Javascript must be enabled to continue!
Interdecadal changes and the role of Philippine Sea convection in the intensification of Indian spring heatwaves
View through CrossRef
Severe heatwaves have become increasingly frequent over the Indian subcontinent in recent decades. This study found that the increase in extreme heatwaves is related to a significant decadal change in surface temperatures over the Indian subcontinent, and revealed that the increase in convective activity in the Philippine Sea plays a crucial role in this decadal change in surface temperature. Specifically, the surface temperature over the Indian subcontinent in spring has increased significantly by approximately 0.64 ◦C in recent years (1998–2022: post-1998) compared to the past (1959–1997: pre-1998), leading to more intense and frequent heatwaves, particularly in March and April. The difference in atmospheric changes between these two periods shows that the enhancement of convective activity over the Philippine Sea drives an anomalous elongated anticyclonic circulation over the Indian subcontinent. This circulation pattern, marked by clearer skies and increased incident solar radiation, significantly contributes to the heat extremes in the Indian subcontinent. Additionally, stationary wave model experiments demonstrate that local diabatic heating over the Philippine Sea is significantly linked to robust spring Indian heatwaves through the Matsuno–Gill response.
Title: Interdecadal changes and the role of Philippine Sea convection in the intensification of Indian spring heatwaves
Description:
Severe heatwaves have become increasingly frequent over the Indian subcontinent in recent decades.
This study found that the increase in extreme heatwaves is related to a significant decadal change in surface temperatures over the Indian subcontinent, and revealed that the increase in convective activity in the Philippine Sea plays a crucial role in this decadal change in surface temperature.
Specifically, the surface temperature over the Indian subcontinent in spring has increased significantly by approximately 0.
64 ◦C in recent years (1998–2022: post-1998) compared to the past (1959–1997: pre-1998), leading to more intense and frequent heatwaves, particularly in March and April.
The difference in atmospheric changes between these two periods shows that the enhancement of convective activity over the Philippine Sea drives an anomalous elongated anticyclonic circulation over the Indian subcontinent.
This circulation pattern, marked by clearer skies and increased incident solar radiation, significantly contributes to the heat extremes in the Indian subcontinent.
Additionally, stationary wave model experiments demonstrate that local diabatic heating over the Philippine Sea is significantly linked to robust spring Indian heatwaves through the Matsuno–Gill response.
Related Results
ACKNOWLEDGMENTS
ACKNOWLEDGMENTS
The UP Manila Health Policy Development Hub recognizes the invaluable contribution of the participants in theseries of roundtable discussions listed below:
RTD: Beyond Hospit...
Coastal karst springs in the Mediterranean basin : study of the mechanisms of saline pollution at the Almyros spring (Crete), observations and modelling
Coastal karst springs in the Mediterranean basin : study of the mechanisms of saline pollution at the Almyros spring (Crete), observations and modelling
Abstract
Variations in salinity and flow rate in the aerial, naturally salty spring of Almyros of Heraklion on Crete were monitored during two hydrological cycles. W...
Quasi‐periodicity and global symmetries in interdecadal upper ocean temperature variability
Quasi‐periodicity and global symmetries in interdecadal upper ocean temperature variability
Recent studies find interannual (i.e., 3 to 7 year), decadal (i.e., 9 to 13 year), and interdecadal (i.e., 18 to 23 year) periodicities, and a trend dominating global sea surface t...
Sensitivity of Summertime Heatwaves to Vegetation Cover in the Northern Hemisphere
Sensitivity of Summertime Heatwaves to Vegetation Cover in the Northern Hemisphere
<p>Heatwaves are a serious threat to society and can lead to grave consequences. It is well known that persistent large-scale circulation anomalies are the key to gen...
Observed Heatwaves Characteristics and Variability over Saudi Arabia
Observed Heatwaves Characteristics and Variability over Saudi Arabia
Abstract
Heatwaves are prolonged periods of excessively hot weather, which can have significant impacts on human health, agriculture, and the environment. Climate change ha...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...
European heatwaves in present and future climate simulations: A Lagrangian analysis
European heatwaves in present and future climate simulations: A Lagrangian analysis
<p>Heatwaves are prolonged periods of anomolously high temperatures. Also in combination with droughts, heatwaves can have devastating impacts on the environment, soc...
Seasonally variable thermal performance curves prevent adverse effects of heatwaves
Seasonally variable thermal performance curves prevent adverse effects of heatwaves
Abstract
The increasing frequency and intensity of heatwaves may represent a significant challenge for predicting vulnerability of populations in...

