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Environmental Sciences

D-Index
36
Citations
6625
World Ranking
9083
National Ranking
3260

Overview

Baoqiang Xiang is affiliated with the University Corporation for Atmospheric Research in the United States. Their research primarily focuses on Earth and Planetary Sciences as well as Environmental Science, with a particular emphasis on Global and Planetary Change and Atmospheric Science. Subfields such as Oceanography, Astronomy and Astrophysics, and Ecology, Evolution, Behavior and Systematics also feature in their work.

The main topics explored by Baoqiang Xiang include Climate Variability and Models, Meteorological Phenomena and Simulations, Atmospheric and Environmental Gas Dynamics, Tropical and Extratropical Cyclones Research, Oceanographic and Atmospheric Processes, Atmospheric Ozone and Climate, and Arctic and Antarctic Ice Dynamics.

Their recent papers reflect a consistent presence in significant journals and span various related themes:

  • "SPEAR: The Next Generation GFDL Modeling System for Seasonal to Multidecadal Prediction and Projection," 2020, Journal of Advances in Modeling Earth Systems
  • "Detected climatic change in global distribution of tropical cyclones," 2020, Proceedings of the National Academy of Sciences
  • "GFDL SHiELD: A Unified System for Weather-to-Seasonal Prediction," 2020, Journal of Advances in Modeling Earth Systems
  • "Walker circulation response to extratropical radiative forcing," 2020, Science Advances
  • "Understanding the recent increase in multiyear La Niñas," 2023, Nature Climate Change

Their research contributions are often published in the following venues:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Bulletin of the American Meteorological Society
  • npj Climate and Atmospheric Science
  • Journal of Advances in Modeling Earth Systems
  • Journal of Climate

Baoqiang Xiang frequently collaborates with several researchers, including:

  • Lucas Harris
  • Jan-Huey Chen
  • Linjiong Zhou
  • Mingjing Tong
  • Kun Gao

Best Publications

  • Subtropical High predictability establishes a promising way for monsoon and tropical storm predictions

    Bin Wang;Baoqiang Xiang;June-Yi Lee

  • Structure and Performance of GFDL's CM4.0 Climate Model

    I. M. Held;H. Guo;A. Adcroft;J. P. Dunne

  • The GFDL Global Ocean and Sea Ice Model OM4.0: Model Description and Simulation Features

    Alistair Adcroft;Whit Anderson;V. Balaji;Chris Blanton

  • Northern Hemisphere summer monsoon intensified by mega-El Niño/southern oscillation and Atlantic multidecadal oscillation

    Bin Wang;Jian Liu;Jian Liu;Hyung-Jin Kim;Peter J. Webster

  • The GFDL Global Atmosphere and Land Model AM4.0/LM4.0: 2. Model Description, Sensitivity Studies, and Tuning Strategies

    M. Zhao;J.-C. Golaz;I. M. Held;H. Guo

  • The GFDL Global Atmosphere and Land Model AM4.0/LM4.0: 1. Simulation Characteristics With Prescribed SSTs

    M. Zhao;J. C. Golaz;Isaac M. Held;H. Guo

  • A new paradigm for the predominance of standing Central Pacific Warming after the late 1990s

    Baoqiang Xiang;Bin Wang;Tim Li

  • SPEAR – the next generation GFDL modeling system for seasonal to multidecadal prediction and projection

    Thomas L. Delworth;William F. Cooke;William F. Cooke;Alistair Adcroft;Alistair Adcroft;Mitchell Bushuk;Mitchell Bushuk

  • How can anomalous western North Pacific Subtropical High intensify in late summer

    Baoqiang Xiang;Bin Wang;Weidong Yu;Shibin Xu;Shibin Xu

  • Rethinking Indian monsoon rainfall prediction in the context of recent global warming

    Bin Wang;Baoqiang Xiang;Juan Li;Peter J. Webster

  • Detected climatic change in global distribution of tropical cyclones.

    Hiroyuki Murakami;Hiroyuki Murakami;Thomas L. Delworth;William F. Cooke;Ming Zhao

  • Understanding the origins of interannual thermocline variations in the tropical Indian Ocean

    Weidong Yu;Baoqiang Xiang;Lin Liu;Lin Liu;Na Liu

  • Impacts of two types of La Niña on the NAO during boreal winter

    Wenjun Zhang;Wenjun Zhang;Lei Wang;Baoqiang Xiang;Li Qi

  • Similar spatial patterns of climate responses to aerosol and greenhouse gas changes

    Shang-Ping Xie;Shang-Ping Xie;Shang-Ping Xie;Bo Lu;Bo Lu;Bo Lu;Baoqiang Xiang

  • Asian summer monsoon rainfall predictability: a predictable mode analysis

    Bin Wang;Bin Wang;June-Yi Lee;Baoqiang Xiang;Baoqiang Xiang;Baoqiang Xiang

  • Mechanisms for the Advanced Asian Summer Monsoon Onset since the Mid-to-Late 1990s*

    Baoqiang Xiang;Bin Wang

  • GFDL SHiELD: A Unified System for Weather-to-Seasonal Prediction

    Lucas Harris;Linjiong Zhou;Linjiong Zhou;Shian-Jiann Lin;Jan-Huey Chen;Jan-Huey Chen

  • The 3–4-Week MJO Prediction Skill in a GFDL Coupled Model

    Baoqiang Xiang;Ming Zhao;Xianan Jiang;Shian Jiann Lin

  • Predicting the severity of spurious “double ITCZ” problem in CMIP5 coupled models from AMIP simulations

    Baoqiang Xiang;Baoqiang Xiang;Ming Zhao;Isaac M. Held;Jean Christophe Golaz

  • Walker circulation response to extratropical radiative forcing.

    Sarah M. Kang;Shang-Ping Xie;Yechul Shin;Hanjun Kim

Frequent Co-Authors

Bin Wang
Bin Wang University of Hawaii at Manoa
Ming Zhao
Ming Zhao Geophysical Fluid Dynamics Laboratory
Shian-Jiann Lin
Shian-Jiann Lin Geophysical Fluid Dynamics Laboratory
Nathaniel C. Johnson
Nathaniel C. Johnson Geophysical Fluid Dynamics Laboratory
Tim Li
Tim Li University of Hawaii at Manoa
Andrew T. Wittenberg
Andrew T. Wittenberg Geophysical Fluid Dynamics Laboratory
Jean-Christophe Golaz
Jean-Christophe Golaz Lawrence Livermore National Laboratory
Hiroyuki Murakami
Hiroyuki Murakami National Oceanic and Atmospheric Administration
Isaac M. Held
Isaac M. Held Princeton University
Leo J. Donner
Leo J. Donner Geophysical Fluid Dynamics Laboratory

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