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D-Index & Metrics

Earth Science

D-Index
65
Citations
14568
World Ranking
1404
National Ranking
632

Overview

Dimitris Menemenlis is affiliated with the California Institute of Technology in the United States. Their research primarily spans Earth and Planetary Sciences with a specific focus on Environmental Science. Within these broader fields, they have contributed extensively to Oceanography, Atmospheric Science, and Global and Planetary Change.

Their work engages deeply with key topics including Oceanographic and Atmospheric Processes, Climate variability and models, Ocean Waves and Remote Sensing, Marine and coastal ecosystems, Arctic and Antarctic ice dynamics, Tropical and Extratropical Cyclones Research, and Geology and Paleoclimatology Research.

Menemenlis has published numerous papers across notable scientific journals and venues. Frequent publication outlets include Geophysical Research Letters, Zenodo (CERN European Organization for Nuclear Research), Journal of Geophysical Research Oceans, Geoscientific Model Development, and arXiv (Cornell University).

Some of Menemenlis's recent papers are:

  • Ocean forcing drives glacier retreat in Greenland, 2021, Science Advances
  • Understanding of Contemporary Regional Sea-Level Change and the Implications for the Future, 2020, Reviews of Geophysics
  • Carbon Monitoring System Flux Net Biosphere Exchange 2020 (CMS-Flux NBE 2020), 2021, Earth system science data
  • The ECCO-Darwin Data-Assimilative Global Ocean Biogeochemistry Model: Estimates of Seasonal to Multidecadal Surface Ocean pCO2 and Air-Sea CO2 Flux, 2020, Journal of Advances in Modeling Earth Systems
  • High-Frequency Submesoscale Motions Enhance the Upward Vertical Heat Transport in the Global Ocean, 2020, Journal of Geophysical Research Oceans

Menemenlis frequently collaborates with several researchers, including Brian K. Arbic, Hong Zhang, Dustin Carroll, Héctor Torres, and Patrice Klein. Collaboration counts with these co-authors range from 12 to 19 joint publications.

Best Publications

  • Oceanic sources, sinks, and transport of atmospheric CO2

    Nicolas Gruber;Manuel Gloor;Sara E. Mikaloff Fletcher;Scott C. Doney

  • On the formulation of sea-ice models. Part 1: Effects of different solver implementations and parameterizations

    Martin Losch;Dimitris Menemenlis;Jean-Michel Campin;Patick Heimbach

  • ECCO2: High Resolution Global Ocean and Sea Ice Data Synthesis

    D. Menemenlis;J. Campin;P. Heimbach;C. Hill

  • Inverse estimates of anthropogenic CO2 uptake, transport, and storage by the ocean

    Mikaloff Fletcher;Mikaloff Fletcher;Nicolas Gruber;Andrew Jacobson;Scott Doney

  • Ocean submesoscales as a key component of the global heat budget

    Zhan Su;Jinbo Wang;Patrice Klein;Andrew F. Thompson

  • Contrasting carbon cycle responses of the tropical continents to the 2015–2016 El Niño

    Junjie Liu;Kevin W. Bowman;David S. Schimel;Nicolas C. Parazoo

  • Trends in Arctic sea ice drift and role of wind forcing: 1992–2009

    Gunnar Spreen;Ron Kwok;Dimitris Menemenlis

  • Mesoscale to submesoscale wavenumber spectra in Drake Passage

    Cesar B. Rocha;Teresa K. Chereskin;Sarah T. Gille;Dimitris Menemenlis

  • Using Green's Functions to Calibrate an Ocean General Circulation Model

    Dimitris Menemenlis;Ichiro Fukumori;Tong Lee

  • Continued retreat of Thwaites Glacier, West Antarctica, controlled by bed topography and ocean circulation

    H. Seroussi;Y. Nakayama;E. Larour;D. Menemenlis

  • Effects of the Indonesian Throughflow on the Pacific and Indian Oceans

    Tong Lee;Ichiro Fukumori;Dimitris Menemenlis;Zhangfan Xing

  • Atmospheric and oceanic excitation of the Earth's wobbles during 1980–2000

    Richard S. Gross;Ichiro Fukumori;Dimitris Menemenlis

  • Small-scale open-ocean currents have large effects on wind-wave heights

    Fabrice Ardhuin;Sarah T. Gille;Dimitris Menemenlis;Cesar B. Rocha

  • Seasonality in Transition Scale from Balanced to Unbalanced Motions in the World Ocean

    Bo Qiu;Shuiming Chen;Patrice Klein;Jinbo Wang

  • Subaqueous melting of Store Glacier, west Greenland from three‐dimensional, high‐resolution numerical modeling and ocean observations

    Yun Xu;Eric Rignot;Eric Rignot;Ian Fenty;Dimitris Menemenlis

  • Can Large Eddy Simulation Techniques Improve Mesoscale Rich Ocean Models

    B. Fox-Kemper;D. Menemenlis

  • Seasonality of submesoscale dynamics in the Kuroshio Extension

    Cesar B. Rocha;Sarah T. Gille;Teresa K. Chereskin;Dimitris Menemenlis

  • Inverse estimates of the oceanic sources and sinks of natural CO2 and the implied oceanic carbon transport

    S. E. Mikaloff Fletcher;S. E. Mikaloff Fletcher;N. Gruber;N. Gruber;A. R. Jacobson;A. R. Jacobson;M. Gloor;M. Gloor

  • Partitioning Ocean Motions Into Balanced Motions and Internal Gravity Waves: A Modeling Study in Anticipation of Future Space Missions

    Hector S. Torres;Patrice Klein;Patrice Klein;Dimitris Menemenlis;Bo Qiu

  • Ocean forcing drives glacier retreat in Greenland.

    Michael Wood;Michael Wood;Eric Rignot;Eric Rignot;Ian Fenty;Lu An

  • Numerical experiments on subaqueous melting of Greenland tidewater glaciers in response to ocean warming and enhanced subglacial discharge

    Yun Xu;Eric Rignot;Dimitris Menemenlis;Michele Koppes

  • Arctic ice-ocean simulation with optimized model parameters: Approach and assessment

    An T. Nguyen;An T. Nguyen;Dimitris Menemenlis;Ronald Kwok

  • Inverse Modeling of the Ocean and Atmosphere

    Dimitris Menemenlis

Frequent Co-Authors

Eric Rignot
Eric Rignot University of California, Irvine
Ichiro Fukumori
Ichiro Fukumori California Institute of Technology
Kevin W. Bowman
Kevin W. Bowman California Institute of Technology
Bruce D. Cornuelle
Bruce D. Cornuelle University of California, San Diego
Carl Wunsch
Carl Wunsch Harvard University
Lee-Lueng Fu
Lee-Lueng Fu Jet Propulsion Lab
Tong Lee
Tong Lee California Institute of Technology
Peter F. Worcester
Peter F. Worcester University of California, San Diego
Walter Munk
Walter Munk University of California, San Diego

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