The Role of Dry Intrusions in Breaks of the Indian Summer Monsoon.
Saved in:
| Title: | The Role of Dry Intrusions in Breaks of the Indian Summer Monsoon. |
|---|---|
| Authors: | Deoras, Akshay1,2 (AUTHOR) akshay.deoras@reading.ac.uk, Turner, Andrew G.1,2 (AUTHOR), Volonté, Ambrogio1,2 (AUTHOR), Schiemann, Reinhard K. H.1 (AUTHOR), Wilcox, Laura J.1 (AUTHOR), Menon, Arathy3 (AUTHOR) |
| Source: | Journal of Climate. Mar2026, Vol. 39 Issue 5, p1237-1250. 14p. |
| Subjects: | Monsoons, Precipitation variability, Atmospheric physics, Weather forecasting |
| Geographic Terms: | India |
| Abstract: | The Indian summer monsoon (ISM) is crucial to over a billion people since it supplies over 75% of the country's annual precipitation. Significant intraseasonal variability in rainfall affects people, with breaks responsible for causing water shortages. It is known that dry intrusions play a role in breaks; however, it is not well understood compared to their role during progressions of the onset and withdrawal of the ISM. In this study, we use observations and the fifth generation ECMWF atmospheric reanalysis (ERA5) to understand the role of dry intrusions in breaks during 1940–2023. We develop an index based on moisture deficit to identify dry intrusions and find that most breaks are associated with dry intrusions emanating from arid regions to the west and northwest of India. These dry intrusions begin to enter India around a week prior to the middle day of breaks, reaching their peak strength over northwest India and adjoining eastern Pakistan 2–3 days prior to the middle day of breaks. Vertical profiles reveal that these are midlevel dry intrusions, which are similar to those driving the direction of the withdrawal of the ISM. As breaks evolve, these dry intrusions deepen throughout their horizontal extent and descend into the country, stabilizing the troposphere and creating an unfavorable environment for deep convection. We also find that extended breaks have stronger dry intrusions as precursors. Thus, this work helps establish a causal relationship between midlevel dry intrusions and breaks. The results could help improve forecasts of breaks, ultimately benefiting stakeholders in improving long-term planning. [ABSTRACT FROM AUTHOR] |
| Copyright of Journal of Climate is the property of American Meteorological Society and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.) | |
| Database: | Engineering Source |
|
Full text is not displayed to guests.
Login for full access.
|
|
| Abstract: | The Indian summer monsoon (ISM) is crucial to over a billion people since it supplies over 75% of the country's annual precipitation. Significant intraseasonal variability in rainfall affects people, with breaks responsible for causing water shortages. It is known that dry intrusions play a role in breaks; however, it is not well understood compared to their role during progressions of the onset and withdrawal of the ISM. In this study, we use observations and the fifth generation ECMWF atmospheric reanalysis (ERA5) to understand the role of dry intrusions in breaks during 1940–2023. We develop an index based on moisture deficit to identify dry intrusions and find that most breaks are associated with dry intrusions emanating from arid regions to the west and northwest of India. These dry intrusions begin to enter India around a week prior to the middle day of breaks, reaching their peak strength over northwest India and adjoining eastern Pakistan 2–3 days prior to the middle day of breaks. Vertical profiles reveal that these are midlevel dry intrusions, which are similar to those driving the direction of the withdrawal of the ISM. As breaks evolve, these dry intrusions deepen throughout their horizontal extent and descend into the country, stabilizing the troposphere and creating an unfavorable environment for deep convection. We also find that extended breaks have stronger dry intrusions as precursors. Thus, this work helps establish a causal relationship between midlevel dry intrusions and breaks. The results could help improve forecasts of breaks, ultimately benefiting stakeholders in improving long-term planning. [ABSTRACT FROM AUTHOR] |
|---|---|
| ISSN: | 08948755 |
| DOI: | 10.1175/JCLI-D-25-0004.1 |