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Unraveling the short-duration Delhi dust storm: insights from In-Situ, satellite, and reanalysis datasets

delete2026-07-01
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PRE
AI
K
Krishna Kumar Shukla *
S
Sukhwinder Kaur
G
Gajendra Kumar
K
Kondapalli Niranjan Kumar
A
Anoop Kumar Mishra
R
Raju Attada
B
Brajesh Kumar Kanaujiya
DOI:10.1007/s11869-026-02043-zdelete
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Abstract

Abstract

En 中文
Short-lived dust storms (DS) pose significant challenges due to their sudden onset, rapid intensification, and severe impacts on air quality, visibility, transportation, and public health. Unlike long-duration dust storms, these short-duration events remain poorly understood, largely because of limitations in observations and forecasting capabilities. The dust storm that occurred over Delhi on 11 April 2025 provides a valuable case to examine the meteorological processes driving such rapid-onset events. ERA5 fields reveal the presence of a low-pressure system over northwest India, accompanied by strong westerly surface winds exceeding 12 m s⁻1, which facilitated dust transport from nearby arid regions. Radiosonde derived convective available potential energy shows a sharp increase (~ 2300 J kg⁻1) on the dust storm day, compared to ~ 700 J kg⁻1 on the preceding day, indicating a highly unstable atmosphere conducive to deep convection and dust uplift. HYSPLIT back-trajectory analysis further confirms the dust transport from source regions. AERONET and satellite observations show enhanced aerosol loading, with aerosol optical depth peaking at ~ 0.73 and 0.6 during the event, respectively. An abrupt rise in PM₁₀ and PM₂.₅ concentrations is noticed ~ 950 µg m⁻3 and ~ 200 µg m⁻3, respectively, highlighting the dominance of coarse-mode dust aerosols. This abundance of dust aerosols reduced visibility from ~ 3500 m to ~ 500 m and led to a surface cooling of ~ 3 °C due to reduced incoming solar radiation. The results highlight the urgent need to strengthen short-range forecasting of rapid-onset DS by integrating high-frequency observations and improving dust parameterizations, thereby enhancing public health preparedness, aviation safety, and urban resilience.
Keywords:
Dust storm
Pre-monsoon
Aerosol optical depth
Particulate matter (PM10
PM2.5)
Air quality

Journal

A
air quality, atmosphere & health
IF:
0
Papers:
143
Citations:
0

Organization

N
National Centre for Medium Range Weather Forecasting
Scholars:
121
Papers: 94
Citations: 93
India Meteorological Department cover
India Meteorological Department
Scholars:
74
Papers: 39
Citations: 268
D
Department of Earth and Environmental Sciences
Scholars:
66
Papers: 35
Citations: 0
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