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Environmental Sciences

D-Index
47
Citations
8733
World Ranking
5767
National Ranking
2100

Overview

Brian E. Mapes is affiliated with the University of Miami in the United States. Their research primarily focuses on Earth and Planetary Sciences and Environmental Science, with significant contributions to subfields such as Atmospheric Science, Global and Planetary Change, Computational Mechanics, Oceanography, and Earth-Surface Processes.

The scientist's work covers several main topics, including:

  • Meteorological Phenomena and Simulations
  • Climate variability and models
  • Tropical and Extratropical Cyclones Research
  • Precipitation Measurement and Analysis
  • Atmospheric aerosols and clouds
  • Fluid Dynamics and Turbulent Flows
  • Fluid Dynamics and Vibration Analysis

Frequent publication venues for Brian E. Mapes include:

  • Journal of the Atmospheric Sciences
  • Weather and Climate Extremes
  • Annual Review of Fluid Mechanics
  • npj Climate and Atmospheric Science
  • Monthly Weather Review

The scientist has collaborated often with several co-authors, such as:

  • P. Vijaykumar
  • S. Abhilash
  • A.V. Sreenath
  • Wei-Ming Tsai
  • U.N. Athira

Among the recent papers authored or co-authored by Brian E. Mapes are:

  • Kerala floods in consecutive years - Its association with mesoscale cloudburst and structural changes in monsoon clouds over the west coast of India, 2021, Weather and Climate Extremes
  • Spontaneous Aggregation of Convective Storms, 2021, Annual Review of Fluid Mechanics
  • West coast India's rainfall is becoming more convective, 2022, npj Climate and Atmospheric Science
  • Gravity Waves and Other Mechanisms Modulating the Diurnal Precipitation over One of the Rainiest Spots on Earth: Observations and Simulations in 2016, 2020, Monthly Weather Review
  • Evidence of Aggregation Dependence of 5°-Scale Tropical Convective Evolution Using a Gross Moist Stability Framework, 2022, Journal of the Atmospheric Sciences

Best Publications

  • Tropical Intraseasonal Variability in 14 IPCC AR4 Climate Models. Part I: Convective Signals

    Jia Lin Lin;George N. Kiladis;Brian E. Mapes;Klaus M. Weickmann

  • Gregarious Tropical Convection

    Brian E. Mapes

  • Multiscale variability of deep convection in relation to large-scale circulation in TOGA COARE

    Shuyi S. Chen;Robert A. Houze;Brian E. Mapes

  • Diabatic Divergence Profiles in Western Pacific Mesoscale Convective Systems

    Brian E. Mapes;Robert A. Houze

  • Convective Inhibition, Subgrid-Scale Triggering Energy, and Stratiform Instability in a Toy Tropical Wave Model

    Brian E. Mapes

  • The mesoscale convection life cycle: Building block or prototype for large-scale tropical waves?

    Brian Mapes;Stefan Tulich;Jialin Lin;Paquita Zuidema

  • Diurnal patterns of rainfall in northwestern South America. Part III: Diurnal gravity waves and nocturnal convection offshore

    Brian E. Mapes;Thomas T. Warner;Mei Xu

  • Stratiform Precipitation, Vertical Heating Profiles, and the Madden Julian Oscillation

    Jialin Lin;Brian Mapes;Minghua Zhang;Matthew Newman

  • Diurnal Patterns of Rainfall in Northwestern South America. Part I: Observations and Context

    Brian E. Mapes;Thomas T. Warner;Mei Xu;Andrew J. Negri

  • Parameterizing Convective Organization to Escape the Entrainment Dilemma

    Brian Mapes;Richard Neale

  • Bimodality in tropical water vapour

    Chidong Zhang;Brian E. Mapes;Brian J. Soden

  • Global energetics and local physics as drivers of past, present and future monsoons

    Michela Biasutti;Aiko Voigt;Aiko Voigt;William R. Boos;Pascale Braconnot

  • A Simple Atmospheric Model of the Local and Teleconnection Responses to Tropical Heating Anomalies

    Sang Ki Lee;Chunzai Wang;Brian E. Mapes

  • Subseasonal variability associated with Asian summer monsoon simulated by 14 IPCC AR4 coupled GCMs

    Jia Lin Lin;Klaus M. Weickman;George N. Kiladis;Brian E Mapes

  • An Integrated View of the 1987 Australian Monsoon and Its Mesoscale Convective Systems. I: Horizontal Structure

    Brian Mapes;Robert A. Houze

  • Influence of cloud‐radiation interaction on simulating tropical intraseasonal oscillation with an atmospheric general circulation model

    Myong In Lee;In Sik Kang;Jong Khun Kim;Brian E. Mapes

  • Clouds Associated with the Madden–Julian Oscillation: A New Perspective from CloudSat

    Emily M. Riley;Brian E. Mapes;Stefan N. Tulich

  • The climate response of the Indo-Pacific warm pool to glacial sea level

    Pedro N. Di Nezio;Axel Timmermann;Jessica E. Tierney;Fei Fei Jin

  • Impacts of cumulus convection parameterization on aqua-planet AGCM simulations of tropical intraseasonal variability

    Myong In Lee;In Sik Kang;Brian E. Mapes

  • Diurnal Patterns of Rainfall in Northwestern South America. Part II: Model Simulations

    Thomas T. Warner;Brian E. Mapes;Mei Xu

Frequent Co-Authors

Paquita Zuidema
Paquita Zuidema University of Miami
Myong-In Lee
Myong-In Lee Ulsan National Institute of Science and Technology
Zhiming Kuang
Zhiming Kuang Harvard University
Robert A. Houze
Robert A. Houze University of Washington
Adam H. Sobel
Adam H. Sobel Lamont-Doherty Earth Observatory
Aiko Voigt
Aiko Voigt Karlsruhe Institute of Technology
Masaki Satoh
Masaki Satoh University of Tokyo
Siegfried D. Schubert
Siegfried D. Schubert Goddard Space Flight Center
George N. Kiladis
George N. Kiladis National Oceanic and Atmospheric Administration
Julio T. Bacmeister
Julio T. Bacmeister National Center for Atmospheric Research

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