Publication database KNMI

The publication database contains the (co-)authored publications in scientific journals, KNMI reports and other publications

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  1. Plasma-neutral interactions in the lower thermosphere-ionosphere: The need for in situ measurements to address focused questions

    The lower thermosphere-ionosphere (LTI) is a key transition region between Earth’s atmosphere and...

    Sarris T, Palmroth M, Aikio A, Buchert SC, Clemmons J, Clilverd M, Dandouras I, , Doornbos E, Goodwin LV, Grandin M, , Heelis R, Ivchenko N, Moretto-Jørgensen, T, Kervalishvili G, Knudsen D, Liu HL, Lu G, Malaspina DM, Marghitu O, Maute A, Miloch, WJ, Olsen N, Pfaff R, Stolle C, Talaat E, , Thayer J, Tourgaidis S, Verronen PT and Yamauchi M | Front. Astron. Space Sci. | 2023 | 9
  2. Daedalus MASE (mission assessment through simulation exercise): A toolset for analysis of in situ missions and for processing global circulation model outputs in the lower thermosphere-ionosphere

    Daedalus MASE (Mission Assessment through Simulation Exercise) is an open-source package of scien...

    Sarris TE, Tourgaidis S, Pirnaris P, Baloukidis, D, Papadakis K, Psychalas C, Buchert SC, Doornbos E, Clilverd MA, Verronen PT, Malaspina D, Ahmadi N, Dandouras I, , Kotova A, Miloch WJ, Knudsen D, Olsen N, , Marghitu O, Matsuo T, Lu G, Marchaudon A, , Hoffmann A, Lajas D, Strømme A, Taylor M, , Aikio A, Palmroth M, Heelis R, Ivchenko N, , Stolle C, Kervalishvili G, Moretto-Jørgensen, T, Pfaff R, Siemes C, Visser P, van den Ijssel, J, Liu H-L, Sandberg I, Papadimitriou C, , Vogt J, Blagau A and Stachlys N | Front. Astron. Space Sci. | 2023 | 9
  3. Significant climate benefits from near-term climate forcer mitigation in spite of aerosol reductions

    Near-term climate forcers (NTCFs), including aerosols and chemically reactive gases such as tropo...

    RJ Allen, LW Horowitz, V Naik, N Oshima, FM O'Connor, S Turnock, S Shim, P Le Sager, T van Noije, K Tsigaridis, SE Bauer, LT Sentman, JG John, C Broderick, M Deushi, GA Folberth, S Fujimori and WJ Collins | published | Environ. Res. Lett. | 2021 | 16
  4. Climate and air quality impacts due to mitigation of non-methane near-term climate forcers

    It is important to understand how future environmental policies will impact both climate change a...

    RJ Allen, S Turnock, P Nabat, D Neubauer, U Lohmann, D Olivié, N Oshima, M Michou, T Wu, J Zhang, T Takemura, M Schulz, K Tsigaridis, SE Bauer, L Emmons, L Horowitz, V Naik, T van Noije, T Bergman, J-F Lamarque, P Zanis, I Tegen, DM Westervelt, P Le Sager, P Good, S Shim, F O'Connor, D Akritidis, AK Georgoulias, M, Deushi, LT Sentman, JG John, S Fujimori, WJ Collins | published | Atmos. Chem. Phys. | 2020 | 20
  5. Modelling the climate and surface mass balance of polar ice sheets using RACMO2 – Part 1: Greenland (1958–2016)

    We evaluate modelled Greenland ice sheet (GrIS) near-surface climate, surface energy balance (SEB...

    BPY Noël, WJ van de Berg, JM van Wessem, E van Meijgaard, LH van Ulft, MR van den Broeke, 6 CoAuthors | published | The Cryosphere | 2018
  6. Modelling the climate and surface mass balance of polar ice sheets using RACMO2 – Part 2: Antarctica (1979–2016)

    We evaluate modelled Antarctic ice sheet (AIS) near-surface climate, surface mass balance (SMB) a...

    JM van Wessem, WJ van de Berg, BPY Noël, E van Meijgaard, LH van Ulft, MR van den Broeke, 13 CoAuthors | published | The Cryosphere | 2018
  7. The modelled surface mass balance of the Antarctic Pensinsula at 5.5 km horizontal resolution

    This study presents a high-resolution (5.5 km) estimate of surface mass balance (SMB) over ...

    JM van Wessem, SRM Ligtenberg, CH Reijmer, WJ van de Berg, MR van den Broeke, NE Barrand, ER Thomas, J Turner, J Wuite, TA Scambos, E van Meijgaard | published | The Cryosphere | 2016
  8. Meltwater produced by wind–albedo interaction stored in an East Antarctic ice shelf

    Surface melt and subsequent firn air depletion can ultimately lead to disintegration of Antar...

    JTM Lenaerts, S Lhermitte, R Drews, SRM Ligtenberg, S Berger, V Helm, CJJM Smeets, MR van den Broeke, WJ van de Berg, E van Meijgaard, M Eijkelboom, O Eisen, F Pattyn | published | Nature Climate Change | 2016
  9. On the recent contribution of the Greenland ice sheet to sea level change

    We assess the recent contribution of the Greenland ice sheet (GrIS) to sea level change. We use t...

    MR van den Broeke, EM Enderlin, IM Howat, P Kuipers Munneke, BPY Noël, WJ van de Berg, E van Meijgaard, B Wouters | published | The Cryosphere | 2016
  10. Evaluation of the updated regional climate model RACMO2.3: summer snowfall impact on the Greenland Ice Sheet

    We discuss Greenland Ice Sheet (GrIS) surface mass balance (SMB) differences between the updated ...

    B Noël, WJ van de Berg, E van Meijgaard, P Kuipers Munneke, RSW van de Wal, MR van den Broeke | published | The Cryosphere | 2015 | 9
  11. Temperature and Wind Climate of the Antarctic Peninsula as Simulated by a High-Resolution Regional Atmospheric Climate Model

    The latest polar version of the Regional Atmospheric Climate Model (RACMO2.3) has been applied to...

    JM van Wessem, CH Reijmer, WJ van de Berg, MR van den Broeke, AJ Cook, LH van Ulft, E van Meijgaard | published | J. Climate | 2015 | 28
  12. Modelling the future distribution of ammonium nitrate concentrations in The Netherlands for 2020: The sensitivity to meteorological parameters

    We present a parameterization developed to simulate Ammonium particle (NH4+) concentrations in th...

    JE Williams, E van der Swaluw, WJ de Vries, FJ Sauter, A van Pul, R Hoogerbrugge | published | Atmos. Environm. | 2015 | 115
  13. Improved representation of East Antarctic surface mass balance in a regional atmospheric climate model

    This study evaluates the impact of a recent upgrade in the physics package of the regional atmosp...

    JM van Wessem, CH Reijmer, M Morlighem, J Mouginot, E Rignot, B Medley, I Joughin, B Wouters, MA Depoorter, JL Bamber, JTM Lenaerts, WJ van de Berg, MR van den Broeke, E van Meijgaard | published | J. Glaciology | 2014 | 60
  14. Updated cloud physics in a regional atmospheric climate model improves the modelled surface energy balance of Antarctica

    In this study the effects of changes in the physics package of the regional atmospheric climate m...

    JM van Wessem, CH Reijmer, JTM Lenaerts, WJ van de Berg, MR van den Broeke, E van Meijgaard | published | The Cryosphere | 2014 | 8
  15. Extreme Precipitation and Climate Gradients in Patagonia Revealed by High-Resolution Regional Atmospheric Climate Modeling

    This study uses output of a high-resolution (5.5 km) regional atmospheric climate model to descri...

    JTM Lenaerts, MR van den Broeke, JM van Wessem, WJ van den Berg, E van Meijgaard, LH van Ulft, M Marius Schaefer | published | J. Climate | 2014 | 27
  16. Future surface mass balance of the Antarctic ice sheet and its influence on sea level change, simulated by a regional atmospheric climate model

    A regional atmospheric climate model with multi-layer snow module (RACMO2) is forced at the later...

    SRM Ligtenberg, WJ van de Berg, MR van den Broeke, JGL Rae, E van Meijgaard | published | Clim. Dyn. | 2013 | 41
  17. Preindustrial to present-day changes in tropospheric hydroxyl radical and methane lifetime from the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP)

    We have analysed time-slice simulations from 17 global models, participating in the Atmospheric C...

    V Naik, A Voulgarakis, AM Fiore, LW Horowitz, J-F Lamarque, M Lin, MJ Prather, PJ Young, D Bergmann, PJ Cameron-Smith, I Cionni, WJ Collins, SB Dalsøren, R Doherty, V Eyring, G Faluvegi, GA Folberth, B Josse, YH Lee, IA MacKenzie, T Nagashima, T van Noije, DA Plummer, M Righi, ST Rumbold, R Skeie, DT Shindell, D Stevenson, S Strode, K Sudo, S Szopa, G Zeng | published | Atmos. Chem. Phys. | 2013 | 13
  18. Modeling drifting snow in Antarctica with a regional climate model: 1. Methods and model and evaluation

    To simulate the impact of drifting snow on the lower atmosphere, surface characteristics and surf...

    JTM Lenaerts, MR van den Broeke, SJ Dery, E van Meijgaard, WJ van de Berg, SP Palm, J Sanz Rodrigo | published | J. Geophys. Res. | 2012 | 117
  19. A new, high-resolution surface mass balance map of Antarctica (1979-2010) based on regional atmospheric climate modelling

    JTM Lenaerts, MR van den Broeke, WJ van de Berg, E van Meijgaard, P Kuipers Munneke | published | Geophys. Res. Lett. | 2012 | 39
  20. Climate of the Greenland ice sheet using a high-resolution climate model – Part 1: Evaluation,

    A simulation of 51 years (1957–2008) has been performed over Greenland using the regional atmosph...

    J Ettema, MR van den Broeke, E van Meijgaard, WJ van de Berg, JE Box, K Steffen | published | The Cryosphere | 2010 | 4
  21. Climate of the Greenland ice sheet using a high-resolution climate model - Part 2: Near-surface climate and energy balance

    J Ettema, MR van den Broeke, E van Meijgaard, WJ van de Berg | published | The Cryosphere | 2010
  22. Partitioning Recent Greenland Mass Loss

    Mass budget calculations, validated with satellite gravity observations [from the Gravity Recover...

    M van den Broeke, J Bamber, J Ettema, E Rignot, E Schrama, WJ van den Berg, E van Meijgaard, I Velicogna, B Wouters | published | Science | 2009 | 326
  23. Higher surface mass balance of the Greenland ice sheet revealed by high-resolution climate modeling

    J Ettema, MR van den Broeke, E van Meijgaard, WJ van de Berg, JL Bamber, JE Box, RC Bales | published | Geophys. Res. Lett. | 2009 | 36
  24. The KNMI regional atmospheric climate model RACMO, version 2.1

    E van Meijgaard, LH van Ulft, WJ van de Berg, FC Bosveld, BJJM van den Hurk, G Lenderink, AP Siebesma | 24-12-2008 | pp43
  25. Recent Antarctic ice mass loss from radar interferometry and regional climate modelling

    E Rignot, JL Bamber, MR van den Broeke, C Davis, Y Li, WJ van de Berg, E van Meijgaard | published | Nature Geoscience | 2008 | 1