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Featured researches published by Ghouse Basha.


Scientific Reports | 2017

Historical and Projected Surface Temperature over India during the 20 th and 21 st century

Ghouse Basha; P. Kishore; M. Venkat Ratnam; A. Jayaraman; Amir Agha Kouchak; Taha B. M. J. Ouarda; I. Velicogna

Surface Temperature (ST) over India has increased by ~0.055 K/decade during 1860–2005 and follows the global warming trend. Here, the natural and external forcings (e.g., natural and anthropogenic) responsible for ST variability are studied from Coupled Model Inter-comparison phase 5 (CMIP5) models during the 20th century and projections during the 21st century along with seasonal variability. Greenhouse Gases (GHG) and Land Use (LU) are the major factors that gave rise to warming during the 20th century. Anthropogenic Aerosols (AA) have slowed down the warming rate. The CMIP5 projection over India shows a sharp increase in ST under Representative Concentration Pathways (RCP) 8.5 where it reaches a maximum of 5 K by the end of the 21st century. Under RCP2.6 emission scenarios, ST increases up to the year 2050 and decreases afterwards. The seasonal variability of ST during the 21st century shows significant increase during summer. Analysis of rare heat and cold events for 2080–2099 relative to a base period of 1986–2006 under RCP8.5 scenarios reveals that both are likely to increase substantially. However, by controlling the regional AA and LU change in India, a reduction in further warming over India region might be achieved.


Atmospheric Chemistry and Physics | 2018

Long-term trends of instability and associated parametersover the Indian region obtained using radiosonde network

Rohit Chakraborty; Madineni Venkat Ratnam; Ghouse Basha

This paper estimates the atmospheric stability parameters from the radiosonde data over the Indian sub-continent (sub classified to six regions) and discusses the longterm trends. From meteorological point of view, the analysis of atmospheric stability parameter is important in examining the convective weather development. The manuscript is of interest, however needs major revision and careful consideration of the issues listed below.


Journal of Geophysical Research | 2009

Identification of atmospheric boundary layer height over a tropical station using high‐resolution radiosonde refractivity profiles: Comparison with GPS radio occultation measurements

Ghouse Basha; M. Venkat Ratnam


Journal of Atmospheric and Solar-Terrestrial Physics | 2011

Global (50°S–50°N) distribution of water vapor observed by COSMIC GPS RO: Comparison with GPS radiosonde, NCEP, ERA-Interim, and JRA-25 reanalysis data sets

P. Kishore; M. Venkat Ratnam; I. Velicogna; Ghouse Basha; Kiyoshi Igarashi; V. Sivakumar


Journal of Atmospheric and Solar-Terrestrial Physics | 2014

Tropical tropopause dynamics (TTD) campaigns over Indian region: An overview

M. Venkat Ratnam; S.V. Sunilkumar; K. Parameswaran; B. V. Krishna Murthy; Geetha Ramkumar; K. Rajeev; Ghouse Basha; S. Ravindra Babu; M. Muhsin; Manoj Kumar Mishra; A. Hemanth Kumar; S.T. Akhil Raj; M. Pramitha


Climate Dynamics | 2016

Precipitation climatology over India: validation with observations and reanalysis datasets and spatial trends

P. Kishore; S. Jyothi; Ghouse Basha; S. V. B. Rao; M. Rajeevan; I. Velicogna; Tyler C. Sutterley


Journal of Atmospheric and Solar-Terrestrial Physics | 2010

Effect of the annular solar eclipse of 15 January 2010 on the lower atmospheric boundary layer over a tropical rural station

M. Venkat Ratnam; M. Shravan Kumar; Ghouse Basha; V. K. Anandan; A. Jayaraman


International Journal of Climatology | 2015

Long-term projections of temperature, precipitation and soil moisture using non-stationary oscillation processes over the UAE region.

Ghouse Basha; Taha B. M. J. Ouarda; Prashanth Reddy Marpu


International Journal of Climatology | 2016

Influence of climate oscillations on temperature and precipitation over the United Arab Emirates

Alisha Chandran; Ghouse Basha; Taha B. M. J. Ouarda


Geophysical Research Letters | 2011

Unusual enhancement in temperature and ozone vertical distribution in the lower stratosphere observed over Gadanki, India, following the 15 January 2010 annular eclipse

M. Venkat Ratnam; Ghouse Basha; M. Roja Raman; Sanjay Kumar Mehta; B. V. Krishna Murthy; A. Jayaraman

Collaboration


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M. Venkat Ratnam

National Atmospheric Research Laboratory

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Taha B. M. J. Ouarda

Institut national de la recherche scientifique

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I. Velicogna

University of California

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P. Kishore

University of California

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A. Jayaraman

National Atmospheric Research Laboratory

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B. V. Krishna Murthy

Vikram Sarabhai Space Centre

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S. V. B. Rao

Sri Venkateswara University

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Prashanth Reddy Marpu

Masdar Institute of Science and Technology

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G.N. Madhavi

Sri Venkateswara University

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