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040 |aCaOODSP|beng|erda|cCaOODSP
0861 |aD68-10/099-2018E-PDF
1001 |aThompson, Ian, |eauthor.
24510|aVirtual hull monitoring : |bcontinuous fatigue assessment without additional instrumentation / |cIan Thompson, DRDC - Atlantic Research Centre.
264 1|aDartmouth, Nova Scotia : |bDefence Research and Development Canada = Recherche et développement pour la défense Canada, |c2018.
264 4|c©2018
300 |a1 online resource (pages 293-297, 2 unnumbered pages) : |billustrations.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
4901 |aExternal literature (P) ; |vDRDC-RDDC-2018-P099
500 |a"Can unclassified."
500 |a"International Journal of Maritime Engineering, Vol 160, Part A3, July-September 2018, pp. A-293–A-297."
500 |a"July 2018."
504 |aIncludes bibliographical references (page 297).
520 |a"A novel technique to monitor hull stresses using data currently collected on most ships is explored. This technique, referred to herein as virtual hull monitoring, uses global position signals, measured or numerically-modelled wave data, and a database of calculated stress transfer functions. This enables monitoring of short-term stress states and corresponding fatigue damage accumulation for many structural locations, either onboard or at a central location, for an entire fleet. The components, benefits, and limitations of this proposed technique are discussed. Wave buoy and strain gauge measurements from a full-scale naval vessel trial are used in comparisons with hindcast wave data and the calculated stress spectra for one structural location. Close agreement between the wave data sources and corresponding stress spectra warrants further examination of virtual hull monitoring"--Summary, page 293.
7102 |aDefence R&D Canada. |bAtlantic Research Centre.
830#0|aExternal literature (P) (Defence R&D Canada)|vDRDC-RDDC-2018-P099.|w(CaOODSP)9.854437
85640|qPDF|s617 KB|uhttps://publications.gc.ca/collections/collection_2019/rddc-drdc/D68-10-099-2018-eng.pdf