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Measurement point density and measurement methods in determining the geometric imperfections of shell surfaces Cover

Measurement point density and measurement methods in determining the geometric imperfections of shell surfaces

Open Access
|Jul 2018

References

  1. Busch, D., Harte, R., Krätzig, W. B., and Montag, U. (2002). New natural draft cooling tower of 200 m of height. Engineering Structures, 24(12):1509–1521, doi:10.1016/S0141-0296(02)00082-2.10.1016/S0141-0296(02)00082-2
  2. Camp, G., Carreaud, P., and Lançon, H. (2013). Large structures: which solutions for health monitoring? In International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. XXIV ICIPA Symposium, volume 5/W2, pages 137–141.10.5194/isprsarchives-XL-5-W2-137-2013
  3. Chisholm, N. (1977). Photogrammetry for cooling tower shape surveys. The Photogrammetric Record, 9(50):173–191, doi:10.1111/j.1477-9730.1977.tb00080.x.10.1111/j.1477-9730.1977.tb00080.x
  4. Davis, J. C. (2002). Statistical and data analysis in geology. John Wiley & Sons.
  5. Gigiel, J. M. (1993). An approach to optimal space density of Ding, X., Coleman, R., and Rotter, J. M. (1996). Technique for precise measurement of large-scale silos and tanks. Journal of Surveying Engineering, 122(1):14–25, doi:10.1061/(ASCE)0733-9453(1996)122:1(14).10.1061/(ASCE)0733-9453(1996)122:1(14)
  6. Ghilani, C. D. and Wolf, J. M. (2006). Adjustment computations. John Wiley & Sons. measurements of cooling tower shells. Archives of Civil Engineering, 2:179–191.10.1002/9780470121498
  7. Gigiel, J. M. (1998). Synteza uwarunkowań konstrukcyjnowytrzymałościowo-reologicznych dla pomiarowej rejestracji stanu chłodni kominowej (Synthesis of structural conditions, strength and rheological for measurement registration of cooling tower). Silesian University of Technology, Gliwice, Poland.
  8. Hill, G. B., Pring, E. J., and Osborn, P. D. (1990). Cooling towers: principles and practice. Butterworth-Heinemann.10.1016/B978-0-7506-1005-6.50006-X
  9. Ioannidis, C., Valani, A., Georgopoulos, A., and Tsiligiris, E. (2006). 3d model generation for deformation analysis using laser scanning data of a cooling tower. In Proc. of 3rd IAG /12th FIG Symposium, International Federation of Surveyors, Baden, volume 3, pages 22–24.
  10. Isaaks, E. H. and Srivastava, M. R. (1989). Applied geostatistics. Oxford University Press New York.
  11. Jasińska, E. and Preweda, E. (2004). A few comments on determining the shapes of hyperboloid cooling towers by the means of ambient tangents method. Geodezja, 10(1):19–29.
  12. Jin, L. (2008). A Review of Spatial Interpolation Methods for Environmental Scientists. Department of Resources, Energy and Tourism, Geoscience Australia.
  13. Lambrou, E. and Pantazis, G. (2010). Evaluation of the credibility of reflectorless distance measurement. Journal of Surveying Engineering, 136(4):165–171, doi:10.1061/(ASCE)SU.1943-5428.0000029.10.1061/(ASCE)SU.1943-5428.0000029
  14. Lancon, H. and Piot, S. (2012). New tools for the monitoring of cooling towers. In Proc., 6th European Workshop on Structural Health Monitoring, German Society for Nondestructive Testing, Dresden, Germany.
  15. Li, J. and Heap, A. D. (2011). A review of comparative studies of spatial interpolation methods in environmental sciences: performance and impact factors. Ecological Informatics, 6(3-4):228–241, doi:10.1016/j.ecoinf.2010.12.003.10.1016/j.ecoinf.2010.12.003
  16. Li, J. and Heap, A. D. (2014). Spatial interpolation methods applied in the environmental sciences: A review. Environmental Modelling & Software, 53:173–189, doi:10.1016/j.envsoft.2013.12.008.10.1016/j.envsoft.2013.12.008
  17. Shortis, M. R. and Fraser, C. S. (1991). Current trends in close-range optical 3d measurement for industrial and engineering applications. Survey Review, 31(242):188–200, doi:10.1179/sre.1991.31.242.188.10.1179/sre.1991.31.242.188
  18. Smith, S. W. (1999). The scientist and engineer’s guide to digital signal processing. California Technical Pub. San Diego.
  19. Woźniak, M. (2008). Monitoring of construction shape changes using reflectorless techniques. Reports on Geodesy, 84(1):93–97.
  20. Woźniak, M. and Woźniak, K. (2011). Geodetic measuring methods and shape estimation of concrete thin shell surface. Reports on Geodesy, 91(2):81–88.
  21. Zwillinger, D. (2002). CRC standard mathematical tables and formulae. CRC press.10.1201/9781420035346
DOI: https://doi.org/10.2478/rgg-2018-0003 | Journal eISSN: 2391-8152 | Journal ISSN: 0867-3179
Language: English
Page range: 19 - 28
Submitted on: Oct 13, 2017
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Accepted on: Jan 30, 2018
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Published on: Jul 17, 2018
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2018 Rafał Kocierz, Michał Rębisz, Łukasz Ortyl, published by Warsaw University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.