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Publikationen

 

  • Börger, L., Schindelegger, M., Dobslaw, H., Salstein, D. (2023), Are ocean reanalyses useful for Earth rotation research? Earth and Space Science, 10, e2022EA002700, https://doi.org/10.1029/2022EA002700.

  • Brus, S. R., Barton, K. N., Pal, N., Roberts, A. F., Engwirda, D., Petersen, M. R., Arbic, B. K., Wirasaet, D., Westerink, J. J., Schindelegger, M. (2023), Scalable self attraction and loading calculations for unstructured ocean tide models. Ocean Modelling, 182, 102160, https://doi.org/10.1016/j.ocemod.2023.102160.

  • Schindelegger, M., Sakazaki, T., Green, M. (2023), Atmospheric tides–An Earth system signal. In: Green, M., Duarte, J. (eds.), A Journey Through Tides. Elsevier, pp. 389-416, https://doi.org/10.1016/B978-0-323-90851-1.00007-8.

  • Lau, H. C. P., Schindelegger, M. (2023), Solid Earth tides. In: Green, M., Duarte, J. (eds.), A Journey Through Tides. Elsevier, pp. 365-387, https://doi.org/10.1016/B978-0-323-90851-1.00016-9.

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  • Schindelegger, M., Kotzian, D. P., Ray, R.D., Green, J. A. M., Stolzenberger, S (2022), Interannual changes in tidal conversion modulate M2 amplitudes in the Gulf of Maine. Geophysical Research Letters, 49, e2022GL101671, https://doi.org/10.1029/2022GL101671.

  • Barton, K. N., Pal, N., Brus, S. R., Petersen, M. R., Arbic, B. K., Engwirda, D., Roberts, A. F., Westerink, J. J., Wirasaet, D., Schindelegger, M. (2022), Global barotropic tide modeling using inline self-attraction and loading in MPAS-Ocean. Journal of Advances in Modeling Earth Systems, 14, e2022MS003207, https://doi.org/10.1029/2022MS003207.

  • Piecuch, C. G., Fukumori, I., Ponte, R. M., Schindelegger, M., Wang, O., Zhao, M. (2022), Low-frequency dynamic ocean response to barometric-pressure loading. Journal of Physical Oceanography, 52, 2627–2641, https://doi.org/10.1175/JPO-D-22-0090.1.

  • Ponte, R. M., Schindelegger, M. (2022), Global ocean response to the 5‐day Rossby‐Haurwitz atmospheric mode seen by GRACE. Journal of Geophysical Research: Oceans, 127, e2021JC018302, https://doi.org/10.1029/2021JC018302.

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  • Daher, H., Arbic, B. K., Williams, J. G., Ansong, J. K., Boggs, D. H., Müller, M., Schindelegger, M., Austermann, J., Cornuelle, B. D., Crawford, E. B., Fringer, O. B., Lau, H. C. P., Lock, S. J., Maloof, A. C., Menemenlis, D., Mitrovica, J. X., Green, J. A. M., Huber, M. (2021), Long-term Earth-Moon evolution with high-level orbit and ocean tide models. Journal of Geophysical Research: Planets, 126, e2021JE006875, https://doi.org/10.1029/2021JE006875.

  • Harker, A. A., Schindelegger, M., Ponte, R. M., Salstein, D. A. (2021), Modeling ocean-induced rapid Earth rotation variations: an update. Journal of Geodesy, 95, 110, https://doi.org/10.1007/s00190-021-01555-z.

  • Schindelegger, M., Harker, A. A., Ponte, R. M., Dobslaw, H., Salstein, D. A. (2021), Convergence of daily GRACE solutions and models of submonthly ocean bottom pressure variability. Journal of Geophysical Research: Oceans, 126, e2020JC017031, https://doi.org/10.1029/2020JC017031.

  • Jänicke, L., Ebener, A., Dangendorf, S., Arns, A., Schindelegger, M., Niehüser, S., Haigh, I.D., Woodworth, P.L., Jensen, J. (2021), Assessment of tidal range changes in the North Sea from 1958 to 2014. Journal of Geophysical Research: Oceans, 126, e2020JC016456, https://doi.org/10.1029/2020JC016456.

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  • Haigh, I.D., Pickering, M.D., Green, J.A.M., Arbic, B.K., Arns, A., Dangendorf, S., Hill, D., Horsburgh, K., Howard, T., Idier, D., Jay, D.A., Jänicke, L., Lee, S.B., Müller, M., Schindelegger, M., Talke, S.A., Wilmes, S.-B., Woodworth, P.L. (2020) The tides they are a-changin': A comprehensive review of past and future non-astronomical changes in tides, their driving mechanisms and future implications. Reviews of Geophysics,  doi:10.1029/2018RG000636.
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  • Harker, A., Green, J.A.M., Schindelegger, M., Wilmes, S.-B. (2019), The impact of sea-level rise on tidal characteristics around Australia. Ocean Science, 15, 147–159, doi:10.5194/os-15-147-2019.

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  • Schindelegger, M., Green, J.A.M., Wilmes, S.-B., Haigh, I.D. (2018), Can we model the effect of observed sea level rise on tides? Journal of Geophysical Research: Oceans, 123, 4593–4609, doi: https://doi.org/10.1029/2018JC013959

  • Girdiuk A., Schindelegger, M., Madzak M., Böhm J. (2018), Detection of the atmospheric S1 tide in VLBI polar motion time series. In: Freymueller J.T., Sánchez L. (eds.) International Symposium on Earth and Environmental Sciences for Future Generations. International Association of Geodesy Symposia , vol. 147, 163–169, doi:10.1007/1345_2016_234.
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  • Schindelegger, M., (2017), Erdrotation – ein Sprungbrett zur Studie von Ozeangezeiten. Österreichische Zeitschrift für Vermessung und Geoinformation (VGI), 2017(4), 218–229. 

  • Schindelegger, M., Salstein D., Einšpigel D., Mayerhofer C. (2017), Diurnal atmosphere-ocean signals in Earth’s rotation rate and a possible modulation through ENSO. Geophysical Research Letters , 44(6), 2755–2762, doi:10.1002/2017GL072633.

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