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  5. Relative influence of ENSO, IOD, and AMO over spatiotemporal variability of hydroclimatic extremes in Narmada basin, India

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Article
English
2023

Relative influence of ENSO, IOD, and AMO over spatiotemporal variability of hydroclimatic extremes in Narmada basin, India

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English
2023
AQUA - Water Infrastructure Ecosystems and Society
Vol 72 (4)
DOI: 10.2166/aqua.2023.219

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Manish Kumar Goyal
Manish Kumar Goyal

Indian Institute Of Technology Indorethe Institution

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Shivam Singh
Nikhil Kumar
Manish Kumar Goyal
+1 more

Abstract

The Narmada basin is one of the major river basins of Central India. The basin frequently experiences droughts and floods due to its geography and uneven topography. Therefore, it is important to understand the spatiotemporal variability of hydroclimatic extremes over the basin. Large-scale climate oscillations (LSCOs) have been observed significantly affecting the patterns of hydroclimatic extremes at the basin and continental scale. In this study, we have analysed the relative influence of LSCOs (EL Nino-Southern Oscillation (ENSO), Indian Ocean Dipole (IOD), and Atlantic multidecadal oscillation (AMO)) over hydroclimatic extremes of the Narmada basin. Precipitation, temperature, and streamflow extremes were analysed in stationary and nonstationary frameworks of generalized extreme value distribution. The precipitation extremes, PRCPTOT and R95p were observed significantly influenced by ENSO, IOD, and AMO individually whereas extreme Rx5day was relatively more influenced by ENSO and AMO individually and collectively. Temperature extremes, TXx was significantly more influenced by ENSO alone (26.47% of the region), while TNx was observed to be substantially more influenced by ENSO and AMO. The upper Narmada basin was found vulnerable to flooding and whereas the basin was projected to experience more frequent and intense heatwave-associated disasters in long term.

How to cite this publication

Shivam Singh, Nikhil Kumar, Manish Kumar Goyal, Srinidhi Jha (2023). Relative influence of ENSO, IOD, and AMO over spatiotemporal variability of hydroclimatic extremes in Narmada basin, India. AQUA - Water Infrastructure Ecosystems and Society, 72(4), pp. 520-539, DOI: 10.2166/aqua.2023.219.

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Publication Details

Type

Article

Year

2023

Authors

4

Datasets

0

Total Files

0

Language

English

Journal

AQUA - Water Infrastructure Ecosystems and Society

DOI

10.2166/aqua.2023.219

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