000 03293cam a2200301zu 4500
001 88812261
003 FRCYB88812261
005 20250107211206.0
006 m o d
007 cr un
008 250107s2012 fr | o|||||0|0|||eng d
020 _a9780123948069
035 _aFRCYB88812261
040 _aFR-PaCSA
_ben
_c
_erda
100 1 _aBabenko, Viktor V
245 0 1 _aBoundary Layer Flow over Elastic Surfaces
_bCompliant Surfaces and Combined Methods for Marine Vessel Drag Reduction
_c['Babenko, Viktor V', 'Chun, Ho-Hwan', 'Lee, Inwon']
264 1 _bElsevier Science
_c2012
300 _a p.
336 _btxt
_2rdacontent
337 _bc
_2rdamdedia
338 _bc
_2rdacarrier
650 0 _a
700 0 _aBabenko, Viktor V
700 0 _aChun, Ho-Hwan
700 0 _aLee, Inwon
856 4 0 _2Cyberlibris
_uhttps://international.scholarvox.com/netsen/book/88812261
_qtext/html
_a
520 _aWhile other methods of drag reduction are well-known in marine R&D and ship design environments worldwide, compliant coating drag reduction remains less well-known and poorly understood. This important book presents cutting-edge techniques and findings from research sources not generally accessible by Western researchers and engineers, aiding the application and further development of this potentially important technology. Beginning with an introduction to drag reduction that places the authors’ work on elastic surfaces and combined techniques in context, the book moves on to provide a comprehensive study of drag reduction through elastic coating with both flow and material properties considered. Coverage includes: Experimental findings around coherent vortical structures (CVS) in turbulent boundary layers and methods of controlling them Static and dynamic mechanical characteristics of elastic composite coatings, as well as new techniques and devices developed for their measurement Combined methods of flow control and drag reduction, including the effect of injection of polymer solutions, elastic coatings and generated longitudinal vortical structures on hydrodynamic resistance Intended as a reference for senior engineers and researchers concerned with the drag reduction and the dynamics of turbulent boundary layer flows, Boundary Layer Flow over Elastic Surfaces provides a unique source of information on compliant surface drag reduction and the experimental techniques around it that have shown measurable and repeatable improvements over recent years. This compilation of research findings and new techniques developed for measurement will aid R&D engineers, naval architects and senior designers in their quest to achieve drag reductions that will deliver significant efficiency savings. Unique source of information on compliant surface drag reduction-an important area of technology with practical application to ships-from otherwise inaccessible research studies Updates the knowledge-base on boundary layer flow and surface friction reduction, critical topics in the global quest for increased ship efficiency and fuel economy Reveals new techniques and devices developed for measurement and provides a comprehensive study of drag reduction through elastic coating with both flow and material properties covered  
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_d61323