storm change upwind, over, and downwind of the city.The results show a statistically significant weakening of the supercell with increasing city size. A similar trend is observed when varying the density of the buildings and the urban fraction, although these are not statistically significant for most of the variables considered. On the other hand, a statistically significant trend of intensification of the supercell storm is observed with taller buildings. An in-depth analysis of the pre-storm environment shows that the weakening of the storm is primarily driven by the urban dry island, that substantially reduces the convective available potential energy.While the initial storm can be strongly weakened by the city, a thermodynamically induced downwind pressure minimum in the experiment with the largest city triggers a new supercell in most of the ensemble members. This suggests that this study does not contradict previous research but rather expands our understanding of the complex interactions between the urban environment and deep moist convections. Convective storms can be initiated by city-induced wind convergences, but can also be suppressed by the urban dry environment.
Title: A numerical investigation of supercell storm interactions with the urban environment
Description:
It is well known that cities can modify rainfall distributions, particularly by more frequently triggering deep moist convection over and downwind of urban areas.
However, the effect of cities on organized convection, such as supercells, has been poorly studied.
This topic needs further investigation since exposure and vulnerability to severe storm risks are greater in cities than in the surrounding rural areas.
To address this topic, idealized simulations were conducted using the Weather Research and Forecasting model.
An idealized circular city is placed in a flat domain with cropland as the predominant land use.
Urban-atmosphere exchange processes are resolved using the Building Effect Parametrization (BEP) and the Building Energy Model (BEM).
A supercell is initiated in the domain at 4 pm using a thermal bubble and is then advected by the mean flow toward the city.
To enhance the analysis, 10 ensemble members are generated for each experiment using the Stochastic Kinetic-Energy Backscatter Scheme.
Several experiments were conducted, varying the city size, urban fraction, building height, and density.
The impact of different morphological parameters on the simulated supercell is assessed by examining how key diagnostic variables of the storm change upwind, over, and downwind of the city.
The results show a statistically significant weakening of the supercell with increasing city size.
A similar trend is observed when varying the density of the buildings and the urban fraction, although these are not statistically significant for most of the variables considered.
On the other hand, a statistically significant trend of intensification of the supercell storm is observed with taller buildings.
An in-depth analysis of the pre-storm environment shows that the weakening of the storm is primarily driven by the urban dry island, that substantially reduces the convective available potential energy.
While the initial storm can be strongly weakened by the city, a thermodynamically induced downwind pressure minimum in the experiment with the largest city triggers a new supercell in most of the ensemble members.
This suggests that this study does not contradict previous research but rather expands our understanding of the complex interactions between the urban environment and deep moist convections.
Convective storms can be initiated by city-induced wind convergences, but can also be suppressed by the urban dry environment.

Related Results

Observed Relationships between Supercell Mesocyclone Intensity and Evolution, Background Environmental Characteristics, and Cell Mergers
Observed Relationships between Supercell Mesocyclone Intensity and Evolution, Background Environmental Characteristics, and Cell Mergers
Abstract Cell mergers with supercells are relatively common, but much remains unknown about how they may influence subsequent supercell hazards. Furthermore, many outstanding quest...
Sensitivity of Supercell Environments to Orographic Modifications 
Sensitivity of Supercell Environments to Orographic Modifications 
It is well established that more pronounced terrain asymmetries are associated with a greater potential for terrain-induced modifications of the adjacent atmosphere, influencing bo...
The Dual Effect of Urban Areas on Supercell Storms
The Dual Effect of Urban Areas on Supercell Storms
Abstract. The effect of urban land use on convective storms with deep and persistent rotating updrafts (supercell storms) is systematically investigated using ensembles of idealize...
The Influence of Cell Mergers on Supercell Characteristics and Tornado Evolution on 27–28 April 2011
The Influence of Cell Mergers on Supercell Characteristics and Tornado Evolution on 27–28 April 2011
Abstract Numerous questions remain regarding the influence of environmental inhomogeneities on supercell evolution. Motivated by this topic, this study associates...
Observed Characteristics of the Tornadic Supercells of 27–28 April 2011 in the Southeast United States
Observed Characteristics of the Tornadic Supercells of 27–28 April 2011 in the Southeast United States
Abstract An historic outbreak of tornadoes impacted a large swath of the eastern United States on 26–28 April 2011. The most severe series of tornadoes was associated with numerous...
Supercell low-level mesocyclones: Origins of inflow and vorticity
Supercell low-level mesocyclones: Origins of inflow and vorticity
<p>In this presentation, we will recap the historical use of storm-relative helicity in supercell environments, share updated climatioglical distributions from both t...
Multivariate characterization of wave storms in coastal areas
Multivariate characterization of wave storms in coastal areas
Wave-storms are the responsible of the main changes in the Coast. Their detailed characterization results in a better design of any marine structure. The most common approach to de...
Territories -in- between
Territories -in- between
There is an increasing body of literature suggesting that the conventional idea of a gradual transition in spatial structure from urban to rural does not properly reflect contempor...

Back to Top