World's Best Scientists 2026 revealed!

Overview

Ernst Schrama is affiliated with Delft University of Technology in the Netherlands, focusing primarily on Earth and Planetary Sciences with additional work in Physics and Astronomy. Their research spans multiple subfields including Atmospheric Science, Oceanography, Astronomy and Astrophysics, and Geophysics.

The core topics of Schrama's work encompass cryospheric studies and observations, geophysics and gravity measurements, Arctic and Antarctic ice dynamics, geology and paleoclimatology research, earthquake and tectonic studies, ionosphere and magnetosphere dynamics, as well as solar and space plasma dynamics.

Recent publications by Schrama illustrate this diverse focus. Notable papers include:

  • "Mass balance of the Greenland and Antarctic ice sheets from 1992 to 2020" (2023) published in Earth System Science Data
  • "Geodetic observations for constraining mantle processes in Antarctica" (2021) published in Geological Society London Memoirs
  • "Choices for temporal gravity field modeling for precision orbit determination of CryoSat-2" (2023) published in Advances in Space Research

Frequent co-authors collaborating with Schrama include Martin Horwath and Wouter van der Wal, both contributing to multiple publications. Other collaborators are Inès Otosaka, Andrew Shepherd, and Erik R. Ivins.

The venues frequently chosen for publishing reflect the interdisciplinary nature of Schrama's work, with contributions to Earth System Science Data, Geological Society London Memoirs, and Advances in Space Research. This aligns with their interest in linking observational data to geophysical and planetary processes.

Best Publications

  • A reconciled estimate of ice-sheet mass balance

    Andrew Shepherd;Erik R. Ivins;A. Geruo;Valentina R. Barletta

  • Mass balance of the Antarctic ice sheet from 1992 to 2017.

    Andrew Shepherd;Erik Ivins;Eric Rignot;Ben Smith

  • Partitioning Recent Greenland Mass Loss

    Michiel van den Broeke;Jonathan Bamber;Janneke Ettema;Eric Rignot;Eric Rignot

  • GRACE observes small?scale mass loss in Greenland

    B. Wouters;Don P. Chambers;E.J. O. Schrama

  • Antarctic contribution to sea level rise observed by GRACE with improved GIA correction

    Erik R. Ivins;Thomas S. James;Thomas S. James;John Wahr;Ernst J. O. Schrama

  • A preliminary tidal analysis of TOPEX/POSEIDON altimetry

    E. J. O. Schrama;R. D. Ray

  • Spherical harmonic analysis of satellite gradiometry

    R. Rummel;M. van Gelderen;R. Koop;E. Schrama

  • Surface mass redistribution inversion from global GPS deformation and Gravity Recovery and Climate Experiment (GRACE) gravity data

    J. Kusche;E. J. O. Schrama

  • Effect of GIA models with 3D composite mantle viscosity on GRACE mass balance estimates for Antarctica.

    Wouter van der Wal;Pippa L. Whitehouse;Ernst J.O. Schrama

  • A mascon approach to assess ice sheet and glacier mass balances and their uncertainties from GRACE data

    Ernst J. O. Schrama;Bert Wouters;Bert Wouters;Roelof Rietbroek

  • A preliminary evaluation of ocean topography from the TOPEX/POSEIDON mission

    R. S. Nerem;E. J. Schrama;C. J. Koblinsky;B. D. Beckley

  • Improved accuracy of GRACE gravity solutions through empirical orthogonal function filtering of spherical harmonics

    Bert Wouters;Ernst J. O. Schrama

  • Revisiting Greenland ice sheet mass loss observed by GRACE

    Ernst J. O. Schrama;Bert Wouters

  • Signal and noise in Gravity Recovery and Climate Experiment (GRACE) observed surface mass variations

    Ernst J. O. Schrama;Bert Wouters;David A. Lavallée

  • The role of orbit errors in processing of satellite altimeter data

    Ernst Jaap Schrama

  • GOCE gravitational gradients along the orbit

    Johannes Bouman;Sophie Fiorot;Martin Fuchs;Thomas Gruber

  • The role of errors orbit in processing of satellite altimeter data

    E.J.O. Schrama

  • Importance of horizontal seafloor motion on tsunami height for the 2011 Mw=9.0 Tohoku-Oki earthquake

    A. Hooper;J. Pietrzak;W. Simons;H. Cui

  • ‘DEOS_CHAMP-01C_70’: a model of the Earth’s gravity field computed from accelerations of the CHAMP satellite

    P. Ditmar;V. Kuznetsov;A. A. van Eck van der Sluijs;E. Schrama

  • Supplementary Materials for A Reconciled Estimate of Ice-Sheet Mass Balance

    Andrew Shepherd;Erik R. Ivins;Geruo A;Valentina R. Barletta

Frequent Co-Authors

Bert Wouters
Bert Wouters Utrecht University
Pieter Visser
Pieter Visser Delft University of Technology
Erik R. Ivins
Erik R. Ivins California Institute of Technology
Isabella Velicogna
Isabella Velicogna University of California, Irvine
Eric Rignot
Eric Rignot University of California, Irvine
John Wahr
John Wahr University of Colorado Boulder
Yoshihide Wada
Yoshihide Wada King Abdullah University of Science and Technology
Pippa L. Whitehouse
Pippa L. Whitehouse Durham University
René Forsberg
René Forsberg Technical University of Denmark
Reiner Rummel
Reiner Rummel Technical University of Munich

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