Javascript must be enabled to continue!
Precipitation scaling in the tropics with a convection-permitting model
View through CrossRef
<p>The Maritime Continent is a major convective area and precipitation processes in the region pose great challenges to atmospheric models. A combination of large-scale drivers, such as the Madden-Julian Oscillation and ENSO, and fine-scale processes, such as orographically-forced precipitation, land-sea circulations and tropical convection, governs rainfall in the Maritime Continent. The use of convection-permitting models in the region has shown improved performance in the simulation of precipitation characteristics that are key for the region (i.e. diurnal cycle).</p><p>Most of the rainfall occurring over land is concentrated in the late afternoon and precipitation extremes often occur over short periods of time. The availability of water vapor in the lower troposphere and the high water-holding capacity of a warm atmosphere favors very intense precipitation events, according to the Clausius-Clapeyron relationship. In a warming climate, a full understanding of the so-called precipitation scaling with temperature is thus crucial. However, this potential generally requires the atmosphere be saturated and convection be initiated to become effective. Using a regional climate model operating at convection-permitting scales over 3 consecutive wet seasons, we investigate the response of intense precipitation to temperature.</p><p>In this presentation, we examine different approaches to relate precipitation extremes to near-surface temperature and dew-point temperature. We show that the relationship breaks at certain thresholds that are relatively uniform across islands. The region is well supplied with water vapor and the break is not explained by a deficit in water vapor, unlike previously proposed for other water-limited regions. We identify possible reasons for this behavior, such as the lack of environmental conditions that trigger convection. In this context, we explore the sensitivity of the modelling system to the convection representation (explicit vs. parameterized) and discuss the implications for future changes in intense precipitation events. Finally, we put forward the use of specific variables, such as temperature and equivalent potential temperature integrated in the vertical. These variables not only are coherent with the CC equation but also acknowledge the different warming rates near the surface and at higher tropospheric levels, where precipitating processes actually occur.</p>
Title: Precipitation scaling in the tropics with a convection-permitting model
Description:
<p>The Maritime Continent is a major convective area and precipitation processes in the region pose great challenges to atmospheric models.
A combination of large-scale drivers, such as the Madden-Julian Oscillation and ENSO, and fine-scale processes, such as orographically-forced precipitation, land-sea circulations and tropical convection, governs rainfall in the Maritime Continent.
The use of convection-permitting models in the region has shown improved performance in the simulation of precipitation characteristics that are key for the region (i.
e.
diurnal cycle).
</p><p>Most of the rainfall occurring over land is concentrated in the late afternoon and precipitation extremes often occur over short periods of time.
The availability of water vapor in the lower troposphere and the high water-holding capacity of a warm atmosphere favors very intense precipitation events, according to the Clausius-Clapeyron relationship.
In a warming climate, a full understanding of the so-called precipitation scaling with temperature is thus crucial.
However, this potential generally requires the atmosphere be saturated and convection be initiated to become effective.
Using a regional climate model operating at convection-permitting scales over 3 consecutive wet seasons, we investigate the response of intense precipitation to temperature.
</p><p>In this presentation, we examine different approaches to relate precipitation extremes to near-surface temperature and dew-point temperature.
We show that the relationship breaks at certain thresholds that are relatively uniform across islands.
The region is well supplied with water vapor and the break is not explained by a deficit in water vapor, unlike previously proposed for other water-limited regions.
We identify possible reasons for this behavior, such as the lack of environmental conditions that trigger convection.
In this context, we explore the sensitivity of the modelling system to the convection representation (explicit vs.
parameterized) and discuss the implications for future changes in intense precipitation events.
Finally, we put forward the use of specific variables, such as temperature and equivalent potential temperature integrated in the vertical.
These variables not only are coherent with the CC equation but also acknowledge the different warming rates near the surface and at higher tropospheric levels, where precipitating processes actually occur.
</p>.
Related Results
An event-ensemble approach to investigate hourly extreme precipitation over Italy using convection-permitting reanalyses
An event-ensemble approach to investigate hourly extreme precipitation over Italy using convection-permitting reanalyses
Localized convective precipitation, characterized by short duration and high intensity, remains difficult to investigate using observations alone. Convection-permitting regional re...
Spatio-temporal Distribution Characteristics of Summer Precipitation Duration in Northwest China
Spatio-temporal Distribution Characteristics of Summer Precipitation Duration in Northwest China
Based on the daily precipitation observation data of 208 rain-gauge
stations in Northwest China from 1961 to 2020, we use the statistical
analysis method, the Mann-Kendall test met...
Grain size evolution and heat transfer regime in the shells of icy moons
Grain size evolution and heat transfer regime in the shells of icy moons
IntroductionTogether with the ice shell thickness, grain size due to its effect on viscosity is perhaps the most crucial parameter determining the heat transfer regime inside the ...
Air convection in coarse blocky permafrost : a numerical modelling approach to improve the understanding of the ground thermal regime
Air convection in coarse blocky permafrost : a numerical modelling approach to improve the understanding of the ground thermal regime
Permafrost is a thermal phenomenon, defined as subsurface material with a temperature remaining below 0°C for at least two consecutive years. Permafrost occurs at high latitudes an...
Significant Reduction in Precipitation Seasonality and the Association with Extreme Precipitation in the Hai River Basin of China from 1960 to 2018
Significant Reduction in Precipitation Seasonality and the Association with Extreme Precipitation in the Hai River Basin of China from 1960 to 2018
The Hai River Basin (HRB) serves as a vital center for the population, economy and politics in northern China. Natural hazards, particularly floods, pose significant risks to the r...
Ocean Convection
Ocean Convection
Ocean convection is a key mechanism that regulates heat uptake, water-mass transformation, CO2 exchange, and nutrient transport with crucial implications for ocean dynamics and cli...
Trend in Extreme Precipitation Indices Based on Long Term In Situ Precipitation Records over Pakistan
Trend in Extreme Precipitation Indices Based on Long Term In Situ Precipitation Records over Pakistan
Assessing the long-term precipitation changes is of utmost importance for understanding the impact of climate change. This study investigated the variability of extreme precipitati...
On The Convective Precipitation Contribution during Vb-events
On The Convective Precipitation Contribution during Vb-events
<p>Recent studies have focused on the relationship between global warming and extreme precipitation events. It is consensed that the risk of flooding is increasing du...

