Javascript must be enabled to continue!
IMDAA: High Resolution Satellite-era Reanalysis for the Indian Monsoon Region
View through CrossRef
AbstractA high resolution regional reanalysis of the Indian Monsoon Data Assimilation and Analysis (IMDAA) project is made available to researchers for deeper understanding of the Indian monsoon and its variability. This 12 km resolution reanalysis covering the satellite-era from 1979 to 2018 using 4D-Var data assimilation method and the UK Met Unified Model is presently the highest resolution atmospheric reanalysis carried out for the Indian monsoon region. Conventional and satellite observations from different sources are used, including Indian surface and upper air observations, of which some were not used in any previous reanalyses. Various aspects of this reanalysis, like quality control and bias correction of observations, data assimilation system, land surface analysis, and verification of reanalysis products, are presented in this paper. Representation of important weather phenomena of each season over India in the IMDAA reanalysis verifies reasonably well against India Meteorological Department (IMD) observations and compares closely with ERA5. Salient features of the Indian summer monsoon are found to be well represented in the IMDAA reanalysis. Characteristics of major semi-permanent summer monsoon features (e.g., Low-level Jet and Tropical Easterly Jet) in IMDAA reanalysis are consistent with ERA5. The IMDAA reanalysis has captured the mean, inter-annual, and intra-seasonal variability of summer monsoon rainfall fairly well. IMDAA produces a slightly cooler winter and a hotter summer than the observations; the reverse for ERA5. IMDAA captured the fine-scale features associated with a notable heavy rainfall episode over complex terrain. In this study, the fine grid spacing nature of IMDAA is compromised due to the lack of comparable resolution observations for verification.
American Meteorological Society
Title: IMDAA: High Resolution Satellite-era Reanalysis for the Indian Monsoon Region
Description:
AbstractA high resolution regional reanalysis of the Indian Monsoon Data Assimilation and Analysis (IMDAA) project is made available to researchers for deeper understanding of the Indian monsoon and its variability.
This 12 km resolution reanalysis covering the satellite-era from 1979 to 2018 using 4D-Var data assimilation method and the UK Met Unified Model is presently the highest resolution atmospheric reanalysis carried out for the Indian monsoon region.
Conventional and satellite observations from different sources are used, including Indian surface and upper air observations, of which some were not used in any previous reanalyses.
Various aspects of this reanalysis, like quality control and bias correction of observations, data assimilation system, land surface analysis, and verification of reanalysis products, are presented in this paper.
Representation of important weather phenomena of each season over India in the IMDAA reanalysis verifies reasonably well against India Meteorological Department (IMD) observations and compares closely with ERA5.
Salient features of the Indian summer monsoon are found to be well represented in the IMDAA reanalysis.
Characteristics of major semi-permanent summer monsoon features (e.
g.
, Low-level Jet and Tropical Easterly Jet) in IMDAA reanalysis are consistent with ERA5.
The IMDAA reanalysis has captured the mean, inter-annual, and intra-seasonal variability of summer monsoon rainfall fairly well.
IMDAA produces a slightly cooler winter and a hotter summer than the observations; the reverse for ERA5.
IMDAA captured the fine-scale features associated with a notable heavy rainfall episode over complex terrain.
In this study, the fine grid spacing nature of IMDAA is compromised due to the lack of comparable resolution observations for verification.
Related Results
The Monsoon as a Hydrological Capacitor: Memory Effects and Interannual Variability
The Monsoon as a Hydrological Capacitor: Memory Effects and Interannual Variability
The monsoon plays a very important role in controlling water availability over land, especially in regions like South Asia. While monsoon rainfall is often studied as a seasonal ev...
Seasonal climate influences on the timing of the Australian monsoon
onset
Seasonal climate influences on the timing of the Australian monsoon
onset
Abstract. The timing of the first monsoon burst of the season, or the monsoon onset, can be a critical piece of information for agriculture, fire management, water management and e...
Assessment of water quality of the Dhuppani waterfall and its advantages for the inhabitants of the Rangamati Hill Tracts, Bangladesh
Assessment of water quality of the Dhuppani waterfall and its advantages for the inhabitants of the Rangamati Hill Tracts, Bangladesh
The present investigation aimed to evaluate seasonal fluctuations in water quality parameters of the Dhuppani waterfall, located in Rangamati, Bangladesh, with the goal of supporti...
Monsoon, post monsoon rainy days analysis by using normal, binomial distribution and discrete probability for south Gujarat
Monsoon, post monsoon rainy days analysis by using normal, binomial distribution and discrete probability for south Gujarat
The analysis will be conducted for standard weekly (SW) 22 to 47 of monsoon and post monsoon season at south Gujarat. The standard weekly rainy days analysis of binomial distributi...
Interannual variability in Monsoon Low Level Jet and Indian summermonsoon rainfall (ISMR)
Interannual variability in Monsoon Low Level Jet and Indian summermonsoon rainfall (ISMR)
<p>The strong cross-equatorial Low Level Jet (LLJ) exists over the Indian Ocean and the South Asia is an important component in modulating the Indian Summer Monsoon R...
Isotopic Signatures of Precipitation: Linking Tropospheric and Surface Processes in India's Core Monsoon Zone
Isotopic Signatures of Precipitation: Linking Tropospheric and Surface Processes in India's Core Monsoon Zone
The monsoon system is a dynamic and complex component of the atmospheric water cycle, profoundly impacting weather, climate, and human activities. A variety of meteorological obser...
Asian-Australian monsoon variations at orbital scales – insights from model simulations
Asian-Australian monsoon variations at orbital scales – insights from model simulations
<p>The Asian-Australian monsoon system is mainly composed of East Asian monsoon, Australian monsoon and South Asian monsoon. The Australian monsoon and East Asian mon...
The Empirical Influence of Tibetan Plateau Spring Soil Moisture on South Asian Monsoon Onset: A Linear Diagnostic Perspective
The Empirical Influence of Tibetan Plateau Spring Soil Moisture on South Asian Monsoon Onset: A Linear Diagnostic Perspective
Abstract
The South Asian high (SAH) location and intensity are linked with the latent heating of the Tibetan Plateau (TP) and Yangtze River basin. The relationship between SAH vari...

