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Monitoring Climate Changes on Small Scale Networks Using Ground Based GPS and Meteorological Data Cover

Monitoring Climate Changes on Small Scale Networks Using Ground Based GPS and Meteorological Data

By: C. Pikridas  
Open Access
|Sep 2014

References

  1. Bennit G. V., Jupp A., (2012). Operational Assimilation of GPS Zenith Total Delay observations into the UK Met Office Numerical Weather Prediction models, Mon. Weather Rev., 140, 2706-2719, http://dx.doi.org/10.1175/MWR-D-11-00156.110.1175/MWR-D-11-00156.1
  2. Bevis M, Businger S, Herring T. A, Rocken C, Anthes R. A, Ware R. H. (1992). GPS meteorology: Remote sensing of atmospheric water vapor using the Global Positioning System. Journal of Geophysical Research, 97, 15784-15801.10.1029/92JD01517
  3. Bruyninx C., (2004). The EUREF Permanent Network: a multi-disciplinary network serving surveyors as well as scientists. Geoinformatics, 7, 32-35.
  4. Brown C.E., (1998). Applied multivariate statistics in Geohydrology and related sciences. Springer-Verlag, Berlin.10.1007/978-3-642-80328-4
  5. Dach R, Hugentobler U, Fridez P, Meindl M. (2007). Bernese GPS software version 5.0. Astronomical Institute, University of Bern, Switzerland.
  6. Duan J., Bevis, M., Fang, P., Bock, Y., Chiswell, ST., Businger ST. (1996). GPS Meteorology: Direct Estimation of the Absolute Value of Precipitable Water, Journal of Applied Meteorology, 35, 830-838.10.1175/1520-0450(1996)035<;0830:GMDEOT>2.0.CO;2
  7. Enslein K., Ralston, A. & Wilf H. S. (1977). Statistical Methods for Digital Computers. New York, USA.
  8. Flokas A. (1997). Lessons of Meteorology and Climatology. 2nd edition, Thessaloniki, Greece.
  9. Fotiou A., Pikridas C. (2012). GPS and Geodetic Applications, 2nd edition, (Eds.) Ziti, Thessaloniki, Greece.
  10. Hashino M. & Yue S., 1994. Statistical analysis of effects of monthly temperature on monthly precipitation properties. In: Proc. Second Symposium on Earth Environment (Tokyo),JSCE, 207-212.
  11. Hofmann-Wellenhof B., H.Lichtenegger and J.Collins. (1997). Global Positioning System. Theory and Practice, fourth revised edition, Spinger-Verlag, New York.10.1007/978-3-7091-3297-5
  12. Houssos , Lolis CJ, Gkikas A, Hatzianastassiou N, Bartzokas A. (2012). On the atmospheric circulation characteristics associated with fog in Ioannina, North-Western Greece. International Journal of Climatology, 32, 1847-1862.10.1002/joc.2399
  13. IPCC (1995). Report of the Intergovernmental Panel on Climate Change, (http://www.ipcc.ch/).
  14. Karabatic A., Weber R., Haiden T. (2011). Near real-time estimation of tropospheric water vapour content from ground based GNSS data and its potential contribution to weather now-casting in Austria. Advances in Space Research, 47, 1691-1703.10.1016/j.asr.2010.10.028
  15. LiouY-A., Teng Y., T., T. van Hove, Liljegren J. (2001). Comparison of precipitable water observations in the near tropics by GPS, Microwave radiometer and radiosondes. Journal of Applied Meteorology, 40, 5-15.10.1175/1520-0450(2001)040<;0005:COPWOI>2.0.CO;2
  16. Marija J. Norusis 2005. Guide to data analysis with SPSS. ditions Klidarithmos, Athens, Greece.
  17. Niell A.E. (1996). Global mapping functions for the atmosphere delay at radio wavelengths. Journal of Geophyical Research,101(B2) 3227-3246.10.1029/95JB03048
  18. Saastamoinen J. (1972). Atmospheric correction for the troposphere and stratosphere in radio ranging of satellites, in The Use of Artificial Satellites for Geodesy, Geophys. Monogr.
  19. Series, vol. 15, (Eds.), Henriksen S. W, A. Mancini, and B.H. Chovitz, 247-251, AGU, Washington D.C. 1972.
  20. Schüler T. (2001). On Ground-Based GPS Tropospheric Delay Estimation, PhD Thesis, Institute of Geodesy and Navigation, University FAF Munich Germany.
  21. Sindosi, O.A., Bartzokas, A., Kotroni, V., Lagouvardos, K. (2012). The impact of topography on the precipitation regime over Epirus, NW Greece, during the cold period of the year. Advances in Meteorology, Climatology and Atmospheric Physics. Proceedings of COMECAP 2012, (Eds.), C.G. Helmis, P. Nastos, Springer Atmospheric Sciences, 285-291.
  22. Tregoning P., Herring T.A. (2006). Impact of a priori zenith hydrostatic delay errors on GPS estimates of station heights and zenith total delays. Geophysical Research Letters,33, http://dx.doi.org/10.1019/2006GL027706.
  23. Van der Marel, H. (2004). COST-716 demonstration project for the near real-time estimation of integrated water vapour from GPS. Physics and Chemistry of the Earth, Parts A/B/C, 29 pp.187-199, http://dx.doi.org/10.1016/j.pce.2004.01.001.10.1016/j.pce.2004.01.001
  24. Vazquez G.E., Brzezinska D. (2012). GPS-PWV estimation and validation with radiosonde data and numerical weather prediction model in Antarctica. GPS Solutions, http://dx.doi.org/10.1007/s10291-012-0258-8. 10.1007/s10291-012-0258-8
DOI: https://doi.org/10.2478/arsa-2014-0010 | Journal eISSN: 2083-6104 | Journal ISSN: 1509-3859
Language: English
Page range: 125 - 135
Submitted on: Feb 21, 2014
Accepted on: Jun 2, 2014
Published on: Sep 5, 2014
Published by: Polish Academy of Sciences, Space Research Centre
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2014 C. Pikridas, published by Polish Academy of Sciences, Space Research Centre
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.